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Virtual synchronous-machine control of voltage-source converters in a low-voltage microgrid

机译:低压微电池中电压源转换器的虚拟同步机控控器

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In order to facilitate the further integration of distributed renewable generation into existing power systems, enhanced control schemes for grid-tied power electronic converters are necessary to ensure non-synchronous power sources can provide power and support to the grid. The virtual-synchronous-machine concept proposes the use of control schemes to enable static generators to operate with the dynamics of rotating synchronous generators. In this paper, a control scheme is presented based on the principle of active-power synchronization to regulate the active power of a grid-tied voltage-source converter based on an emulation of the synchronous-machine swing equation. Design of a cascaded inner-loop voltage and resonant current control is presented to regulate the output voltage as specified via the outer-loop virtual-machine control scheme responsible for power regulation. The performance of this control scheme is investigated within the context of microgrid operation for the provision of active and reactive power to the system, and microgrid frequency support. Experimental validation is provided via the use of a 15 kVA three-phase VSC in a 90 kVA 400V microgrid.
机译:为了便于将分布式可再生生成的进一步集成到现有的电力系统中,需要增强的电网电力电子转换器的控制方案,以确保非同步电源可以为网格提供电力和支持。虚拟同步机概念建议使用控制方案来使静态发生器能够与旋转同步发电机的动态操作。在本文中,基于主电力同步的原理提出了一种控制方案,以根据同步机挥杆方程的仿真调节网格栓电压源转换器的电力功率。提出了级联的内环电压和谐振电流控制的设计,以调节通过负责功率调节的外环虚拟机控制方案规定的输出电压。在微电网运行的背景下研究了该控制方案的性能,以便为系统提供有源和无功功率和微电网频率支持。通过在90 kVA 400V微电网中使用15 kVA三相VSC来提供实验验证。

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