Journal articles on the topic 'Electricity technology'

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1

Mills, D. "Advances in solar thermal electricity technology." Solar Energy 76, no. 1-3 (January 2004): 19–31. http://dx.doi.org/10.1016/s0038-092x(03)00102-6.

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2

Uchiyama, Yohji. "Electricity Storage Technology with Compressed Air." Journal of the Society of Mechanical Engineers 97, no. 912 (1994): 950–51. http://dx.doi.org/10.1299/jsmemag.97.912_950.

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3

Roth, Stefan, Stefan Hirschberg, Christian Bauer, Peter Burgherr, Roberto Dones, Thomas Heck, and Warren Schenler. "Sustainability of electricity supply technology portfolio." Annals of Nuclear Energy 36, no. 3 (April 2009): 409–16. http://dx.doi.org/10.1016/j.anucene.2008.11.029.

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4

Zhao, Guang Zhong, Shu Ping He, Wei Zhang, and Jian Nan WU. "Research and Application of Mobile Internet Technology in Power." Advanced Materials Research 986-987 (July 2014): 2148–50. http://dx.doi.org/10.4028/www.scientific.net/amr.986-987.2148.

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Based on mobile Internet technology applications, Customers access ladder price electricity price standard, the implementation, such as power charge information. Change the way traditional electricity propaganda, tips, rich ladder price electricity price means of propaganda, tips. Improve the enforcement ladder price electricity price propaganda, strengthen the publicity and guide ladder price electricity price, improve the various circles of society to the understanding and awareness of the residents ladder price electricity price policy. Tariff and other policies to promote in the future suggesting that provides technical application support for the implementation of the price ladder policy to create a good atmosphere.
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5

Zhang, Wei, Cai Xia Ma, and Shuang Xia Niu. "Discussig of Electricity Embedded Software Testing Technology." Applied Mechanics and Materials 401-403 (September 2013): 1674–79. http://dx.doi.org/10.4028/www.scientific.net/amm.401-403.1674.

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Focusing on the feature of embedded software in power industry and to ensure its high reliability, the authors of this article introduced a comprehensive and effective testing technique based on the theory and practice of embedded test, with two phases: static test and dynamic unit test. It focus on the coding rule checking, quality metrics, analysis, flow control and data flow analysis and coverage analysis techniques.
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6

Petkewich, Rachel. "Technology Solutions: Creating electricity with undammed hydropower." Environmental Science & Technology 38, no. 3 (February 2004): 55A—56A. http://dx.doi.org/10.1021/es0403716.

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7

Larson, Eric D. "Technology for Electricity and Fuels from Biomass." Annual Review of Energy and the Environment 18, no. 1 (November 1993): 567–630. http://dx.doi.org/10.1146/annurev.eg.18.110193.003031.

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8

Benato, Alberto, and Anna Stoppato. "Pumped Thermal Electricity Storage: A technology overview." Thermal Science and Engineering Progress 6 (June 2018): 301–15. http://dx.doi.org/10.1016/j.tsep.2018.01.017.

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9

Singh, Ankit Kumar. "UHVDC-Technology Future of India Electricity Transmission." International Journal for Research in Applied Science and Engineering Technology 9, no. VII (July 20, 2021): 1620–27. http://dx.doi.org/10.22214/ijraset.2021.36686.

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it's proposed to use highly complex grid controllers to include power grids into one super- grid that may acquire large penetration of inexhaustible powers, without compromising power quality, active and reactive power flow, and voltage and facility stability. The super-grid constructed with ultra- high voltage DC (UHVDC) and flexible ac transmission systems (FACTS) together with dedicated ac and dc interconnectors with intelligent systems applications to supply a wise Integrated Super-Grid. DC interconnectors will segment the whole continent's power systems into five large asynchronous segments (regions). Noncontemporary divisions will prevent ac fault propagation between sections while allowing power exchange between different parts of the super-grid, with minimum difficulty for grid code unification or harmonization of regulatory regimes across the mainland as each segment maintains its accord . a sensible Integrated wattage Super-Grid powered by these technologies is critical in supporting sustained economic process and development; established on the keystone of renewable energy and utilizing over 600GW immeasurable potential of Africa's clean and renewable hydroelectric, photovoltaic and alternative energy as a little of a extensive energy comingle of traditional and complementary energy resources.
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10

