Academic literature on the topic 'PXIe instrument'

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Journal articles on the topic "PXIe instrument"

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Li, Hai Ming, Li Mei Zhang, and Feng Sa. "Design the Integrated Multipurpose Instrument Calibrating Equipment Based on the PXI and LabVIEW." Advanced Materials Research 1037 (October 2014): 134–38. http://dx.doi.org/10.4028/www.scientific.net/amr.1037.134.

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According to the function, the technical indexes and the cost control etc, we select the embedded control computer and virtual instrument module based on the PXI, and developed the integrated multipurpose instrument calibrating equipment, it realized the field measurement and calibration of the electrical instrument away from the laboratory. The system is designed based on PXI and LabVIEW, it uses virtual instrument technology, automatic control technology and database technology, by combining these functional modules of NI, we realized the calibration of electrical instruments such as digital multimeter, signal generator, oscilloscope and cymometer etc. The system is used integrated design, and it is very flexible, it can be popularized and applied as working standard to troops, factories or schools etc.
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Chen, Guo Shun, Gang Niu, and Sa Sa Ma. "Design and Application of a Measuring and Diagnosing System Based on Networked Virtual Instrument." Applied Mechanics and Materials 128-129 (October 2011): 561–66. http://dx.doi.org/10.4028/www.scientific.net/amm.128-129.561.

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With the rapid development of virtual instrument technology and network technology, the networked virtual instruments appear great potential in remote measuring and diagnosing field. This paper first presents a measuring and diagnosing system for complicated electric equipments based on PXI/VXI networked virtual instruments, then analyze the architecture of the network and the hardware, software configurations. Currently, the system has been successfully implemented in a large, complicated electric equipment for measuring and diagnosing, and achieved good results.
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Tang, Ji Xiang, and Zhi Gang Zhu. "The Test System of PXI-Based Aeronautic Equipment." Applied Mechanics and Materials 519-520 (February 2014): 1133–38. http://dx.doi.org/10.4028/www.scientific.net/amm.519-520.1133.

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By analyzing the interface characteristics and test requirements of certain aeronautic equipment, using PXI instrument as test platform, integrated using SPIB instrument, virtual instrument, simulation technologies, independent developed video output collection equipment, SRU testing equipment modules and other hardware device, developed integrated automatic test equipment which based on PXI and GPIB bus instrument technology, provide airborne work environment for weapons, instrument, electrical, communication, navigation, identification, reactance systems airborne LRU, automatic complete the control, incentive, performance and function test of LRU.
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Huang, Hui, and Shu Mei Chen. "Design of Measurement and Control System for Medium and High Pressure Hydraulic Pump Test Platform Based on PXI Bus Structure." Advanced Materials Research 516-517 (May 2012): 876–82. http://dx.doi.org/10.4028/www.scientific.net/amr.516-517.876.

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Based of PXI (PCI Extensions for Instrumentation) bus structure, a measurement and control system for medium and high pressure hydraulic pump test platform is designed in this paper. This system is comprehensive testing equipment which has adopted the traditional technologies include hydraulic, computer, virtual instrument and detecting. Its measurement and control system has introduced new techniques with combining PXI bus structure and relay, which can realize manual/automatic synchronical operation and one key operation. Use graphic language Lab VIEW 9.0 as its developing platform, the system realizes synchronically display of the mechanical instrument and the virtual instrument which has increased the test accuracy and speed.
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Nurhidayanti, Nisa, Nur Ilman Ilyas, and Dhonny Suwazan. "Efektivitas Kombinasi Kitosan dan Ampas Kopi sebagai Adsorben Alami dalam Menurunkan Konsentrasi Arsen Pada Limbah Cair PT PXI." Jurnal Tekno Insentif 15, no. 2 (October 31, 2021): 76–87. http://dx.doi.org/10.36787/jti.v15i2.584.

