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1

Garanina, Natalia Olegovna, Igor Sergeevich Anureev, Vladimir Evgenyevich Zyubin, Sergey Mikhailovich Staroletov, Tatiana Victorovna Liakh, Andrey Sergeevich Rozov und Sergei Petrovich Gorlatch. „Temporal Logic for Programmable Logic Controllers“. Modeling and Analysis of Information Systems 27, Nr. 4 (20.12.2020): 412–27. http://dx.doi.org/10.18255/1818-1015-2020-4-412-427.

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We address the formal verification of the control software of critical systems, i.e., ensuring the absence of design errors in a system with respect to requirements. Control systems are usually based on industrial controllers, also known as Programmable Logic Controllers (PLCs). A specific feature of a PLC is a scan cycle: 1) the inputs are read, 2) the PLC states change, and 3) the outputs are written. Therefore, in order to formally verify PLC, e.g., by model checking, it is necessary to describe the transition system taking into account this specificity and reason both in terms of state transitions within a cycle and in terms of larger state transitions according to the scan-cyclic semantics. We propose a formal PLC model as a hyperprocess transition system and temporal cycle-LTL logic based on LTL logic for formulating PLC property. A feature of the cycle-LTL logic is the possibility of viewing the scan cycle in two ways: as the effect of the environment (in particular, the control object) on the control system and as the effect of the control system on the environment. For both cases we introduce modified LTL temporal operators. We also define special modified LTL temporal operators to specify inside properties of scan cycles. We describe the translation of formulas of cycle-LTL into formulas of LTL, and prove its correctness. This implies the possibility ofmodel checking requirements expressed in logic cycle-LTL, by using well-known model checking tools with LTL as specification logic, e.g., Spin. We give the illustrative examples of requirements expressed in the cycle-LTL logic.
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Triwijaya, Santi, Arief Darmawan, Andri Pradipta und Dara Aulia Feriando. „Cable Car Speed Control Using Programmable Logic Control Based on Fuzzy Logic“. Journal of Electronics, Electromedical Engineering, and Medical Informatics 2, Nr. 3 (29.10.2020): 125–29. http://dx.doi.org/10.35882/jeeemi.v2i3.7.

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A cable car is a hanging car that runs by cable. Cable car carrier controlled by DC motor. The cable car can be a solution to accommodate the mobilization of agricultural commodities in areas that are difficult to access while still paying attention to safety and reliability. In this research, the speed of a cable car would be automatically controlled with Programmable Logic Control (PLC). PLC functions as a cable car operation controller by considering 3 parameters, namely: wind speed, maximum load weight, and distance (meters). The speed of the cable car is controlled by the PLC using fuzzy logic. Cable car speed is based on parameters of wind speed, load weight and distance. From the results obtained, the PLC has worked well in regulating the speed of the cable car and if any parameter exceeds the PLC limit, it can turn off the cable car.
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Hu, Zhao Yong, Han Wu He und Yu Tao Duan. „A New Simulation System of Programmable Logic Controller“. Advanced Materials Research 139-141 (Oktober 2010): 1954–58. http://dx.doi.org/10.4028/www.scientific.net/amr.139-141.1954.

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Programmable logic controller (abbr. PLC) is essential for automation in modern industry. In many colleges, it is also an important course for automation major. Currently, PLC is monopolistic technique with foreign company. Simulation of PLC has become popular scheme for substitute to real PLC. Virtual PLC is a kind of common scheme. Otherwise, virtual PLC is unfavorable of practical training for student. The thesis spread out exposition for a new simulation system, which consists of virtual PLC platform and a printed circuit board. The virtual PLC platform had been programmed under visual C++ by authors. It is a graphical programming tool, and is an interpretive routine too. Based on MCU, the board is developed for communication between virtual PLC and real control objects. The simulation system has been tried out. As an example, traffic light control of intersection shows feasibility and effectiveness.
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Wang, Li Wei. „Programmable Logic Controller Program Design Method Research Based on PLC“. Applied Mechanics and Materials 713-715 (Januar 2015): 1281–84. http://dx.doi.org/10.4028/www.scientific.net/amm.713-715.1281.

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The working principle of Programmable Logic Controller (PLC) is introduced. Three kinds of PLC programming method, logic based method, function based method and Petri Net based method are emphasized. The example is also given. It also points out that function based PLC programming method is a practical engineering method.
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Hudedmani, Mallikarjun G., R. M. Umayal, Shiva Kumar Kabberalli und Raghavendra Hittalamani. „Programmable Logic Controller (PLC) in Automation“. Advanced Journal of Graduate Research 2, Nr. 1 (01.07.2017): 37–45. http://dx.doi.org/10.21467/ajgr.2.1.37-45.

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Gunawan, Budi, und Yelly Prawoto. „Aplikasi Programmable Logic Controller (PLC) Omron CPM2A Sebagai Komponen Utama Sistem Pengukur Kecepatan Putar (RPM) Motor DC“. Simetris : Jurnal Teknik Mesin, Elektro dan Ilmu Komputer 2, Nr. 1 (28.06.2013): 48. http://dx.doi.org/10.24176/simet.v2i1.98.

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Abstrak PLC (Programmable Logic Control) banyak dipakai dalam dunia industri sebagai unit kontrol utama pada mesin-mesin produksi. PLC merupakan sekumpulan saklar elektronik yang dapat diatur kapan harus ON dan kapan harus OFF sesuai dengan hukum-hukum kontrol logic yang telah diprogram. Salah satu keunggulan dari PLC adalah dapat digunakan menjadi Alat Pengatur mesin yang berlainan hanya dengan mengubah program yang ada dalam PLC tanpa harus mengubah perangkat kerasnya. Pada penelitian ini akan dirancang bangun penggunaan PLC untuk menggerakkan motor DC 12 Volt Sekaligus membaca kecepatan putarnya (RPM) dengan menggunakan sebuah piringan yang berlubang yang akan dibaca oleh sensor LDR. Kata kunci : PLC, motor, control, RPM, sensor
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Elamurugan, P., K. VinothBresnav, D. Abirami und K. G.Suhirdham. „Automatic Material Segregation Using PLC“. International Journal of Engineering & Technology 7, Nr. 2.24 (25.04.2018): 376. http://dx.doi.org/10.14419/ijet.v7i2.24.12088.

