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A Gain-Scheduled Decoupling Control Strategy for Enhanced Transient Performance and Stability of an Islanded Active Distribution Network

机译:增益调度的解耦控制策略,可提高孤岛有源配电网的暂态性能和稳定性

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This paper proposes a control strategy to enhance transient performance and stability of a droop-controlled active distribution network. The dependency of dynamics on the droop gains, steady-state power flow, and network/load is studied in a droop-controlled distributed energy resource (DER) unit. These dependencies result in poor transient performance or even instability of the network in the event of a disturbance in the system. To eliminate these dependencies, a gain-scheduled decoupling control strategy is proposed which reshapes the characteristics of conventional droop by means of supplementary control signals; these control signals are based on local power measurements and supplement the $d$- and $q$-axis voltage reference of each DER unit. The impact of the proposed control on the DER and network dynamics is studied by calculating the eigenvalues of a test active distribution system assuming proposed control. The proposed control is shown to stabilize the system for a range of operating conditions. The effectiveness of the proposed control is further demonstrated through simulations carried out in the PSCAD/EMTDC software environment, on the active distribution system under study.
机译:本文提出了一种控制策略,以提高下垂控制的有源配电网的暂态性能和稳定性。在下垂控制的分布式能源(DER)单元中研究了动力学对下垂增益,稳态潮流和网络/负载的依赖性。这些依赖性导致在系统受到干扰的情况下差的瞬态性能甚至网络的不稳定。为了消除这些依赖性,提出了一种增益调度的去耦控制策略,该策略通过补充控制信号重塑了常规下垂的特性。这些控制信号基于本地功率测量结果,并补充每个DER单元的$ d $和$ q $轴电压参考。通过计算假设采用提议控制的测试有源分配系统的特征值,研究提议控制对DER和网络动力学的影响。所示的拟议控制措施可在一定范围的运行条件下稳定系统。通过在正在研究的有源配电系统上的PSCAD / EMTDC软件环境中进行的仿真,进一步证明了所提出控制的有效性。

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