Baker, Francine. "Have Technology Specific Measures for the UK Electricity Market Reform Gone Far Enough?" Journal of Clean Energy Technologies 4, no. 2 (2015): 136–39. http://dx.doi.org/10.7763/jocet.2016.v4.267.

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11

Zhu, En Guo, Lei Jiao Ge, Xiao Qiang Zhong, and Li Jun Dong. "Research on User Electrical Safety Monitoring System Based on Cloud Computing Technology." Applied Mechanics and Materials 681 (October 2014): 152–59. http://dx.doi.org/10.4028/www.scientific.net/amm.681.152.

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Electrical safety is a common goal of electricity customers and power companies. In order to meet the needs of different users for electricity safety, ensure the legitimate rights and interests of the State Grid Corporation and users, promote the service level of State Grid Corporation and improve the life quality of the users, an effective measures is the user electricity safety inspections. Firstly, it introduces the development of cloud computing technology and the advantages of the user electricity safety monitoring system based on cloud computing technology. Secondly, from three aspects of the system structure, function and cloud system, the user electrical safety monitoring system based on cloud computing technology has been elaborated. Lastly, it discusses the development of the lateral user electricity safety monitoring, and provides the reference for the application of user electricity safety inspections.
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12

Wang, You Xi. "Study on Virtual Building Electricity Laboratory." Advanced Materials Research 243-249 (May 2011): 6138–43. http://dx.doi.org/10.4028/www.scientific.net/amr.243-249.6138.

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Constructing a building electricity laboratory needs much fund because relevant equipment is developing fast. The virtual building electricity laboratory based on virtual reality technology and network technology seems to be a possible way to instruct students in electricity experiments when most colleges can not afford to expensive and constant-upgrade equipment. It studies the possibility of virtual building electricity laboratory in technology, constructs basic structure of virtual laboratory operational system, and researches electricity experiment system module functions.
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13

Yang, Yang, Chuang Zhang, Weiwei Yan, Qinci Liang, Minsheng Xuan, and Shuai Guo. "Research on Smart Electricity Meter Based on LoRa Technology." Journal of Physics: Conference Series 2218, no. 1 (March 1, 2022): 012030. http://dx.doi.org/10.1088/1742-6596/2218/1/012030.

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Abstract For the current wireless communication methods of smart electricity meter, the communication cannot simultaneously take into account low power consumption and long distance. In this paper, the smart electricity meter based on LoRa technology is studied, using FM3308 chip as the control core, achieving low-power and long-distance communication through LoRa technology, and the nti-interference design is carried out from both hardware and software aspects. The research content of this paper realizes the coexistence of longdistance transmission and low power consumption of smart electricity meter communication, and maintains the better anti-interference ability of smart electricity meter, which is conducive to the realization of long-distance centralized meter reading behavior and can greatly reduce the arrangement of repeaters, reduces the cost investment while lowering the design requirements and helps to promote the construction of smart grid.
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14

Zhai, Feng, Bing Zhao, Wei Cen, Yong Feng Cao, Zhi Qiang Sun, and Xiao Bing Liang. "Design of an Electric Metering Seal Application System Based on Cryptographic Technology." Advanced Materials Research 1030-1032 (September 2014): 1445–52. http://dx.doi.org/10.4028/www.scientific.net/amr.1030-1032.1445.

