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A Virtual Inertia Control Strategy for DC Microgrids Analogized with Virtual Synchronous Machines

机译:虚拟同步电机模拟直流微电网的虚拟惯性控制策略

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摘要

In a DC microgrid (DC-MG), the dc bus voltage is vulnerable to power fluctuation derived from the intermittent distributed energy or local loads variation. In this paper, a virtual inertia control strategy for DC-MG through bidirectional grid-connected converters (BGCs) analogized with virtual synchronous machine (VSM) is proposed to enhance the inertia of the DC-MG, and to restrain the dc bus voltage fluctuation. The small-signal model of the BGC system is established, and the small-signal transfer function between the dc bus voltage and the dc output current of the BGC is deduced. The dynamic characteristic of the dc bus voltage with power fluctuation in the DC-MG is analyzed in detail. As a result, the dc output current of the BGC is equivalent to a disturbance, which affects the dynamic response of the dc bus voltage. For this reason, a dc output current feed-forward disturbance suppressing method for the BGC is introduced to smooth the dynamic response of the dc bus voltage. By analyzing the control system stability, the appropriate virtual inertia control parameters are selected. Finally, simulations and experiments verified the validity of the proposed control strategy.
机译:在直流微电网(DC-MG)中,直流总线电压容易受到间歇性分布能量或局部负载变化引起的功率波动的影响。本文提出了一种通过虚拟同步机(VSM)模拟的双向并网转换器(BGC)对DC-MG进行虚拟惯性控制的策略,以提高DC-MG的惯性,并抑制直流母线电压波动。建立了BGC系统的小信号模型,推导了BGC直流母线电压与直流输出电流之间的小信号传递函数。详细分析了DC-MG中具有功率波动的直流总线电压的动态特性。结果,BGC的直流输出电流等效于干扰,这会影响直流总线电压的动态响应。因此,引入了用于BGC的直流输出电流前馈干扰抑制方法,以平滑直流母线电压的动态响应。通过分析控制系统的稳定性,选择适当的虚拟惯性控制参数。最后,仿真和实验验证了所提出控制策略的有效性。

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