Compensation of Effect of Line Parameters on Reactive Power Sharing in AC Microgrid

S. Islam, Souradip De, A. Iqbal, F. I. Bakhsh, Laith Kanaan
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Abstract

The effects of mismatched interconnecting cable impedances, unequal local loads connected near to sources and difference in nominal voltages of sources lead to inaccurate reactive power sharing in ac microgrid. To ensure proportional reactive power sharing among sources, the Ideal Reactive Power Sharing (IRPS) controller is proposed in this paper. The controller shifts E-Q characteristics parallel to the voltage axis, in such a way that each converter supplies reactive power equal to its ideal value which is calculated using communication network. Ideal value of reactive power supplied by each source is the power when the equivalent output impedance of all sources as seen by loads are identical. The suggested controller shifts the E-Q droop characteristics of sources in such a way that each source supplies power in proportion to its rated capacity. The key advantages offered by proposed controller are accurate reactive power sharing and good voltage regulation. The controller provides stabilized operation even in case of error in communicated values. To validate the efficacy of proposed controller, detailed simulation studies are carried out in Real Time Digital Simulator (RTDS) platform.
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交流微电网线路参数对无功分担影响的补偿
在交流微电网中,由于电缆阻抗不匹配、近源连接的局部负载不均匀以及源标称电压差异等因素的影响,导致无功功率分配不准确。为了保证电源间无功功率的比例共享,本文提出了理想无功共享(IRPS)控制器。控制器将E-Q特性与电压轴平行移动,这样每个变流器提供的无功功率等于其使用通信网络计算的理想值。每个电源提供的无功功率的理想值是负载所看到的所有电源的等效输出阻抗相同时的功率。建议的控制器改变电源的E-Q下垂特性,使每个电源按其额定容量的比例供电。该控制器的主要优点是准确的无功分担和良好的电压调节。即使在通信值出错的情况下,控制器也能稳定运行。为了验证所提出的控制器的有效性,在实时数字模拟器(RTDS)平台上进行了详细的仿真研究。
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