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Enhanced Virtual Synchronous Generator Control for Parallel Inverters in Microgrids

机译:用于微电网并联逆变器的增强型虚拟同步发电机控制

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摘要

Virtual synchronous generator (VSG) control is a promising communication-less control method in a microgrid for its inertia support feature. However, active power oscillation and improper transient active power sharing are observed when basic VSG control is applied. Moreover, the problem of reactive power sharing error, inherited from conventional droop control, should also be addressed to obtain desirable stable state performance. In this paper, an enhanced VSG control is proposed, with which oscillation damping and proper transient active power sharing are achieved by adjusting the virtual stator reactance based on state-space analyses. Furthermore, communication-less accurate reactive power sharing is achieved based on inversed voltage droop control feature (V–Q droop control) and common ac bus voltage estimation. Simulation and experimental results verify the improvement introduced by the proposed enhanced VSG control strategy.
机译:虚拟同步发电机(VSG)控制是一种有希望的微电网无通信控制方法,因为它具有惯性支持功能。但是,当应用基本VSG控制时,会观察到有功功率振荡和不适当的瞬态有功功率共享。而且,还应该解决从常规的下垂控制中继承的无功功率分配误差的问题,以获得期望的稳定状态性能。本文提出了一种改进的VSG控制,通过基于状态空间分析调整虚拟定子电抗来实现振荡阻尼和适当的瞬态有功功率共享。此外,基于反向电压下降控制功能(V–Q下降控制)和通用交流母线电压估算,可实现无通信的准确无功功率共享。仿真和实验结果验证了所提出的增强型VSG控制策略带来的改进。

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