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Design and experimental analysis of an advanced static VAR compensator with computer aided control

机译:具有计算机辅助控制的先进静态无功补偿器的设计和实验分析

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This study presents integration of a real-time energy monitoring and control system with an advanced reactive power compensation unit based on fixed capacitor-thyristor controlled reactor (FC-TCR). Firing angles of the thyristors located in the FC-TCR are controlled by a microcontroller in order to keep the power factor within the limits. Electrical parameters of the system are measured by specially designed circuits and simultaneously transferred to the computer via a data acquisition board. Thus, real time data of the system can be observed through a visual user interface. The data obtained is not only analyzed for control process, but also regularly saved into a database. The system has been tested in laboratory conditions under different load characteristics and experimental results verified that the system successfully and accurately achieves compensation process against the all operational conditions. (C) 2016 ISA. Published by Elsevier Ltd. All rights reserved.
机译:这项研究提出了基于固定电容器-晶闸管控制电抗器(FC-TCR)的实时能量监控系统与先进的无功补偿单元的集成。 FC-TCR中晶闸管的触发角由微控制器控制,以将功率因数保持在限制范围内。系统的电气参数由专门设计的电路测量,并同时通过数据采集板传输到计算机。因此,可以通过视觉用户界面观察系统的实时数据。所获得的数据不仅要进行控制过程分析,还要定期保存到数据库中。该系统已在不同负载特性的实验室条件下进行了测试,实验结果证明,该系统成功且准确地针对所有工作条件实现了补偿过程。 (C)2016 ISA。由Elsevier Ltd.出版。保留所有权利。

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