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At the present timeunusedghettoizationindications a vivaciousstarring protagonist in discardedsupervision system. The inappropriateapartheid of variegatedsurplus that split ends up in landfills sort out not fadingas it ought to be. This red-top grants knowledge of ghettoizing the substantial inevitably concluded the assistance of programmable logic controller (PLC). This treasure troveobliging to moderate the manual maneuver in the progression of reconditioning the alienatedquantifiable such in place ofpewter, cut-glass, malleable and supplementary devises crumpled consuming the air-filled piston. The dissimilar capacitive, proximity sensors etc. devours engaged in the process. The reprocessed product which partakes per received mutable byproduct. The sensible stirring on a conveyer belt intuited by the relevant sensors segregated into poles apartcontainers using a gearing contrivance. The entire component partakes organized by a programmable logic controller (PLC) staysencodedthroughPLClanguage by means of ladder logic.
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Huyck, Bart, Hans Joachim Ferreau, Moritz Diehl, Jos De Brabanter, Jan F. M. Van Impe, Bart De Moor und Filip Logist. „Towards Online Model Predictive Control on a Programmable Logic Controller: Practical Considerations“. Mathematical Problems in Engineering 2012 (2012): 1–20. http://dx.doi.org/10.1155/2012/912603.

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Given the growing computational power of embedded controllers, the use of model predictive control (MPC) strategies on this type of devices becomes more and more attractive. This paper investigates the use of online MPC, in which at each step, an optimization problem is solved, on both a programmable automation controller (PAC) and a programmable logic controller (PLC). Three different optimization routines to solve the quadratic program were investigated with respect to their applicability on these devices. To this end, an air heating setup was built and selected as a small-scale multi-input single-output system. It turns out that the code generator (CVXGEN) is not suited for the PLC as the required programming language is not available and the programming concept with preallocated memory consumes too much memory. The Hildreth and qpOASES algorithms successfully controlled the setup running on the PLC hardware. Both algorithms perform similarly, although it takes more time to calculate a solution for qpOASES. However, if the problem size increases, it is expected that the high number of required iterations when the constraints are hit will cause the Hildreth algorithm to exceed the necessary time to present a solution. For this small heating problem under test, the Hildreth algorithm is selected as most useful on a PLC.
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Zhang, De Min, und Shi Bo Li. „Research on the Design and Manufacture of Steam Cleaning Machine Based on PLC“. Applied Mechanics and Materials 721 (Dezember 2014): 322–25. http://dx.doi.org/10.4028/www.scientific.net/amm.721.322.

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In this paper, the programmable logic controller (PLC) produced the steam cleaning machine controller based on PLC and foundation design, and steam cleaning device controlled the process of the realization .The programmable logic controller PLC programming and logic design, system realizes according to different artifact types, complete cleaning, blowing, drying the corresponding action. This system after careful design, manufacturing and detailed inspection, and after the running test, the experimental results shows that: as long as the proper maintenance and proper use of equipment, the project can improve the efficiency to a great extent.
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Hidayati, Qory, Fathur Zaini Rachman, Nur Yanti, Nurwahidah Jamal und Suhaedi Suhaedi. „Desain Model dan Simulasi PLC-Mikrokontroler sebagai Modul Pembelajaran Berbasis PLC“. Jurnal Teknologi Rekayasa 2, Nr. 2 (20.12.2017): 73. http://dx.doi.org/10.31544/jtera.v2.i2.2017.73-82.

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Programmable Logic Controller (PLC) merupakan suatu piranti yang dibuat sebagai pengganti kumpulan relai-relai mekanik yang digunakan dalam sistem kontrol. PLC berkerja dengan cara membaca instruksi-instruksi dari masukannya. Karena PLC pada umumnya memiliki harga yang cukup mahal dan hanya beberapa orang yang dapat mempelajarinya, maka dibuatlah PLC trainer. PLC trainer dirancang menggunakan mikrokontroler Arduino Uno, modul input (berupa: toggle switch, push button, dan limit switch), dan modul output (berupa: LED, seven segment, motor DC, dan buzzer). PLC trainer juga dilengkapi prototype lampu lalu lintas sebagai modul output simulasi lampu lalu lintas empat arah. PLC trainer memanfaatkan LDmicro untuk membuat pemrograman ladder diagram dengan instruksi-instruksi sesuai dengan keinginan programmer dan menggunakan software Xloader untuk upload program ke Arduino Uno. Dari hasil pengujian diperoleh bahwa mikrokontroler Arduino Uno dapat dimanfaatkan sebagai PLC trainer untuk modul pembelajaran.Kata kunci: Programmable Logic Controller, Arduino Uno, modul input-output, lampu lalu lintas
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Riyanto, Didik. „Pelatihan Programmable Logic Controller (PLC) Bagi Siswa Smk Muhammadiyah 1 Ponorogo“. Adimas : Jurnal Pengabdian Kepada Masyarakat 1, Nr. 1 (13.04.2017): 39. http://dx.doi.org/10.24269/adi.v1i1.416.

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This program is focused in programmable logic controller (PLC) training at SMK Muhammadiyah 1 Ponorogo students majoring electronics or audio video. The training concept includes introduction and programming of PLC with the expectation that the students of SMK Muhammadiyah 1 Ponorogo who attended training obtain automation skills, especially in automation PLC. The skills could be a provision for the students after graduated or in the workkplace. The training was conducted in the laboratory of electrical engineering PLC Muhammadiyah University of Ponorogo by lectures and experts in PLC. Eelectrical engineering in Muhammadiyah Uuniversity of Ponorogo is one of the universities in East Java which has a laboratory automation system PLC with national university standard that provides knowledge for profesional staff in the field of automation
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Boughezala mohammed, Salah. „Investigation of PLC for logic Selectivity Communication in Protection Systems“. International Journal of Energetica 2, Nr. 1 (30.06.2017): 24. http://dx.doi.org/10.47238/ijeca.v2i1.24.