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Abstrak PXI adalah salah satu perusahaan di Kabupaten Bekasi yang bergerak di bidang jasa layanan laboratorium. Dalam menjalankan kegiatannya, PXI menghasilkan logam arsen ke lingkungan. Keberadaan arsen di dalam air limbah PXI harus segera diselesaikan agar tidak mencemari lingkungan dan membahayakan kehidupan manusia. Metode yang digunakan dalam penelitian ini adalah metode eksperimen dan deskriptif kuantitatif berdasarkan data hasil laboratorium menggunakan instrumen FT-IR, SEM EDX dan AAS. Tahapan penelitian terdiri dari sintesis, karakterisasi dan penggunaan adsorben alami untuk menurunkan logam arsen pada air limbah. Hasil penelitian menunjukkan bahwa penggunaan adsorben alami kitosan dan karbon aktif ampas kopi 1,4 gram dapat menghasilkan efisiensi penurunan logam arsen tertinggi sebesar 86,18% dengan konsentrasi akhir sebesar 0,79 mg/L. Namun hasil tersebut belum memenuhi baku mutu logam arsen yang ditetapkan Peraturan Menteri Lingkungan Hidup Nomor 12 Tahun 2020. Sehingga perlu dilakukan penelitian lebih lanjut untuk meningkatkan efisiensi penurunan logam arsen. Abstract PXI is one of the companies in Bekasi Regency which is engaged in laboratory services. In carrying out its activities, PXI produces arsenic metal into the environment. The presence of arsenic in PXI wastewater must be resolved immediately so as not to pollute the environment and endanger human life. The method used in this study is an experimental and quantitative descriptive method based on laboratory data using FT-IR, SEM EDX and AAS instruments. The research stages consisted of synthesis, characterization and the use of natural adsorbents to reduce arsenic metal in wastewater. The results showed that the use of chitosan natural adsorbent and 1.4 gram coffee grounds activated carbon could produce the highest arsenic metal reduction efficiency of 86.18% with a final concentration of 0.79 mg/L. However, these results do not meet the quality standard for arsenic metal as stipulated by the Regulation of the Minister of the Environment Number 12 of 2020. So it is necessary to do further research to increase the efficiency of reducing metal arsenic.
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Zhang, Wan Fa, Lei Chen, and Ti Qiang Shan. "Design of a Static Test System of Photoelectric Parameters for a Smart Ammunition." Applied Mechanics and Materials 347-350 (August 2013): 210–13. http://dx.doi.org/10.4028/www.scientific.net/amm.347-350.210.

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A static test system of photoelectric parameters for a smart ammunition is introduced, which provides a new solution for the detection of smart ammunitions. The system uses the technology of virtual instruments, PXI buses and intelligent connectors, constructs its hardware platform by the method of PXI modules, develops the test software in the circumstance of LabWindows/CVI and accomplishes the test of related parameters by the control of relevant modules. Experiments show that, the system designs reasonably, compared with traditional testing instruments, it is more accurate, reliable, and has favorable extending. It can also finish many other kinds of smart ammunitions by add or reduce relevant hardware modules and software modules.
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Wang, Bao Peng, Yong Bin Leng, Wei Min Zhou, Lu Yang Yu, and Ying Bing Yan. "Cavity Beam Position Monitor Test System Based on Virtual Instrument." Applied Mechanics and Materials 333-335 (July 2013): 2354–57. http://dx.doi.org/10.4028/www.scientific.net/amm.333-335.2354.

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Based on the virtual instrument technology, a dedicated test system has been developed for cavity beam position monitor (CBPM). The system consists of commercial nanopositioning stage and its controller, the analog output DAQ card based on PXI and network analyzer. In the LABVIEW environment, software which implemented function of instrument control and data acquisition based on virtual instrument soft architecture (VISA) has been developed. Experimental results illustrated that the test system achieved positioning precision of sub micron which meets requirement of test of CBPM. Also it could serve CBPM signal processing system.
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Musioł, Krzysztof. "Experimental Study of Digitizers Used in High-Precision Impedance Measurements." Energies 15, no. 11 (May 31, 2022): 4051. http://dx.doi.org/10.3390/en15114051.

