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Stability Analysis and Active Damping Control Method of DC Microgrid Based on Solid-State Transformer

机译:基于固态变压器的直流微电网稳定性分析和有源阻尼控制方法

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Stability issues of a DC microgrid based on solid-state transformer (SST) are addressed in this paper. Firstly, the small-signal model of each converter in DC microgrid is established, and then the impedance on the bus-side of each converter is derived through the small signal model. After analyzing the bus-side impedance of each converter, low frequency oscillation phenomenon is found when constant power loads (CPL) are increasing. Secondly, in order to make the system more stable, an active damping control method using quasi-proportional-resonance (QPR) controller is proposed. Through this control method, peak value of the SST output impedance is reduced by serial active damping. The system stability is improved without changing the low-frequency amplitude of the output impedance and affecting the system steady-state power flow. Finally, the validity of the stability analysis and the proposed active damping control method are verified by simulation results of a SST based DC microgrid in MATLAB/SIMULINK.
机译:本文解决了基于固态变压器(SST)的直流微电网的稳定性问题。首先,建立了直流微电网中每个变换器的小信号模型,然后通过小信号模型推导了每个变换器总线侧的阻抗。在分析每个转换器的总线侧阻抗之后,当恒定功率负载(CPL)增加时,发现低频振荡现象。其次,为了使系统更加稳定,提出了一种采用准比例谐振(QPR)控制器的主动阻尼控制方法。通过这种控制方法,通过串联有源阻尼可以降低SST输出阻抗的峰值。在不改变输出阻抗的低频幅度且不影响系统稳态功率流的情况下,提高了系统稳定性。最后,通过MATLAB / SIMULINK中基于SST的直流微电网的仿真结果,验证了稳定性分析和所提出的主动阻尼控制方法的有效性。

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