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Synchronverter-Enabled DC Power Sharing Approach for LVDC Microgrids

机译:LVDC微电网的启用同步器的直流功率共享方法

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In a classical ac microgrid (MG), a common frequency exists for coordinating active power sharing among droop-controlled sources. Like the frequency-droop method, a voltage-based droop approach has been employed to control the converters in low voltage direct current (LVDC) MGs. However, voltage variation due to the droop gains and line resistances causes poor power sharing and voltage regulation in dc MG, which in most cases are solved by a secondary controller by using a communication network. To avoid such an infrastructure and its accompanied complications, this paper proposes a new droop scheme to control dc sources by introducing a small ac voltage superimposed onto the output dc voltage of converters. Therefore, dc sources can be coordinated together with the frequency of the ac voltage, without any communication network like synchronous generators (SGs) in conventional power systems. Small signal stability analysis, as well as mathematical calculations, is presented to demonstrate the analogy between the proposed strategy and frequency-based droop approach of the SGs. The effectiveness of the proposed control system is evaluated by simulations and verified by experiments.
机译:在经典的交流微电网(MG)中,存在一个通用频率,用于协调下垂控制源之间的有功功率共享。与频率下降法一样,基于电压的下降法已被用于控制低压直流(LVDC)MG中的转换器。但是,由于下垂增益和线路电阻引起的电压变化会导致直流MG中的功率共享和电压调节不良,这在大多数情况下可通过次级控制器使用通信网络解决。为了避免这种基础结构及其伴随的复杂性,本文提出了一种新的下降方案,通过在转换器的输出直流电压上叠加一个小的交流电压来控制直流电源。因此,直流电源可以与交流电压的频率一起进行协调,而无需像传统电力系统中的同步发电机(SG)那样的任何通信网络。提出了小信号稳定性分析以及数学计算,以证明所提出的策略与SG的基于频率的下垂方法之间的类比。通过仿真评估提出的控制系统的有效性,并通过实验进行验证。

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