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This paper reports an investigation of power line communication technique PLC for logic selectivity in protection systems. A simulation of power grid with two protection systems using PLC as communication process is performed by Simulink/Matlab program. Also, the attenuation characteristic of high frequency PLC signal is studied regards to resistance, inductance and frequency variation.
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Henry, Nasution, W. G. Munan, Abdul Aziz Azhar, Kasni Sumeru und Abdul Latiff Zulkarnain. „Energy Analysis and Compressor Performance of Refrigerator System Using Programmable Logic Control (PLC)“. Applied Mechanics and Materials 554 (Juni 2014): 469–73. http://dx.doi.org/10.4028/www.scientific.net/amm.554.469.

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This project present an experimental test results on energy consumption of a refrigerator compressor triggered by using thermostat and programmable logic control (PLC). The PLC modulates the speeds of the compressor according to refrigeration load using inverter based on control law written in the PLC memory. The temperature setting for both thermostat and PLC were varied at-8 °C and-10 °C respectively. At-8°C the results indicate PLC consumed 4.45 to 6.79% less energy compared to thermostat setting. While at-10°C, the saving made through PLC is in the range of 6.43 to 12.88%. The fluctuation of freezer compartment is better when PLC controlled. As the energy input to compressor is lower due to the slower speed, this enhanced the coefficient of performance (COP).
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Lashin, Maha M. „Different Applications of Programmable Logic Controller (PLC)“. International Journal of Computer Science, Engineering and Information Technology 4, Nr. 1 (28.02.2014): 27–32. http://dx.doi.org/10.5121/ijcseit.2014.4103.

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Neny, Ferdianita, Her Gumiwang Ariswati und Tri Bowo Indrato. „Tissue Processor Based PLC (Programmable Logic Controller)“. Journal of Electronics, Electromedical Engineering, and Medical Informatics 1, Nr. 1 (22.07.2019): 21–27. http://dx.doi.org/10.35882/jeeemi.v1i1.5.

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Tissue Processor Tissue Processor consists of consists of several stages of dehydration, clearing, and paraffin infiltration.Phase dehydration to remove water content in tissues by immersion into alcohol. Clearing stage is the process of pulling out the alcohol content in the network by using a liquid xylol. Paraffin infiltration stages is the stage of filling cavities with liquid paraffin tissue. The purpose of this research is to modify the equipment that had broken before became an useful equipment that use basic controlled PLC. This modification tool-making using the "one-group posttest design" by treatment of the instrument without first measuring the initial state, the results of treatment directly measured without comparison to a control group. Making the modification tool using PLC as the main controller throughout the series. The tool mechanical motion using DC motors and AC motors as well as the use of two sensors limit switch as the controller limits the motor movement. Based on the results obtained temperature measurement error with the largest value of 4.44% in paraffin heater tube 1 and the biggest error of 4.0% in paraffin heater tube 2. While the measurement time of each - each tube obtained the smallest error on the tube-to-one by 0 , 03%, and the biggest error of measurement contained in the tube to the fourth, fifth, sixth, eighth and tenth of 0.16%.
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Haque, Md Masudul, und Yaya Jakaria. „Development of Practice Learning Media Based on Programmable Logic Controller“. Jurnal Pendidikan Teknologi dan Kejuruan 26, Nr. 2 (25.09.2020): 119–28. http://dx.doi.org/10.21831/jptk.v26i2.33893.

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The objectives of the study were (1) to produce PLC-based Electrical Machine Practice learning media (2) to determine the performance of PLC-based Electrical Machine Practice learning media products and (3) to determine the feasibility level of PLC-based Electrical Machine Practice learning media products. This study was Research and Development which refers to the ADDIE model according to Branch. The stages in this study include analysis, design, development, implementation, and evaluation. Data collection methods used in this study were interviews, observations, and questionnaires. The instruments used in the study were the observation sheet and questionnaires. The results of this study indicated: (1) the product of learning media for Electrical Machine Practice based on PLC Schneider SR2B201FU; (2) the product of PLC-based Electrical Machine Practice learning media has good performance; (3) the product of PLC-based Electrical Machine Practice learning media has eligibility in the very feasible category to be used in learning, which is supported by the acquisition of a consecutive score of 3.65; 3.58 and 3.58 on a 4.0 scale according to the validation of material experts, media experts, and students.
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Gupta, Shrey. „PLC based Multi-Floor Elevator Control System“. IAES International Journal of Robotics and Automation (IJRA) 4, Nr. 3 (01.09.2015): 202. http://dx.doi.org/10.11591/ijra.v4i3.pp202-208.

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This paper presents programmable logic controller based elevator control system. Primary focus is on using programmable logic controller to build the elevator model. To control the motion of the elevator through various levels DC geared motor is used. Push buttons are used to give signal to the elevator to come to the desired floor, traversing up and down. Moreover DC relays are used as switches, not protective devices, to drive the motor in clockwise and anticlockwise direction. Ladder logic is used for the model implementation.
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Xing, Man Rong, Jie Zhang und Xiao Dong Zhang. „The Design of Constant Pressure Water Supply Control System Based on S7-200 PLC“. Advanced Materials Research 753-755 (August 2013): 1665–69. http://dx.doi.org/10.4028/www.scientific.net/amr.753-755.1665.

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IN tall buiding’s constant pressure water supply system with PLC and frequency converter logic control, PLC is used for logic control and frequency converter for pressure regulation . PLC and frequency converter which are the core components of the system track changes on the deviation of the pressure in a pipe with the given pressure,through the PLC internal PID operational, it can control variable frequency and power frequency switching and automatic control the number of inputting pumps and speed of the motor to realize closed loop automatic regulation voltage variable water supply, It can achieve the purpose of controlling the flow of water while maintaining constant pressure.
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Saputra, Andrial, und Alwin Wahyu Fadhlir Rahman. „SISTEM KOREKSI OTOMATIS PADA MESIN PACKAGING DENGAN PENGENDALI PLC“. Jurnal Teknik Mesin 5, Nr. 4 (15.03.2017): 25. http://dx.doi.org/10.22441/jtm.v5i4.1220.