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According to such problems as the electricity metering seal’s pry-prevention and falsification-prevention performance is relatively weak, whose management technology is also relatively out of date, this paper has designed a much more security electricity metering seal application system based on the cryptographic technology and RFID technology. This system not only can realize the real-time monitor and manage to the electricity metering device and seal but also can ensure electricity metering seal’s falsification-prevention performance, key data’s integrity and confidentiality by leading-in advanced data cryptographic technology and adding security encryption device. It has great practical value.
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15

Guan, Zheng Qiang, and Jun Peng. "Static Var Compensator Technology and its Progress." Advanced Materials Research 179-180 (January 2011): 1374–79. http://dx.doi.org/10.4028/www.scientific.net/amr.179-180.1374.

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This paper introduced the fundamental types of Static Var Compensator (SVC) device and its typical circuit structures, analyzed the principles of SVC (TCR type), the typical structures of the main circuits and the corresponding control system, and the main functions of SVC devices. At last, the latest applications of domestic SVC devices in the field of electricity distribution network and the electricity transmission network are introduced.
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16

Zambrano, Telly Yarita Macías, Yoan Pablo Rodríguez Monier, Jean Telmo Mendoza Mera, Carmen Magdalena Mero Alcivar, Anita dolores zambrano Valencia, and Douglas José Giler Loor. "Environmental impact of photovoltaic solar technology." International journal of life sciences 5, no. 1 (April 28, 2021): 14–25. http://dx.doi.org/10.29332/ijls.v5n1.1137.

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The work presents an analysis linked to one of the environmentally sustainable energy alternatives that are currently being adopted with success Worldwide. Putting the field research method into practice, the results of a study related to an application of technological innovation are shown to reduce the amount of the electricity bill of a local teacher, through the introduction of photovoltaic technology connected to the low grid. Institution tension. The results of the load study and hourly energy consumption of said entity are shown and its own methodology is deployed for the technological design of a photovoltaic plant connected to the grid, which can avoid the energy consumption of the conventional grid, reducing the amount of the institution's electricity bill, at the same time that it is possible to reduce losses, improve the quality of electricity service and reduce COemissions2 into the atmosphere. The environmental and social impacts associated with the penetration of photovoltaic technology are exposed.
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17

Kumar, Rajeev Ranjan, Girish Kumar Jha, and Praveen Koovalamkadu Velayudhan. "Linkage of Electricity with Agricultural Growth and Technology Factors: An Illustration of India’s Case." Energies 15, no. 7 (March 25, 2022): 2422. http://dx.doi.org/10.3390/en15072422.

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Understanding the relationship between electricity consumption and economic growth is crucial for formulating efficient energy policies for all sectors in general, and for agriculture in particular. To study this, an empirical examination of the long-run co-movement and the causal relationship between electricity consumption and real gross state domestic product (GSDP) from agriculture and its allied sectors is attempted. The agricultural sector involves the use of different input technologies that are further influenced by electricity consumption. To account for this technology-enabling effect of electricity, we further take up an analysis of the relationship between electricity consumption and agricultural technology factors: fertilizer consumption, the share of irrigation, area under cereal, and the extent of mechanization. We use both state (data from 17 states for the period 1993–2017 for the electricity–GSDP relationship) and country-level data (for the period 1980–2018 for the electricity–technology factors relationship) in the analysis. Since short-period time series datasets analysis may yield unreliable and inconsistent results, we employed modern heterogeneous panel co-integration and panel-based error correction model techniques for analyzing the energy–growth linkage. When the heterogeneous states effect is taken into account, the empirical results fully support a positive long-run co-integrated connection between GSDP and electricity consumption. We could detect both long-run and short-run unidirectional causality running from electricity consumption to agricultural growth. Further electricity consumption was also found to augment the use of technology factors in agriculture. This calls for implementing policies and strategies for achieving higher electricity use in agriculture and improved efficiency in its utilization simultaneously.
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18

Seyyedabbasi, Amir. "Decrease Electricity Consumption in Rooms with IoT Technology." International Journal of Information Systems and Computer Sciences 9, no. 1 (February 15, 2020): 1–4. http://dx.doi.org/10.30534/ijiscs/2020/01912020.

