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Novel configuration and controlling method on islanded microgrid in order to share active and reactive loads on energy supply units without voltage and frequency drop

机译:孤岛微电网上的新型配置和控制方法,以在能量供应单元上共享有功和无功负载而不会出现电压和频率下降

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Configuring and novel controlling method on islanded micro grid in order to share active and reactive load on energy supply units are represented in this article. In a micro grid which is supplying its network load in islanded mode, stable operation of micro grid and sharing load on energy supply units are necessary. Therefore Droop control method is using as an effective method for load sharing on energy supply units. This method, in addition to hardening access to stable network during the load variations, causes voltage and frequency droop within the network. In this article the problem of voltage and frequency droop has been solved by presenting a new structure in micro grid configuration which consists distributed generation and power-electronic converters. As a result, access to a stable network during load variations will be achievable. Furthermore, active and reactive load sharing on energy supply units will be done. Simulation results of a micro grid with configuration and suggested controlling structure in Matlab/Simulink are the validation of proposed method in this matter.
机译:本文介绍了在孤岛微电网上配置和新颖的控制方法,以分担能源供应单元上的有功和无功负载。在以孤岛模式提供其网络负载的微电网中,微电网的稳定运行以及在能量供应单元上分担负载是必要的。因此,下垂控制方法被用作能量供应单元上的负载共享的有效方法。这种方法除了在负载变化期间加强对稳定网络的访问之外,还会导致网络内的电压和频率下降。在本文中,通过提出一种由分布式发电和电力电子转换器组成的微电网配置的新结构,解决了电压和频率下降的问题。结果,将能够在负载变化期间访问稳定的网络。此外,将完成能量供应单元上的有功和无功负载分配。在Matlab / Simulink中具有配置和建议的控制结构的微电网仿真结果证明了该方法的有效性。

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