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Salah satu kecacatan produk dalam kemasan pouch apabila produk tersebut ditemukan overlap. Overlap pada produk sabun refill (isi ulang) merupakan salah satu kecacatan produk yang dapat menyebabkan minat konsumen menurun. Sistem Autocorrection (Pengoreksi-Otomatis) merupakan sistem kendali berbasis PLC (Programmable Logic Controller) yang dirancang untuk mengatasi overlap pada produk pouch. Sensor photo electric amplifier ditanamkan pada sistem ini yang berfungsi sebagai trigger input ke PLC (Programmable Logic Controller) sekaligus pendeteksi overlap yang kemudian sinyal input dari sensor tersebut diolah oleh PLC (Programmable Logic Controller). Output yang dihasilkan berupa gerakan pada sidelay motor (actuator dengan motor AC sebagai penggeraknya) untuk bergeser ke arah kiri atau ke arah kanan tergantung salah satu sensor aktif terlebih dahulu.
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Zhao, Jing, und Hua Zhang. „PLC Counter Applications Technique“. Applied Mechanics and Materials 462-463 (November 2013): 487–90. http://dx.doi.org/10.4028/www.scientific.net/amm.462-463.487.

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This paper described the functions of PLC counter instructions, analyzed and interpreted typical PLC counter ladder logic programs, applied the PLC counter function and associated circuitry to control systems, and applied combinations of counters and timers to control systems. The ladder diagrams had been verified in Panasonic FP1-C72PLC control unit, and you could use them directly.
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Seely, R. A. G. „Categorical semantics for higher order polymorphic lambda calculus“. Journal of Symbolic Logic 52, Nr. 4 (Dezember 1987): 969–89. http://dx.doi.org/10.2307/2273831.

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AbstractA categorical structure suitable for interpreting polymorphic lambda calculus (PLC) is defined, providing an algebraic semantics for PLC which is sound and complete. In fact, there is an equivalence between the theories and the categories. Also presented is a definitional extension of PLC including “subtypes”, for example, equality subtypes, together with a construction providing models of the extended language, and a context for Girard's extension of the Dialectica interpretation.
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Putri, Tri Wahyu Oktaviana, und M. Imbarothur Mowaviq. „PROTOTIPE SISTEM KONVEYOR OTOMATIS DENGAN KENDALI KECEPATAN BERBASIS PROGRAMMABLE LOGIC CONTROLLER“. Barometer 6, Nr. 1 (26.01.2021): 289–94. http://dx.doi.org/10.35261/barometer.v6i01.4505.

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Studi mengenai kontrol konveyor dan pemrograman menggunakan PLC telah banyak diajarkan di perguruan tinggi khususnya pada bidang Teknik Elektro. Sayangnya materi yang diperoleh peserta didik hanya berupa teori tanpa pengaplikasian secara langsung pada sistem konveyor di industri karena terkendala kebijakan perusahaan. Oleh karena itu, perlu dibuat prototipe sistem konveyor otomatis berbasis PLC yang dimiliki sendiri oleh perguruan tinggi sehingga peserta didik dapat langsung mengimplemetasikan hasil perancangan dan program PLC yang telah dipelajarinya di kelas. Diharapkan dengan adanya prototipe sistem konveyor otomatis tersebut mampu meningkatkan minat dan pemahaman peserta didik terhadap proses otomatisasi industri sehingga akan lebih siap ketika harus terjun langsung ke industri. Penambahan kendali kecepatan pada sistem konveyor otomatis bertujuan utnuk menciptakan suatu prototipe yang sesuai dengan keadaan nyata di lapangan. Penelitian ini membahas perancangan dan pembuatan prototipe sistem konveyor otomatis dengan kendali kecepatan berbasis Programmable Logic Controller (PLC). Perangkat utama pengendali yang digunakan adalah PLC Mitsubishi tipe FX3U yang dilengkapi dengan input analog, output analog, dan output PWM (Pulse Width Modulation). Konveyor yang digunakan adalah konveyor mini dengan penggerak motor DC. Pengendalian kecepatan konveyor dilakukan dengan mengatur kecepatan putaran motor DC menggunakan pengaturan lebar pulsa berbasis PLC.
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Dominik, Ireneusz. „Implementation of the Type-2 Fuzzy Controller in PLC“. Solid State Phenomena 164 (Juni 2010): 95–98. http://dx.doi.org/10.4028/www.scientific.net/ssp.164.95.

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The main aim of the presented research work was to develop type-2 fuzzy logic controller, which by its own design should be “more intelligent” than type-1. Along with the intelligence it should provide better results in solving a particular problem. Type-2 fuzzy logic controller is not well-known and it is rarely used at present. The idea of type-2 fuzzy logic set was presented by Zadeh in 1975, shortly after the presentation of type-1 fuzzy set. At the beginning scientists and researchers worked on type-1. Only after developing type-1 the attention was directed towards the type-2. The first applications of type-2 fuzzy logic in control appeared in 2003. The fuzzy logic controller type-2 was tested experimentally by controlling a non-linear object: a shape memory alloy (SMA) actuator DM-01PL, made by Miga Motor company, which despite small size distinguishes itself by its 9 N strength. Comparison of experimental data of the fuzzy logic controller type-2 and type-1 clearly indicates the superiority of the former, particularly in reducing signal overshoots.
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Putra, Muhammad Rifqi Kurnia, und Agus Rusdiana. „PERBANDINGAN MEDIA LATIHAN SHOOTING REACTION BASKETBALL BERBASIS PROMMABLE LOGIC CONTROLLER MENGGUNAKAN LED“. Jurnal Terapan Ilmu Keolahragaan 3, Nr. 2 (03.05.2019): 17–22. http://dx.doi.org/10.17509/jtikor.v3i2.9009.