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19

Rehman, Shafiqur, Ali A. Shash, and Omar S. Baghabra Al-Amoudi. "Photovoltaic Technology of Electricity Generation for Desert Camping." American Journal of Environmental Sciences 1, no. 1 (January 1, 2005): 50–58. http://dx.doi.org/10.3844/ajessp.2005.50.58.

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20

Kraeuchi, Philipp, and Olivier Steiger. "Electricity consumption of building technology: a calculation method." Journal of Physics: Conference Series 1343 (November 2019): 012125. http://dx.doi.org/10.1088/1742-6596/1343/1/012125.

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21

Staley, Richard. "Domesticating Electricity: Technology, Uncertainty and Gender, 1880–1914." Annals of Science 70, no. 2 (April 2013): 295–97. http://dx.doi.org/10.1080/00033790.2010.518768.

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22

Rehman, Shafiqur, Ali A. Shash, and Omar S. Baghabra Al Amoudi. "Photovoltaic technology of electricity generation for desert camping." International Journal of Global Energy Issues 26, no. 3/4 (2006): 322. http://dx.doi.org/10.1504/ijgei.2006.011262.

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23

Behrouzi, Fatemeh, Adi Maimun Abdul Malik, Yasser Mohammed Ahmed, and Mehdi Nakisa. "Electrical Generation Using Renewable Technology for Remote Area: A Review." Applied Mechanics and Materials 819 (January 2016): 512–17. http://dx.doi.org/10.4028/www.scientific.net/amm.819.512.

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This paper is a review about process, progress and operation principle of renewable technology using water current as a clean, green and renewable energy to generate electricity for areas especially remote site that access to water but they are poor in electricity.
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24

Zheng, Hua, Li Xie, and Li Zi Zhang. "Developed Machine Learning Technology and its Application on Electric Power System." Advanced Materials Research 217-218 (March 2011): 1289–92. http://dx.doi.org/10.4028/www.scientific.net/amr.217-218.1289.

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There is a general consensus that the movement of electricity price is crucial for electricity market. As a practical tool to estimate the future prices, electricity price forecast is of great importance and use for the operations of market participants. So a hybrid forecast model is proposed in this paper that integrates independent component analysis (ICA) with least squares support vector machines (LS-SVM). First, a novel feature extraction method of price influence factors is proposed based on ICA, which aims at mining the latent source-features by using the higher-ordered statistical characteristics. After that, nonlinear regression modeling of electricity price and its extracted features is accomplished by LS-SVM with more efficient training and forecasting. Finally, Californian market data are employed to test the proposed approach.
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25

S. V., Oprea. "Distributed database on blockchain technology for new era of electricity transactions." Scientific Bulletin of Naval Academy XXII, no. 1 (July 15, 2019): 44–51. http://dx.doi.org/10.21279/1454-864x-19-i1-006.

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The electricity retailers or suppliers promote business models focused on consumers-centred services except few of them. The reader could even doubt their interest in offering the most appropriate tariffs since lower tariffs imply lower revenue and consequently lower profit. No one-fit-for-all service can actively engage the electricity consumers. Most of the electricity consumers do not understand their consumption behaviour because they do not know it, they do not have real access to the consumption data. The current web portals do not share the consumption data with third parties, thus there is no market solutions. In this paper, we propose a distributed database architecture on blockchain technology for electricity transactions that innovate and increase the market competition in the era of digitalization enhancing the consumers awareness and transparent transitions.
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26

Tolley, D. L. "Industrial electricity tariffs." Power Engineering Journal 2, no. 1 (1988): 27. http://dx.doi.org/10.1049/pe:19880006.

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27

Dobie, William C. "Greening European electricity." Power Engineering Journal 5, no. 6 (1991): 250. http://dx.doi.org/10.1049/pe:19910050.

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28

Stephenson, P., and M. Paun. "Electricity market trading." Power Engineering Journal 15, no. 6 (December 1, 2001): 277–88. http://dx.doi.org/10.1049/pe:20010602.

