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Analysis of high voltage shunt capacitor bank on reduced capacity: The case of RRVPNL power grid

机译:降低容量的高压并联电容器组的分析:以RRVPNL电网为例

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Optimal reactive power compensation has become an important issue to Indian power system due to initiatives taken towards national grid formation in the country. Presently new grid and southern grid are running in asynchronous mode. Central Transmission Utility (CTU) has forced the regional or state grids to maintain their reactive power compensation as per the requirement of grid as specified in Indian Electricity Grid Code (IEGC). In Indian power system most of the reactive power is injected at 33 KV and 11 KV levels with the help of high voltage (HV) shunt capacitor banks. This paper has proposed different methods to use the existing HV shunt capacitor banks installed at grid sub-stations (GSS) on 33 KV and 11 KV buses of Rajasthan Rajya Vidghyut Prasaran Nigam Ltd. (RRVPNL) power grid, a transmission network of Rajasthan state of India, on reduced capacity when there are no spare capacitor units available on GSS located in remote areas. The proposed different configurations of capacitor bank on reduced capacity are simulated in MATLAB/Simulink environment and also practically tested on the live system in the field.
机译:由于在印度建立国家电网的举措,最佳无功补偿已成为印度电力系统的重要问题。目前,新电网和南方电网正在异步模式下运行。中央输电公司(CTU)已根据印度电网法规(IEGC)的要求,强制区域或州电网维持其无功功率补偿。在印度电力系统中,借助于高压(HV)并联电容器组,大多数无功功率以33 KV和11 KV的水平注入。本文提出了不同的方法来使用安装在拉贾斯坦邦拉贾斯坦邦传输网络33 kV和11 KV母线的电网变电站(GSS)上的现有HV分流电容器组(RRVPNL)。在印度偏远地区,当GSS上没有可用的备用电容器时,容量会降低。在MATLAB / Simulink环境中模拟了所建议的减小容量的电容器组的不同配置,并在现场的实际系统上进行了实际测试。

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