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Penelitian ini bertujuan untuk mengembangkan media latihan shooting reaction basketball berbasis PLC (programmable logic controller) dengan menggunakan LED. Penelitian ini menggunakan pendekatan metode Research and Development (RD).. Untuk melakukan validasi terhadap media latihan ini, maka peneliti harus mendatangkan para pakar yang terkait dalam bidang temuan atau alat yang dikembangkan. Media latihan shooting reaction ini merupakan media latihan yang dirancang dengan teknologi Programmable Logic Controller. Dalam penggunaannya, media latihan ini terdiri dari 4 ring yang diberikan LED dan buzzer serta PLC dan relay menjadi otak alat tersebut yang disambungkan menggunakan kabel. Berdasarkan hasil uji coba dengan para pakar olahraga dan teknik dengan mengisi format penilaian expert judgment, media latihan shooting reaction basketball berbasis PLC (programmable logic controller) dengan menggunakan LED ini berjalan dengan baik, dan layak untuk dikembangkan sesuai dengan apa yang diharapkan oleh peneliti
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Zhang, Xin. „The Industrial Manipulator Control System Based on Programmable Logic Controller“. Applied Mechanics and Materials 473 (Dezember 2013): 235–38. http://dx.doi.org/10.4028/www.scientific.net/amm.473.235.

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Industrial manipulator has become an important and indispensable part of the modern industrial production, This paper studies the industrial manipulator control system based on programmable controller, This paper mainly introduces the software design of PLC control system, analyzes the various modules of the composition manipulator control system , Adopt Mitsubishi PLC design of manipulator system was put forward, the function and the control method of Mitsubishi PLC was studied; Experimental results show that the manipulator can eventually exercise according to the requirements of the control program ,and implement the monitoring system of this manipulator intuitive image observation, reached the design purpose and the requirements of this paper.
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Rogers, Steve. „The PLC workbook—programmable logic controllers made easy“. Control Engineering Practice 5, Nr. 5 (Mai 1997): 733. http://dx.doi.org/10.1016/s0967-0661(97)85451-2.

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Jiddi, Vinod. „AUTOMATIC LIQUID FILLING USING PROGRAMMABLE LOGIC CONTROLLER(PLC)“. International Journal of Recent Advancement in Engineering & Research 3, Nr. 7 (22.07.2017): 18. http://dx.doi.org/10.24128/ijraer.2017.no01ab.

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Novozhilov, B. M. „New Technologies in Training Programming PLC“. Mechanical Engineering and Computer Science, Nr. 8 (11.09.2017): 30–39. http://dx.doi.org/10.24108/0817.0001300.

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It is noted that the effective application of programmable logic controllers in automated control systems in launching complexes is closely linked to the training of specialists, capable to carry out the development of application software. In connection with complexity of debugging of the developed programs on real process equipment an analysis of the possible variants of simulation of control processes is performed and effectiveness of virtualization of control objects on computers is noted. The developed applications of Real Games-company to create virtual control objects using 3D-graphics for training to usage of programmable logic controllers in industrial control systems are considered. The perspectives for the application software of Real Games-company in the training of specialists for automation systems of technological equipment in launching complexes are evaluated.
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Haryanto, Haryanto. „Sistem Penyiraman Bibit Tanaman Berdasarkan Programmable Logic Controller (PLC)“. UNISTEK 5, Nr. 1 (19.01.2018): 7–11. http://dx.doi.org/10.33592/unistek.v5i1.278.

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Penyiraman bibit tanaman dapat dilakukan secara otomatis dengan menggunakan teknologiProgrammable Logic Controller (PLC).PLC adalah suatu sistem kontrol yang dapat diprogramdalam mengendalikan dan mengatur penyiraman bibit tanaman. Hal ini juga bisa diatur sesuaidengan kebutuhan air di setiap tahap pertumbuhan benih sampai tanaman dewasa. Denganmenggunakan sensor untuk mengukur kelembaban air dan program waktu untuk mengatur pompa airdalam mengontrol proses penyiraman sehingga benih tidak kelebihan air, sehingga pertumbuhanbibit bisa optimal.Kata kunci:PLC, penyiraman, bibit tanaman
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Liu, Jiang Cai. „The Study of PLC Control Technology Application in Motor VVVF System“. Applied Mechanics and Materials 203 (Oktober 2012): 135–38. http://dx.doi.org/10.4028/www.scientific.net/amm.203.135.

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the programmable logic controller (PLC) is the control device which is the most commonly used in the industrial control system. It's popular among the control system designer and maintaining staff on account of its good reliability, anti-jamming and practical application. This paper studies the PLC control technology application in motor VVVF system, firstly we introduce the basic working principle and features of the PLC, then supply some technical guidance for the PLC control technology applications combined with DC motors and AC induction motors in PLC control system.
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Risfendra, Risfendra, Sukardi Sukardi und Herlin Setyawan. „Uji Kelayakan Penerapan Trainer Programmable Logic Controller Berbasis Outseal PLC Shield Pada Mata Pelajaran Instalasi Motor Listrik“. JTEV (Jurnal Teknik Elektro dan Vokasional) 6, Nr. 2 (04.05.2020): 48. http://dx.doi.org/10.24036/jtev.v6i2.108508.

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Permasalahan dalam penelitian ini adalah masih minimnya media pembelajaran PLC di sekolah – sekolah menengah kejuruan teknologi khususnya di kota Padang. Hal ini disebabkan oleh media pembelajaran PLC memiliki harga yang relatif tinggi untuk operasional sebuah SMK. Maka penelitian ini bertujuan untuk membuat trainer programmable logic controller (PLC) berbasis outseal PLC shield yang layak digunakan sebagai media pembelajaran instalasi motor listrik dengan harga yang ekonomis. Trainer PLC yang dikembangkan dilengkapi dengan modul dan jobsheet pembelajaran. Metode penelitian yang digunakan untuk mencapai tujuan penelitian adalah metode penelitian research and development dengan menggunakan sembilan langkah penelitian. Trainer PLC berbasis outseal PLC shield diuji kelayakanya oleh dua orang guru mata pelajaran instalasi motor listrik dan duah puluh dua siswa SMK Negeri 1 Padang. Hasil uji kelayakan dari guru mata pelajaran diperoleh sebesar 89,78 % dengan kategori sangat layak dan hasil uji kelayakan dari siswa diperoleh sebesar 90,11 % dengan kategori sangat layak.
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Hendra, Anizar Indriani, Hernadewita und Y. Rizal. „Assembly Programmable Logic Control (PLC) in the Rotary Dryer Machine for Processing Waste Liquid System“. Applied Mechanics and Materials 842 (Juni 2016): 319–23. http://dx.doi.org/10.4028/www.scientific.net/amm.842.319.