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29

Guan, Zheng Qiang, Si Jing Liu, and Xing Hua Liu. "Static Var Generator Technology and its Applications." Applied Mechanics and Materials 494-495 (February 2014): 1870–75. http://dx.doi.org/10.4028/www.scientific.net/amm.494-495.1870.

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This paper analyzed the principles, the control methods, the features of the three operational patterns, and the merits of SVG technology as well as a brief introduction to the latest applications of SVG technology. Due to the limitations of the SVG technology, meanwhile its control strategies are very complicated; its fabrication cost is comparatively high when used to for the middle and high electricity pressure and big capacities of electricity transmission. But with the wide use of new technologies and new materials, the SVG technology will surely finds its broad applications.
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Jurnal, Redaksi Tim. "PERANCANG APLIKASI PENGENALAN LISTRIK KERAKYATAN BERBASIS MULTIMEDIA." PETIR 11, no. 1 (November 6, 2018): 60–66. http://dx.doi.org/10.33322/petir.v11i1.11.

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With the advancement of technology, there is an increased need of electricity. Listrik Kerakyatan (Grassroot Electricity) is a small scale electricity generation that is build together using easily obtained materials. There is a need to have a grassroots electricity software application based on multimedia to help society access information faster and easier. Presentation of information will be more interesting using multimedia. Multimedia is a technology that combines animation, pictures, audio and video delivered by an interactive computer system. Research result will be in a form of software application for grassroots electricity that will make society obtain information about electricity easier and faster.
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31

Kuzmin, P. S. "SMART METERING SYSTEMS: АN EMPIRICAL ANALYSIS OF TECHNOLOGY PERCEPTION FACTORS." Strategic decisions and risk management 12, no. 1 (August 4, 2021): 8–23. http://dx.doi.org/10.17747/2618-947x-2021-1-8-23.

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The use of smart metering systems for electricity is one of the key components of the digital transition in the power industry. Smart metering systems are equipped with modules for collecting, processing, storing, sending and receiving data, and their implementation generates a wide range of effects for electricity companies, electricity consumers, as well as authorities and industry regulators. The functionality of smart metering systems can be significantly expanded when using non-intrusive load monitoring meters. The purpose of this work is to develop a list of factors that have both a positive and a negative impact on the perception of intelligent metering systems technologies both among power companies and end consumers - participants in retail electricity markets.At the first stage of the study, based on the models of E. Rogers and F. Davis, a list of factors influencing the adoption of smart metering technologies by both energy companies and end consumers of electricity was developed. Based on in-depth interviews with experts, the factors were verified and questionnaires were developed for the next stage of the study.At the second stage, a quantitative study was carried out, which made it possible to determine the degree of influence of factors on the adoption of smart metering technology by users.At the end of the work, recommendations were developed to accelerate the distribution of smart metering systems and quickly achieve positive effects from their implementation.
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Makasheva, Svetlana, and Pavel Pinchukov. "Autonomous power supply technology in term of natural and technogenic disasters." MATEC Web of Conferences 265 (2019): 07002. http://dx.doi.org/10.1051/matecconf/201926507002.

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The paper deals the problem of the energy supply after disaster and emergency. The purpose of the paper is to review the autonomous power supply technology's application to provide electricity in the aftermath of disasters for emergency relief and to remote areas having no access to the grid. Safety requirements for electric power system facilities in case of a threat of violations and/or electricity supply fault are considered. The advantages of different types of autonomous electricity sources for disaster resilience are discussed. On the example of the Sakhalin Island, Russia, a conclusion about the difficulties of using solar electricity sources during the repair and recovery works after accidents and disasters at island territories is drawn. The paper concludes by emphasizing the importance of autonomous power supply technologies in engineering education and integrating them in programs related to alternative energy and disaster & emergency management.
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Intuwong, Gunt. "Developing Shallot Chemical Mixer through Mutually Incorporated Technology Transfer Technique." Applied Mechanics and Materials 886 (January 2019): 175–81. http://dx.doi.org/10.4028/www.scientific.net/amm.886.175.