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In the currently used primary impedance measuring systems, there is a need to compare standards with ratios different from 1:1, e.g., in order to transfer the value to multiples or submultiples of the basic quantity. Unfortunately, the commercial PXI sampling systems used to measure the voltage ratio in the impedance bridge, although they provide adequate resolution, show a considerable non-linearity of the measurement. This leads to significant error of the impedance ratio measurement. Experimental studies of commercial PXI digitizers used in primary impedance metrology are presented in the paper. The scope of the work includes presentation of the sampling measurement system hardware used in electronic synchronous impedance bridges and studies of the parameters that affect the applicability of PXI digitizers in high-precision measuring instruments. Nonlinearity errors of digitizers on boards NI PXI-4461 and NI PXI-4462 were measured and appropriate conclusions regarding possible corrections of the errors were drawn.
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Ma, Yun Long, Li Jun Tian, Ying Lin Qin, and Tao Jiang. "Grid-Connected Photovoltaic Monitoring System Based on Virtual Instrument." Applied Mechanics and Materials 521 (February 2014): 233–40. http://dx.doi.org/10.4028/www.scientific.net/amm.521.233.

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Combined with the theories of distributed monitoring, the technologies of virtual instrumentation and database management,a grid-connected photovoltaic monitoring system is developed based on virtual instrumentation technology. The hardware architecture and software programming are expounded, by hardware and software ways, various parameters of the grid-connected photovoltaic system are collected and analyzed real-timely with CompactRIO system and PXI measuring system, it realizes the functions of monitoring the performance of the PV at the real-time, detecting the power quality of the common coupling point (PCC) and historic data management. Compared with traditional monitoring system, not only it meets the requirements of grid research for sampling speed, precision and recording capacity, but also the friendly interactive interface and the flexible expansibility are more comfortable for operators.
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Li, Qi, Yan Fei Liu, Da Cheng Luo, and Jing Jing Yang. "A New Method for High Speed CAN Protocol Conversion Circuit." Applied Mechanics and Materials 596 (July 2014): 873–76. http://dx.doi.org/10.4028/www.scientific.net/amm.596.873.

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Due to high correspondence speed, great real-time performance and good expansibility, CAN bus has been used widely in aerospace, large-scale equipments and other fields these years .This paper introduces a kind of CAN Bus Test Instrument based on PXI bus and FPGA, which is used to test and monitor the CAN bus equipment. The result of test shows that this kind of test instrument has great advantages in reliability, stability and extensibility.
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Dissertations / Theses on the topic "PXIe instrument"

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Ryefalk, Maria. "Evaluation of PXI instruments." Thesis, Linköpings universitet, Institutionen för datavetenskap, 2016. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-123728.

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This thesis has been written at Ericsson AB in Kumla. The purpouse of the thesis was to evaluate if it was possible to use PXI instruments in Ericsson’s current test system and if it would bring any improvements. The parameters considered were compatibility, test time, radio frequency performance, equipment footprint and total cost of ownership. Compatibility and test time was evaluated using small test apps, the other three evaluations are based on calculations. We found that PXI is compatible with Ericsson’s current test system, is faster than the current instruments, has similar radio frequency performance stats, does not change equipment footprint and shows a 6 % cost decrease in total cost of ownership.
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Borg, Daniel, and Ulf Mantling. "Syntetiska Instrument." Thesis, University of Gävle, Ämnesavdelningen för elektronik, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-5481.

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This thesis aims to investigate SAAB AB´s possibilities to use synthetic instruments in their test systems. The reason for this is reducing costs and the risk of obsolescence which is common when test systems operate for several decades.

The market around synthetic instruments has been explored in the search for suitable hardware and software. Software has been developed in LabVIEW and synthetic instruments have been created with the help of IVI-drivers. The hardware consisted of PXI-instruments (Waveform generator and Digitizer), connected to a computer using a fiber optic link and PXI-chassi. The created instruments was then compared to common instruments used today, and the comparison turned out well. Advantages, disadvantages and the theory surrounding synthetic instruments is also covered. This thesis is only an introduction and further work will be necessary to implement synthetic instruments at SAAB.