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Programmable Logic Controller (PLC) is widely used to control systems on the manufacturing industry, automotive industry and etc. PLC is used to regulate the production process and machine systems to work simultaneously and continue. PLC has system to regulate the movement of machine components, displacement system of product, system settings motion or displacement of other components. PLC is a control system with some advantages such as simple in design, easy to use and circuit modification, low cost, easy maintenance, high reliability and safe. In this paper, we will focus on the PLC that used in the control of equipment movement on the rotary dryer system for waste liquid processing. PLC will be control the movement of the motor for drum of dryer, heating system, water circulation in the wet scrubber system, vacuum cleaner and smoke systems. All these systems are connected by PLC and working by arranged the setting time of system. The first process, PLC will activate the motion system of motor to drive the dryer drum rotating to left or right side. Then the burner is active for heating the drum of dryer. Effect in this process made smoke and dust happen in the rotary dryer system. The pump automatically will be activating to spray water on a wet scrubber system to catch the dust and smoke. Dust and smoke will be inhaled by the blower and flow back into the rotary dryer machine. Therefore there is no smoke and dust flowing into the environment. The results show that the PLC can be control the motion system and processes machine rotary dryer to drying the waste liquid in short time. Such as 20 minutes to 5 liters of liquid waste volume and 30 minutes to 15 liters and made the waste liquid be friendly environment.
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Aung, Nyan Phyo, Mo Mo Myint Wai und Lwin Lwin Htay. „Four Junction Traffic Light Controller using PLC (S7-200)“. Journal La Multiapp 1, Nr. 2 (24.10.2020): 21–29. http://dx.doi.org/10.37899/journallamultiapp.v1i2.153.

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Advance of a road traffic light control system using Programmable Logic Controller is the principal of the system. This system can be divided into two parts which are hardware and software. The hardware part for this system is a model of four -way junction of a traffic light. The Red, Yellow and Green are installed at each lane to represent as a traffic light signal indicator. This switches and lamps are linked to PLC. The PLC receives signal which is coming from the inputs (sensor and switch) and drives the units (lamps or relays). In the system, Siemens s7-200 PLC is used as the main controller of the traffic light system. The Step7 Micro Win software can be developed the ladder logic diagram which can control the traffic light for proposed system. So, the traffic light system can be successfully controlled by PLC.
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Azkarate, Igor, Mikel Ayani, Juan Carlos Mugarza und Luka Eciolaza. „Petri Net-Based Semi-Compiled Code Generation for Programmable Logic Controllers“. Applied Sciences 11, Nr. 15 (03.08.2021): 7161. http://dx.doi.org/10.3390/app11157161.

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Industrial discrete event dynamic systems (DEDSs) are commonly modeled by means of Petri nets (PNs). PNs have the capability to model behaviors such as concurrency, synchronization, and resource sharing, compared to a step transition function chart or GRAphe Fonctionnel de Commande Etape Transition (GRAFCET) which is a particular case of a PN. However, there is not an effective systematic way to implement a PN in a programmable logic controller (PLC), and so the implementation of such a controller outside a PLC in some external software that will communicate with the PLC is very common. There have been some attempts to implement PNs within a PLC, but they are dependent on how the logic of places and transitions is programmed for each application. This work proposes a novel application-independent and platform-independent PN implementation methodology. This methodology is a systematic way to implement a PN controller within industrial PLCs. A great portion of the code will be validated automatically prior to PLC implementation. Net structure and marking evolution will be checked on the basis of PN model structural analysis, and only net interpretation will be manually coded and error-prone. Thus, this methodology represents a systematic and semi-compiled PN implementation method. A use case supported by a digital twin (DT) is shown where the automated solution required by a manufacturing system is carried out and executed in two different devices for portability testing, and the scan cycle periods are compared for both approaches.
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Ohoiwutun, John, und Alimuddin Mappa. „ANALISIS KENDALI SENSOR CAHAYA PADA MODUL LIFT 5 LANTAI MENGGUNAKAN PLC OMRON TIPE CP1E30“. Electro Luceat 4, Nr. 2 (01.11.2018): 15–25. http://dx.doi.org/10.32531/jelekn.v4i2.140.

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PLC (programmable logic controller) pada dasarnya adalah sebuah komputer yang khusunya di rancang untuk mengantikan sistem berbasis relay. Dengan menggunakan PLC perancangan sistem masing-masing memiliki jumlah yang berbeda, umumnya perbandingan input dan output pada suatu PLC adalah 60 persen berbanding 40 ( 18 terminal input dan 12 terminal output). Tujuan dari Penelitian ini adalah Pembuatan Modul praktek untuk mempelajari bagian prinsip kerja dari sistem control motor naik turun otomatis menggunakan PLC Omron CP1E. simulasi mengunakan Input dari PLC untuk pengontrolan sensor cahaya yang mendeteksi keberadaan box Lift. Pada output PLC digunakan Motor Power window dan indicator Lift yang menandakan box Lift secara otomatis sedang berjalan. Pengontrolan Motor Naik Turun melalui bahasa pemogramanserta ladder diagram. Menggunakan alat peraga yaitu PLC Omron CP1E.
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36

Bogdan, Laurean. „Using the Microcontroller and the PLC in a RPP Robot Control“. Advanced Materials Research 463-464 (Februar 2012): 1721–24. http://dx.doi.org/10.4028/www.scientific.net/amr.463-464.1721.