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This research aim developing shallot chemical mixer through mutually incorporated technology transfer technique. In comparison between innovation and manual labor, it is found that the diffusion of the machine is minimal or barely increases speed and results in safety when mixing. In term of manual labor, the diffusion process causes delay when mixing and most importantly it may lead to health concerns. As for the value of bruising of the shallot, both techniques show slow bruising value and for electricity value, the motor has a 220 V 50 Hz alternate current electricity pressure. Shallots which weigh 25 kilograms consume 0.4 current A, it could be noticed that in 1 day, 5 hours of chemical mixing- in this case shallot, it requires energy in the amount of0.44 KWh. Taking the calculated value of the rate of power used multiply by the unit of operating electricity, which each household will use less than 150 units per month, since unit 0-150 is at 1.8047 Baht, the example of electricity fee paid daily and monthly will be shown. As for the use of shallot mixture at 25 kilograms using 5 hours, the result is 1,500 kilogram of electricity at 3.97 Baht and 45,000 kilogram per month, which calculates to 23.82 Baht of electricity fee. Comparing this to manual labor of 1 day mixing, the result is 2,000 kilogram at 200 Baht expense; the chemical mixer is therefore cheaper and able to give more accurate portion of the input.It is found that the training plan and manual guiding how to use the iron threshing machine, the learners has progressed in their knowledge at the level of 72.05% and satisfaction producers in terms of its characteristic is very high and the overall overview of the operating of the prototype is very high (x=4.33).
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Akpan, Uduak. "Technology options for increasing electricity access in areas with low electricity access rate in Nigeria." Socio-Economic Planning Sciences 51 (September 2015): 1–12. http://dx.doi.org/10.1016/j.seps.2015.05.001.

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35

Dumbura, Audrey, and Esma Ergüner Özkoç. "Examining Technology Acceptance in Least-Developed Countries: The Case of ZESA." Proceedings 74, no. 1 (March 3, 2021): 3. http://dx.doi.org/10.3390/proceedings2021074003.

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In this study, Zimbabwe Electricity Supply Authority (ZESA), which is the only electricity producer and supplier of public grid products (prepaid meters, mobile payment) in Zimbabwe, was evaluated according to the Technology Acceptance Model (TAM) for perceived usefulness, perceived ease of use and attitude toward using technology. The objective of the study was to examine consumers’ technology acceptance of ZESA’s new technology-dependent products. In this context, an online survey was conducted with 262 participants. The results obtained in the study were in parallel with the theory. In addition, consumers from different ages and educational backgrounds were able to purchase their electricity tokens without difficulty.
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Vélez-Henao, Johan Andrés, and Claudia María Garcia-Mazo. "Marginal technology based on consequential life cycle assessment. The case of Colombia." Revista Facultad de Ingeniería Universidad de Antioquia, no. 90 (January 24, 2019): 51–61. http://dx.doi.org/10.17533/udea.redin.n90a07.

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Electricity data is one of the key factors in life cycle assessment (LCA). There are two different approaches to model electricity and to apply average or marginal data in LCA studies. Marginal data is used in consequential whereas average data is considered in attributional studies. The aim of this study is to provide the long-term marginal technology for electricity power generation in Colombia until 2030. This technology is one capable of responding to small changes in demand on the market and is an important issue when assessing the environmental impacts of providing electricity. Colombia is a developing country with a national power grid, which historically has been dominated by Hydropower rather than fossil fuels. This particularity makes Colombian national power grid vulnerable to climatic variations; therefore, the country needs to introduce renewable resources into the power grid. This study uses consequential life cycle assessment and data from Colombian national plans for capacity changes in the power grid. The results show that whereas marginal electricity technology would most probably be Hydropower, Wind and Solar power are projected to reach more than 1% of the national power grid by 2030.
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Pujotomo, Isworo. "Compressed Natural Gas Technology for Alternative Fuel Power Plants." E3S Web of Conferences 31 (2018): 01011. http://dx.doi.org/10.1051/e3sconf/20183101011.

