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Large-Scale Adoption of Self-Synchronized Universal Droop Controller-Based Inverters to Enable Ancillary Services for Different Modes of Distribution System Operations

机译:基于自同步的通用下垂控制器的逆转器进行大规模采用,为不同的分配系统操作模式启用辅助服务

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This work proposes the large-scale adoption of self-synchronized universal droop controller (SUDC)-based inverters to enable ancillary services for different modes of distribution system operations. The IEEE 123 bus system was modeled on a real-time simulator to study the performance of large-scale adoption of SUDC inverters in a distribution system. The resulting data collected shows that the voltage and the frequency were regulated within ranges, such as less than 5% for voltage and less than 0.5% for frequency, under different load variations and grid operations. Also, the black start was achieved within 0.4 s without any voltage overshoot. Through the simulation and validation on a small microgrid and the IEEE 123 bus distribution system, it can be concluded that the SUDC was successfully adopted to regulate the voltage and the frequency within the given ranges, and black start achieved within 1 s without voltage overshoot for different modes of distribution system operations.
机译:这项工作提出了基于自同步通用下垂控制器(SUDC)的大规模采用,以实现用于不同的分销系统操作模式的辅助服务。 IEEE 123总线系统是在实时模拟器上建模的,以研究在分配系统中进行大规模采用SUDC逆变器的性能。收集的结果数据显示,在不同的负载变化和电网操作下,电压和频率在范围内调节电压和频率小于5%,小于0.5%。此外,黑色开始在0.4秒内实现,没有任何电压过冲。通过对小微电网和IEEE 123总线分配系统的模拟和验证,可以得出结论,SUDC成功采用以调节给定范围内的电压和频率,而黑色开始在1秒内实现,没有电压过冲不同的分销系统操作模式。

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