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A power sharing scheme for voltage unbalance and harmonics compensation in an islanded microgrid

机译:孤岛微电网中用于电压不平衡和谐波补偿的功率共享方案

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In this paper, a hierarchical control structure with voltage unbalanced compensation scheme in ac islanded microgrid is proposed to improve Critical Load Bus (CLB) voltage quality and address inaccurate power sharing problems. The hierarchical scheme includes primary and secondary control levels. The primary control mainly contains the power droop controllers, voltage and current controllers, selective virtual impedance loop, and voltage unbalanced compensation. The virtual impedance loop includes virtual positive- and negative-sequence impedance loops at fundamental frequency and virtual variable harmonic impedance loop at harmonic frequencies. The secondary control is designed to restore frequency and amplitude of the CLB voltage. In order to compensate the CLB voltage, an unbalanced compensation is proposed to change the voltage reference of the distributed generation (DG) units. This strategy also employs the low bandwidth communication (LBC) technique to send the proper signals of the secondary control from the microgrid control center (MGCC) to the primary control. To evaluate the performance of the proposed control strategy, simulations are conducted on two islanded microgrid prototype. The results demonstrate the effectiveness of the proposed control structure in the unbalance and harmonic compensation of the CLB voltage and proper power sharing of reactive, unbalanced and harmonic powers among the DG units. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种在交流孤岛微电网中采用电压不平衡补偿方案的分级控制结构,以提高临界负载总线(CLB)的电压质量并解决功率分配不准确的问题。分层方案包括主要和辅助控制级别。主要控制主要包括功率下降控制器,电压和电流控制器,选择性虚拟阻抗环路和电压不平衡补偿。虚拟阻抗环路包括在基频处的虚拟正序和负序阻抗环路和在谐波频率处的虚拟可变谐波阻抗环路。次级控制旨在恢复CLB电压的频率和幅度。为了补偿CLB电压,提出了一种不平衡补偿来更改分布式发电(DG)单元的参考电压。该策略还采用低带宽通信(LBC)技术将次级控制的适当信号从微电网控制中心(MGCC)发送到初级控制。为了评估所提出的控制策略的性能,对两个孤岛微电网原型进行了仿真。结果证明了所提出的控制结构在CLB电压的不平衡和谐波补偿以及DG单元之间适当分配无功,不平衡和谐波功率方面的有效性。 (C)2017 Elsevier B.V.保留所有权利。

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