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Gas has great potential to be converted into electrical energy. Indonesia has natural gas reserves up to 50 years in the future, but the optimization of the gas to be converted into electricity is low and unable to compete with coal. Gas is converted into electricity has low electrical efficiency (25%), and the raw materials are more expensive than coal. Steam from a lot of wasted gas turbine, thus the need for utilizing exhaust gas results from gas turbine units. Combined cycle technology (Gas and Steam Power Plant) be a solution to improve the efficiency of electricity. Among other Thermal Units, Steam Power Plant (Combined Cycle Power Plant) has a high electrical efficiency (45%). Weakness of the current Gas and Steam Power Plant peak burden still using fuel oil. Compressed Natural Gas (CNG) Technology may be used to accommodate the gas with little land use. CNG gas stored in the circumstances of great pressure up to 250 bar, in contrast to gas directly converted into electricity in a power plant only 27 bar pressure. Stored in CNG gas used as a fuel to replace load bearing peak. Lawyer System on CNG conversion as well as the power plant is generally only used compressed gas with greater pressure and a bit of land.
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Zhang, Tao, and William J. Nuttall. "An Agent-Based Simulation of Smart Metering Technology Adoption." International Journal of Agent Technologies and Systems 4, no. 1 (January 2012): 17–38. http://dx.doi.org/10.4018/jats.2012010102.

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Based on the classic behavioural theory the “Theory of Planned Behaviour,” the authors have developed an agent-based model to simulate the diffusion of smart metering technology in the electricity market. The authors simulate the emergent adoption of smart metering technology under different management strategies and economic regulations. Their research results show that in terms of boosting the take-off of smart meters in the UK electricity market, choosing the initial users on a random and geographically dispersed basis and encouraging meter competition between energy suppliers can be two effective strategies. The authors also observe an “S-curve” diffusion of smart metering technology and a “lock-in” effect in the model. The research results provide users with insights as to effective policies and strategies for the roll-out of smart meters in the UK electricity market.
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Chang, Jing Yi, Yean Der Kuan, and Sheng Shian Liou. "Integration of Renewable Energy Technology in Building." Applied Mechanics and Materials 71-78 (July 2011): 2336–40. http://dx.doi.org/10.4028/www.scientific.net/amm.71-78.2336.

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The main “energy saving indicator,” from among nine green building indicators, evaluates the electrical power consumption of air conditioners and lighting. This study developed a small indoor personal office system with a 500W proton exchange membrane fuel cell (PEM fuel cell) as the power source, composed of LED indoor lighting, air fan, LED table lamp, notebook computer, printer, and acoustic equipment. Under continuous operations of 24h, this office system will generate 12kwh of electricity, which reduces 7.656kg of carbon dioxide output. If continuously operated for 1 year, it will generate 4,320kwh electricity, which reduces 2,756.16kg of carbon dioxide output. In addition, the side product water can be recycled as landscape water.
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Tamin, Nik Nur Faiqah, and Ahmad Fateh Mohamad Nor. "Application Of Graphical User Interface in Photovoltaic Technology: A Review." Journal of Electronics,Computer Networking and Applied Mathematics, no. 23 (May 16, 2022): 25–37. http://dx.doi.org/10.55529/jecnam.23.25.37.

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Photovoltaic (PV) system is one of the most widely used renewable energy technology other than hydropower and wind. Unlike the conventional way of generating electricity that uses fossil fuels and gas which releases CO2, PV has the ability to generate electricity without releases CO2. Graphical user interface on the other hand gives users access to all the tool's features in a single, easy-to-use interface. The main objective of this paper is to present a review of the GUI techniques for the photovoltaic technology system. The review in this paper shows the potential of GUI as a design tool for a photovoltaic technology. In addition, GUI is very useful to improve the photovoltaic technology process in order to make sure the system can provide sufficient electricity to meet the load requirement.
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41

Imre, Attila R. "Seasonal Energy Storage with Power-to-Methane Technology." Energies 15, no. 3 (January 19, 2022): 712. http://dx.doi.org/10.3390/en15030712.

