The Experts below are selected from a list of 489 Experts worldwide ranked by ideXlab platform
Chen Huai-zhong - One of the best experts on this subject based on the ideXlab platform.
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Application of CAN Fieldbus in Low Voltage Reactive-Power Dynamic Compensation Device
Mechanical & Electrical Engineering Technology, 2006Co-Authors: Chen Huai-zhongAbstract:Through analysis of the actuality and existent questions about low voltage reactive- power compensation controller used traditionally, this paper introduces the working theory of the system, Communication Configuration technology of CAN fieldbus and the implement of software and hardware.
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Realization and Application of King View 6.5 in Substation Voltage Reactive-power Compensation Device
Computer Knowledge and Technology, 2006Co-Authors: Chen Huai-zhongAbstract:In this paper, the reactive-power dynamic compensation device is controlled by using King View SCADA and PLC according to the demand of monitor system. This paper introduced the working theory of the system, Communication Configuration technology of King View 6.5 and the implement of software and hardware.
Zoran Balkić - One of the best experts on this subject based on the ideXlab platform.
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Conceptual Design of IoT-Based AMR Systems Based on IEC 61850 Microgrid Communication Configuration Using Open-Source Hardware/Software IED
Energies, 2019Co-Authors: Dragan Mlakic, Hamid Reza Baghaee, Srete Nikolovski, Marko Vukobratović, Zoran BalkićAbstract:This paper presents an intelligent electronic device (IED) utilized for automatic meter readings (AMR) scheme using “Open-Source” software. This IED is utilized to measure a low-voltage intelligent electronic device) system with a boundless number of sensors, and it is accessible on the Internet of Things (IoT). The utilized equipment for this task is Arduino UNO R3 motherboard and fringe sensors, which are used for measurement of the referenced information. The Arduino motherboard is used not only for sole tranquility of equipment but also for serving as wireless fidelity (Wi-Fi) switch for the sensors. The personal computer is utilized to gather information and perform client-side calculations. The server works based on an open-source program written in Java programming language. The underlying objective of the proposed scheme is to make the meter based on the “Do It Yourself” methodology which requires considerably fewer funds. Also, it is conceivable by keeping easy to understand interface, information legitimacy, precision of measured information and convenience for the conclusive client. The information is measured in just about 1 ms which is superb for custom-designed IED. Furthermore, the measured qualities are calculated based on their RMS values to be used for analyzing and further presentation of data.
Dragan Mlakic - One of the best experts on this subject based on the ideXlab platform.
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Conceptual Design of IoT-Based AMR Systems Based on IEC 61850 Microgrid Communication Configuration Using Open-Source Hardware/Software IED
Energies, 2019Co-Authors: Dragan Mlakic, Hamid Reza Baghaee, Srete Nikolovski, Marko Vukobratović, Zoran BalkićAbstract:This paper presents an intelligent electronic device (IED) utilized for automatic meter readings (AMR) scheme using “Open-Source” software. This IED is utilized to measure a low-voltage intelligent electronic device) system with a boundless number of sensors, and it is accessible on the Internet of Things (IoT). The utilized equipment for this task is Arduino UNO R3 motherboard and fringe sensors, which are used for measurement of the referenced information. The Arduino motherboard is used not only for sole tranquility of equipment but also for serving as wireless fidelity (Wi-Fi) switch for the sensors. The personal computer is utilized to gather information and perform client-side calculations. The server works based on an open-source program written in Java programming language. The underlying objective of the proposed scheme is to make the meter based on the “Do It Yourself” methodology which requires considerably fewer funds. Also, it is conceivable by keeping easy to understand interface, information legitimacy, precision of measured information and convenience for the conclusive client. The information is measured in just about 1 ms which is superb for custom-designed IED. Furthermore, the measured qualities are calculated based on their RMS values to be used for analyzing and further presentation of data.
Chen Huai - One of the best experts on this subject based on the ideXlab platform.
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Applicatoin of, CAN Fieldbus in Low Voltage Reactive-power Dynamic Compensation
Electric Power Technology, 2006Co-Authors: Chen HuaiAbstract:Through analysis of the actuality and existent questions about low voltage reactive-power compensati- on controller used traditionally,This paper introduced the working theory of the system,Communication Configuration technology of CAN fieldbus and the implement of software and hardware.
Marko Vukobratović - One of the best experts on this subject based on the ideXlab platform.
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Conceptual Design of IoT-Based AMR Systems Based on IEC 61850 Microgrid Communication Configuration Using Open-Source Hardware/Software IED
Energies, 2019Co-Authors: Dragan Mlakic, Hamid Reza Baghaee, Srete Nikolovski, Marko Vukobratović, Zoran BalkićAbstract:This paper presents an intelligent electronic device (IED) utilized for automatic meter readings (AMR) scheme using “Open-Source” software. This IED is utilized to measure a low-voltage intelligent electronic device) system with a boundless number of sensors, and it is accessible on the Internet of Things (IoT). The utilized equipment for this task is Arduino UNO R3 motherboard and fringe sensors, which are used for measurement of the referenced information. The Arduino motherboard is used not only for sole tranquility of equipment but also for serving as wireless fidelity (Wi-Fi) switch for the sensors. The personal computer is utilized to gather information and perform client-side calculations. The server works based on an open-source program written in Java programming language. The underlying objective of the proposed scheme is to make the meter based on the “Do It Yourself” methodology which requires considerably fewer funds. Also, it is conceivable by keeping easy to understand interface, information legitimacy, precision of measured information and convenience for the conclusive client. The information is measured in just about 1 ms which is superb for custom-designed IED. Furthermore, the measured qualities are calculated based on their RMS values to be used for analyzing and further presentation of data.