The thesis also purposes suitable hardware and further development based on the test systems used today, and how it is possible to solve the layer structure.


Detta examensarbete har som mål att undersöka möjligheterna för SAAB AB att börja använda sig av syntetiska mätinstrument i sina testsystem. Anledningen till detta är att SAAB AB vill minska kostnaderna och riskerna för obsolescens som finns när testsystem är i drift i flera decennier. Detta har inneburit att marknaden har sonderats efter lämplig hårdvara och mjukvara för tillämpningen. Förutom detta har mjukvara tagits fram i LabVIEW och syntetiska instrument skapats med hjälp av IVI-drivrutiner. Som hårdvara användes PXI-instrument (vågformsgenerator och digitizer) med tillhörande chassi och fiberoptisk länk från National Instruments. De framtagna instrumenten har jämförts med vanliga reella instrument och visat sig fungera väl, men även fördelar och nackdelar belyses samt teori kring hur syntetiska instrument fungerar. Examensarbetet är endast en introduktion i ämnet och kräver ytterligare arbete innan det är praktiskt genomförbart. Förutom detta ges även förslag på lämplig hårdvara och vidareutveckling baserat på hur testsystemen ser ut i dag, och förslag på hur lageruppbyggnaden skulle kunna lösas.

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Kyselý, Tomáš. "Selftest pro automatický průmyslový tester." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2017. http://www.nusl.cz/ntk/nusl-316423.

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Work discusses about the test station in NXP Semiconductors Company in Rožnov pod Radhoštěm. It describes first the test station itself and its possibilities in software libraries testing. Second it describes automatic selftest of this station and sub-steps of this selftest. This work is also used as a documentation for company needs. KEYWORDS
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Flores, Alfonso S. "Development of a software-defined integrated circuit test system using a system engineering approach on a PXI platform." [Tampa, Fla] : University of South Florida, 2008. http://purl.fcla.edu/usf/dc/et/SFE0002629.

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Book chapters on the topic "PXIe instrument"

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Octavian Nemeș, Raul, Mircea Ruba, Sorina Maria Ciornei, and Raluca Maria Raia. "Powerful Multilevel Simulation Tool for HiL Analysis of Urban Electric vehicle’s Propulsion Systems." In New Perspectives on Electric Vehicles [Working Title]. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.98532.

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The general focus of the proposed chapter is to describe a complex yet transparent solution for advanced simulation analysis of urban electric vehicles propulsion unit. As general rule, precise and realistic results are obtained only when performing real-time simulations, engaging dedicated software for such applications. Hence, simulation of an electric vehicle as a complete solution can become rather difficult. The authors targeted advanced analysis of the propulsion unit, including the motor, the battery, the power converter, and its control. These are designed using multilevel models in Matlab/Simulink, referring to different complexity levels of each assembly. Another feature of the models is their organization, based on Energetic Macroscopic Representation (EMR), this easing the process of inter-connecting models correctly. Nevertheless, the mechanical, aerodynamical and road profile details are included using Amesim Software. All the simulations are performed on a real-time target, using a National Instruments PXIe embedded controller. The latter runs NI VeriStand software, allowing real-time communication between Amesim and Simulink offering in the same time possibility to read/write analog/digital IOs for external communication. This feature in fact is used when passing from modeling to Hardware in the Loop (HIL) analysis, replacing the simulated assembly with the actual one.
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Conference papers on the topic "PXIe instrument"

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Gray, Damien F. "Using Modular Instruments to Reduce Costs." In NCSL International Workshop & Symposium. NCSL International, 2014. http://dx.doi.org/10.51843/wsproceedings.2014.02.

