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Control Strategy Design and Parameter Selection for Suppressing Circulating Current Among SSTs in Parallel

机译:抑制SST间并联环流的控制策略设计和参数选择

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摘要

The circulating current among the paralleled solid state transformers (SSTs) originated by the line parameter and mismatched output impedance comes into appearance in the islanded operation of the novel microgrid, the future renewable electric energy delivery and management system. In this regard, the aggregated control strategy of both virtual inductance and external inductance is proposed in this paper to suppress circulating current. The “matching concept” regarding the parameter selection of virtual and external inductance is proposed to ensure the reliable operation of the system through constructing the complete small-signal model of SST. On the basis of aggregated control strategy and small-signal model, the adaptive virtual impedance control strategy is finally proposed by introducing the feedback of circulating current into the conventional virtual impedance control. The virtual impedance is adjusted adaptively according to the judgment algorithm to regulate the equivalent output impedance of SST. With this modification, the adjustment ability of virtual impedance control against sudden disturbance is improved and the circulating current is further reduced. The simulation results with nonlinear loading are presented to prove that the proposed control strategy, and the parameters determined by the matching concept substantially reduce the circulating current among SSTs and improve the accuracy of load sharing among SSTs.
机译:由线路参数和不匹配的输出阻抗引起的并联式固态变压器(SST)之间的循环电流出现在新型微电网的孤岛式运行中,这是未来的可再生电能输送和管理系统。为此,本文提出了虚拟电感和外部电感的综合控制策略,以抑制循环电流。提出了关于虚拟和外部电感参数选择的“匹配概念”,以通过构建完整的SST小信号模型来确保系统的可靠运行。在聚合控制策略和小信号模型的基础上,通过将循环电流的反馈引入常规虚拟阻抗控制中,提出了自适应虚拟阻抗控制策略。根据判断算法自适应地调整虚拟阻抗,以调节SST的等效输出阻抗。通过该修改,提高了针对突然干扰的虚拟阻抗控制的调节能力,并且进一步减小了循环电流。给出了带有非线性负载的仿真结果,证明了所提出的控制策略和匹配概念所确定的参数大大减少了SST之间的环流,并提高了SST之间负载共享的准确性。

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