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Power control strategy design in an islanded microgrid based on virtual frequency

机译:基于虚拟频率的孤岛微电网功率控制策略设计

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摘要

Droop control strategy is widely used in autonomous control of microgrid. As resistance is the main characteristic of low-voltage microgrid, the P-V droop control method was used in VSI active power distributing to provide voltage support for grid. Also, that of current source inverter is discussed and a constant power band is introduced. On the other hand, a new control strategy “Q-δ droop control strategy based on virtual frequency” is proposed for VSI reactive power control. When applying the new reactive power control strategy, the change of virtual frequency is leading to the change of the phase angle, therefore fluctuations of real frequency caused by loads variation can be avoided, so the power allocation is more reasonable and the microgrid is more stable. Feasibility and effectiveness of the strategy is confirmed by MATLAB simulation.
机译:下垂控制策略被广泛应用于微电网的自主控制中。由于电阻是低压微电网的主要特性,因此在VSI有功功率分配中使用了P-V下降控制方法,为电网提供了电压支持。此外,讨论了电流源逆变器的功率,并介绍了恒定功率带。另一方面,针对VSI无功功率控制提出了一种新的控制策略“基于虚拟频率的Q-δ下垂控制策略”。当采用新的无功功率控制策略时,虚拟频率的变化会导致相角的变化,因此可以避免由于负载变化而导致的实际频率波动,从而使功率分配更加合理,微电网更加稳定。 。 MATLAB仿真验证了该策略的可行性和有效性。

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