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42

Khalil, Waqar, and Chatchai Sirisamphanwong. "Statistical Load Modeling for School of Renewable Energy Technology (SERT) Smart Grid Naresuan University Phitsanalok Thailand." Applied Mechanics and Materials 839 (June 2016): 170–76. http://dx.doi.org/10.4028/www.scientific.net/amm.839.170.

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The high level of renewable electricity generation is resulting in transformation of conventional grid into Smart Grid. Due to variable electricity generation the load demand has become critical and challenging issue in electricity market. In this study, the end-use load modeling based on probability distribution has been carried out in School of Renewable Energy Technology (SERT) Naresuan University Phitsanalok Thailand. For the data of electricity usage in office at SERT the most suitable model i.e., Weibull distribution have been emulated. The shape and scale parameters have been estimated along with Kolmogorov-Smirnov goodness of fit test.
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43

Jie, Ding, Wu Jingying, Zhao Xuanhua, Wang Miao, and Pang Jingyu. "Smart Home Electricity Management System Based on WiFi Technology." IOP Conference Series: Earth and Environmental Science 242 (March 30, 2019): 022054. http://dx.doi.org/10.1088/1755-1315/242/2/022054.

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44

Ahmadi, Mohammad Hossein, Mahyar Ghazvini, Milad Sadeghzadeh, Mohammad Alhuyi Nazari, Ravinder Kumar, Abbas Naeimi, and Tingzhen Ming. "Solar power technology for electricity generation: A critical review." Energy Science & Engineering 6, no. 5 (September 28, 2018): 340–61. http://dx.doi.org/10.1002/ese3.239.

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45

Salkuti, Surender Reddy. "Large scale electricity storage technology options for smart grid." International Journal of Engineering & Technology 7, no. 2 (April 28, 2018): 635. http://dx.doi.org/10.14419/ijet.v7i2.11395.

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This paper aims to establish a comparative analysis between various storage techniques available and to evaluate their current impact as well as potential to be employed more effectively in the future. This paper presents the classification of each storage technique on the basis of features, cost, location, mathematical modelling, advantages and disadvantages. This paper shows the energy storage devices behavior to effectively improve the renewable energy sources connected to the utility grid. The paper also identifies the different storage techniques that can be implemented in to a smart grid and a cost benefit analysis of the different storage techniques. The paper exhaustively reviews the functionality of a major sector of smart grid and energy storage. From this paper, it can be observed that the use of energy storage technologies will increase the supply, and balances the demand for energy.
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46

Park, D. W. "Impact of new technology on the Korean electricity industry." IEEE Power Engineering Review 21, no. 7 (July 2001): 15–18. http://dx.doi.org/10.1109/39.932930.

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47

Wilson, A. J. "The use of GPRS technology for electricity network telecontrol." Computing and Control Engineering 16, no. 2 (April 1, 2005): 40–45. http://dx.doi.org/10.1049/cce:20050207.

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48

NIKI, Yoichi, Koichi HIRATA, Takeyuki KISHI, and Masakuni KAWADA. "B213 Electricity Use Technology of Heat Recovery Stirling Engine." Proceedings of the National Symposium on Power and Energy Systems 2009.14 (2009): 275–78. http://dx.doi.org/10.1299/jsmepes.2009.14.275.

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49

Dowlatabadi, Hadi, and Michael Toman. "Technology choice in electricity generation under different market conditions." Resources and Energy 12, no. 3 (September 1990): 231–51. http://dx.doi.org/10.1016/0165-0572(90)90020-j.

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50

Yu, Yang. "Low-carbon technology calls for comprehensive electricity-market redesign." Frontiers of Engineering Management 6, no. 1 (March 2019): 128–30. http://dx.doi.org/10.1007/s42524-019-0020-9.

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