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Calibration is typically performed with large, expensive standards with multiple modes of operation. These standards can be expensive to ship and difficult to move around. This makes their use in field calibration both difficult and expensive. Modular instrumentation based on standard computer buses, such as PXIe, is now available with specifications which meet or exceed those needed for many calibrations. These modular instruments are typically smaller, more flexible, less expensive, and faster than the equivalent, standalone standard. This paper will analyze several common field service use cases and show the relative merits of both traditional and modular instruments as field calibration standards.
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Li, Xiang. "Application of High-Tech in Nuclear Power Instruments." In 2013 21st International Conference on Nuclear Engineering. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/icone21-16358.

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In recent years, nuclear power instruments have been developed quickly with the rapid development of nuclear power plants in China. In order to improve synthetic qualities and reliability of products and shorten period of development, many high-tech has been widely used in these instruments. LPMS is one of the typical representatives of the nuclear power instruments. LPMS is an important instrument to ensure the safe operation of the reactor. LPMS can realize the real-time monitoring of metal parts’ abnormal conditions both internal and external at key equipments of the reactor, such as the reactor pressure vessel, the steam generator, the main cooling pump and so on. LPMS has been applied in several nuclear power plants successfully. LPMS has complex functions of signal acquisition, event discrimination, data transmission and storage. In this paper, through detailed introduction of hardware design and software design, it is evident that LPMS adopts lots of high-tech. On the one hand, this paper emphasizes to expound advanced and mature technology of hardware design, such as FPGA, DSP and PXI bus and so on. To the nuclear power instruments, the application of high-tech not only improves the integration, enhances the stability and the reliability, but also makes more flexible and easier to expand functions and upgrade hardware. The application of high-tech impels the nuclear power instruments to develop towards low power consumption, miniaturization, high precision, multi-function. On the other hand, this paper introduces graphic programming language LabVIEW and virtual instrument of software design. The application of high-tech of software design decreased the difficulty of programming and shorten period of development. At the end of this paper, it seems that the application of high-tech makes the nuclear power instruments to follow closely the scientific forward position, and to further promote the steady development.
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Xili, Han, Zhang Lei, and Dai Zhijian. "Measurement for thin film transistor electrical performance based on PXIe bus." In 2017 13th IEEE International Conference on Electronic Measurement & Instruments (ICEMI). IEEE, 2017. http://dx.doi.org/10.1109/icemi.2017.8266004.

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Peng, Yu, Shuangwu Yao, and Shaojun Wang. "Design of PXI 32-channel scanning A/D converter module." In Instruments (ICEMI). IEEE, 2009. http://dx.doi.org/10.1109/icemi.2009.5273993.

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Yanjun, Zhang, and Yu Xiaoguang. "Research of auto test system of integrative measurement controller based on PXI bus." In Instruments (ICEMI). IEEE, 2009. http://dx.doi.org/10.1109/icemi.2009.5274829.

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Li Guangfeng, Zhang Changjun, Zhang Fulong, and Wang Tao. "Calibration system of driver display-terminal for special vehicle based on PXI bus." In Instruments (ICEMI). IEEE, 2011. http://dx.doi.org/10.1109/icemi.2011.6037758.

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Robins, Jeff, and Michael Dewey. "Incorporating advanced instrumentation capabilities into a PXI digital multimeter instrument." In 2012 IEEE AUTOTESTCON. IEEE, 2012. http://dx.doi.org/10.1109/autest.2012.6334574.

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Zhao, Guangquan, Yandong Hou, and Shaojun Wang. "Research on reconfiguration technology based on SOPC for PXI instrument." In 2015 IEEE AUTOTESTCON. IEEE, 2015. http://dx.doi.org/10.1109/autest.2015.7356503.

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Zhang, Li, and Jun Peng. "Primary acceleration calibration by heterodyne laser interferometer and PXI instrument." In Sixth International Conference on Vibration Measurements by Laser Techniques: Advances and Applications. SPIE, 2004. http://dx.doi.org/10.1117/12.579619.

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Chenakin, Alexander, Suresh Ojha, and Charanbir Mahal. "A PXI fast switching LO synthesizer enables 26.5 GHz synthetic instruments." In 2008 IEEE AUTOTESTCON. IEEE, 2008. http://dx.doi.org/10.1109/autest.2008.4662599.

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