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This paper presents some aspects regarding the possibility of combining microcontroller and programmable logic controller (PLC) for robot control. The RPP robot is designed and manufactured within the Faculty of Engineering from “Lucian Blaga” University of Sibiu, as a patent: BRAŢ TELESCOPIC, Nr. 112418 B1, Int.CI.6 B 25 J 18/02, from 17.02.1997. Classical systems for programming and control of industrial robot are based on numerical control equipment, developed around a PC. Programmable Logic Controllers (PLC) haves proven to be viable alternatives to driving machine tools, industrial systems and Robots. Microcontrollers as computers offer advantage due to programmable inputs and outputs ports. The application of a microcontroller and PLC in control of a robot is presented in this paper.
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Kuzmin, E. V., und V. A. Sokolov. „On Construction and Verification of PLC-Programs“. Modeling and Analysis of Information Systems 19, Nr. 4 (28.02.2015): 25–36. http://dx.doi.org/10.18255/1818-1015-2012-4-25-36.

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We review some methods and approaches to programming discrete problems for Programmable Logic Controllers on the example of constructing PLC-programs for controling a code lock. For these approaches we evaluate the usability of the model checking method for the analysis of program correctness with respect to the automatic verification tool Cadence SMV. Some possible PLC-program vulnerabilities arising at a number approaches to programming of PLC are revealed.
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Milik, Adam, und Edward Hrynkiewicz. „Synthesis and Implementation of Reconfigurable PLC on FPGA Platform“. International Journal of Electronics and Telecommunications 58, Nr. 1 (01.03.2012): 85–94. http://dx.doi.org/10.2478/v10177-012-0012-8.

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Synthesis and Implementation of Reconfigurable PLC on FPGA PlatformThe paper presents a set of algorithms dedicated for synthesis of reconfigurable logic controllers implemented on FPGA platform and programmed according to IEC1131 and EN61131. The program is compiled to hardware structure with a massive parallel processing. The developed method automatically allocates resources and operations. It controls resource usage and operation timing. Using mixed concept of operation allocation that considers operation timing and forms combinatorial chains of operations number of execution cycles can be reduced. An example of logic functions, PID controller and mixed arithmetic and logic programming examples are considered. Introducing the automatic implementation method allows flexible implementing the control algorithms. The maximal possible parallelism (limited only by the algorithm dependencies and available resources) is introduced.
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Putra, Dimas Farid Arief, und Stefanus Stefanus. „Kajian Literatur –Penggunaan Sensor Waterflow pada Proses Pencampuran Cairan Dalam Industri“. Ultima Computing : Jurnal Sistem Komputer 11, Nr. 1 (30.08.2019): 20–23. http://dx.doi.org/10.31937/sk.v11i1.1098.

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Programmable Logic Controller (PLC) merupakan alat yang digunakan sebagai pengendali sistem pencampuran cairan yang terdiri dari sensor, dan aktuator. Sensor waterflow digunakan di dalam sistem ini karena sensor tersebut memiliki keluaran di dalam liter per jam sehingga lebih memudahkan proses komputasi PLC dalam pengaturan kran elektrik sebagai aktuator.
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Zhu, Jin Wen. „PLC Based Bottling Process Control System“. Applied Mechanics and Materials 615 (August 2014): 361–64. http://dx.doi.org/10.4028/www.scientific.net/amm.615.361.

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As the use of automation increases in the manufacturing industry as well as other industrial environments, more programmable logic controllers (PLCs) are used in these areas to increase reliability and flexibility, reduce cost, and increase maintainability. In this proposed paper, a basic of PLC in automation environments is introduced and a bottle filling and packaging process control implemented by using Allen Bradly CompactLogix PLC is discussed.
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SILVA, Jeydson, Davidson MARQUES, Ronaldo AQUINO und Otoni NÓBREGA. „A PLC-based Fuzzy Logic Control with Metaheuristic Tuning“. Studies in Informatics and Control 28, Nr. 3 (09.10.2019): 265–78. http://dx.doi.org/10.24846/v28i3y201903.

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42

Góra, P., E. M. Sroczan und A. Urbaniak. „Programmable Logic Control (PLC) for Small Water Demineralization Plant“. IFAC Proceedings Volumes 25, Nr. 25 (September 1992): 251–56. http://dx.doi.org/10.1016/s1474-6670(17)49613-3.

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Al-Khudairy, Taha F., Bakir A. R. Al-Hashemy und Munqith A. J. Al-Baker. „Design of a VMEbus-based programmable logic controller (PLC)“. Microprocessors and Microsystems 21, Nr. 5 (Februar 1998): 329–36. http://dx.doi.org/10.1016/s0141-9331(97)00046-x.

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Wicaksono, Gema Ridho, und Riky Dwi Puriyanto. „Programmable Logic Controller (PLC) Based Paint Viscosity Control System“. Buletin Ilmiah Sarjana Teknik Elektro 3, Nr. 1 (13.01.2021): 1. http://dx.doi.org/10.12928/biste.v3i1.1109.

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Automatic control has been developed in various fields, one of which is paint quality control. Paint quality can be controlled from various categories, including paint quality based on its viscosity. Therefore, we need a system that can control the viscosity of the paint. The paint viscosity control system uses the PLC OMRON CP1E-NA20DRA with a heater as a heat source, and the LM35DZ sensor as a temperature reading sensor, and the RPM reading is used to calculate the viscosity value. The programming language used is the ladder diagram on the CX-Programmer. This system uses the PID (Proportional, Integral, and Derivative) Algorithm so that temperature control can be set at 30ºC so as not to affect the viscosity of the paint. In addition, this prototype provides two PID tuning options, namely manual and auto-tuning. Researchers get the results that a good temperature control system response has a PB value = 0.2%; Ti = 452.5s and TD = 66.6s. and control the accuracy level of paint viscosity control of 67.82%.
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Septian, Dendy Achmad, Emilia Roza und Rosalina Rosalina. „Perancangan Sequencing Chiller untuk Menstabilkan Temperatur Suhu Ruangan Menggunakan Programmable Logic Control (PLC)“. Prosiding Seminar Nasional Teknoka 3 (24.12.2018): 79. http://dx.doi.org/10.22236/teknoka.v3i0.2829.

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Penggunaan chiller sebagai pendingin ruangan sudah banyak digunakan di perkantoran maupun industri. Belum adanya automatisasi pada alat pendingin menyebabkan muncul kendala suhu yang dihasilkan pendingin masih naik turun tergantung keadaan cuaca. Selain itu jumlah chiller yang digunakan juga tidak bisa dikontrol sehingga kalori yang digunakan menjadi maksimal yang menyebabkan pemakaian listrik menjadi besar juga. Perancangan sequenching chiller menggunakan PLC ini, bertujuan agar suhu yang dihasilkan oleh sequencing chiller stabil pada 27oC dan energy yang digunakan berkurang hingga 50%. Hasil pengujian dari perancangan bahwa setelah menggunakan PLC suhu dalam ruang dapat dikontrol stabil pada 27 derajat celcius.Dari 3 chiller yang tersedia pada mesin pendingin dengan PLC bisa dikontrol jumlah yang dipakai sehingga dapat menghemat 50% energy listrik yang digunakan.
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Ferdiansyah, Andri, Ida Bagus Alit Swamardika und IGA Putu Raka Agung. „Rancang Bangun Sistem Pencahayaan Otomatis Berbasis Pemrograman Ladder PLC (Programmable Logic Controller) Zelio“. Majalah Ilmiah Teknologi Elektro 15, Nr. 2 (15.12.2016): 87–92. http://dx.doi.org/10.24843/mite.1502.13.

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Mustapa, Rijalul Fahmi, Rozi Rifin, Mohd Ezwan Mahadan und Aznilinda Zainuddin. „Interactive Water Level Control System Simulator Based on OMRON CX-Programmer and CX-Designer“. International Journal of Emerging Technology and Advanced Engineering 11, Nr. 9 (20.09.2021): 91–99. http://dx.doi.org/10.46338/ijetae0921_11.

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Abstract— Programmable Logic Controller (PLC) is an essential component in industrial automation where it acts as the backbone of the system. In line with Industrial Revolution (IR) 4.0, most industrial and manufacturing sectors move towards automation systems. Preparing university students about automation and PLC fundamental knowledge and skill is crucial before graduation, where the preoccupied knowledge will enhance graduate employability. Fulfilling this task, universities have to prepare the necessary equipment in the laboratory for teaching and learning purposes. The problem arises when certain universities with budget constraints cannot purchase the equipment for the PLC embedded system as huge costs have to be borne by universities. Thus, an alternative approach has to be taken where the main objective of this paper is to develop an interactive water level control system simulator as a substitution of the expensive automation PLC embedded system for teaching and learning purposes. OMRON software, namely CX-Programmer and CX-Designer used to design and develop an interactive water level control system simulator. In addition, the interactive water level control will be embedded with a PLC component that replicates the actual automation system laboratory equipment. Moreover, universities with a limited budget can utilize the tool for teaching and learning purposes of the PLC and automation system, which is the main contribution of this paper. Keywords—Water Level Control System, Programmable Logic Controller, Simulator, CX-Programmer, CX-Designer.
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Jayapalan, Gopalakrishnan, Ganga Agnihotri und D. M. Deshpande. „Cathodic Protection of Pipeline Using Distributed Control System“. Chinese Journal of Engineering 2014 (16.06.2014): 1–7. http://dx.doi.org/10.1155/2014/681908.

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Distributed control system (DCS) is available in most of the compressor stations of cross-country pipeline systems. Programmable logic controller (PLC) is used in all the intermediate pigging (IP) stations/sectional valve (SV) stations to collect the field data and to control the remote actuated valves. This paper presents how DCS or PLC can be used for cathodic protection of gas pipelines. Virtual instrumentation (VI) software is used here for simulation and real-time implementation purpose. Analog input channels available in DCS/PLC can be used to measure pipe to soil potential (PSP) with the help of half-cell and voltage transducer. Logic blocks available in DCS can be used as low selector switch to select the lowest PSP. Proportional-integral (PI) controller available in DCS/PLC can be used for taking the controlling action. PI controller output varies the firing angle of AC phase controller. Phase controller output is rectified, filtered, and fed to the pipeline as cathodic protection current. Proposed scheme utilizes existing infrastructure to control pipeline corrosion.
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A. Ali, Methaq, Abbas H. Miry und Tariq M. Salman. „IMPLEMENTATION OF ARTIFICIAL INTELLIGENCE IN CONTROLLING THE TEMPERATURE OF INDUSTRIAL PANEL“. Journal of Engineering and Sustainable Development 25, Nr. 01 (01.01.2021): 92–99. http://dx.doi.org/10.31272/jeasd.25.1.8.

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Artificial intelligence has been widely used in various applications such as health and safety, smart homes, greenhouses, and industrial application. It has been increasingly utilized in the industry owing to its benefits in terms of enhancing the overall performance of a given system. This study appeared from a real need in many local industries. In this paper, a prototype system has been implemented for artificial control on the temperature of the industrial panel. The paper includes two control systems executed; classical PID (Proportional Integral Derivative) and fuzzy logic with a comparison between them. Fuzzy control algorithm is developing based on Sugeno method inside PLC (Programmable Logic Controller). The connection of PLC with sensors is used by the Modbus protocol. Arduino UNO and Ethernet shield are used to connect the sensor to the router and then to PLC by Modbus.
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Shi, Xiao Juan. „Design and Implementation of an Embedded PLC System with Applied-Information Technology“. Applied Mechanics and Materials 685 (Oktober 2014): 401–4. http://dx.doi.org/10.4028/www.scientific.net/amm.685.401.

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To overcome the shortcomings of external PLC (Programmable Logic Controller) and soft PLC being widely employed in switch control of CNC machine tool, an embedded PLC system was developed by integrating AVR single chip ATMEGA169, PC bus technique and dual port RAM. Both hardware circuit and software of the PLC system were designed and implemented. The software of Industrial PC was developed by using ladder-diagram IDE (Integrated Design Environment) based on the platform of Borland C++ Builder. In this environment, it can fulfill edit, compilation and communication function of ladder-diagram file. It also can monitor and diagnose PLC running status. This developed embedded PLC system has the characteristics of compact structure, high communication and reliability. It can effectively satisfy real-time control requirements of CNC machine tool.
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