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D-Q Small-Signal Impedance Modeling of Load Virtual Synchronous Machine and Stability Analysis in Weak Grid

机译:负载虚拟同步机的D-Q小信号阻抗建模及弱电网稳定性分析

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With power electronic loads penetrating into grid increasingly, the power grid is progressively developing into low inertia and less damping network, which seriously leads to the instability problems. To address the issues, the load virtual synchronous machine (LVSM) technology is introduced for the ability to support inertia and damping. And the control scheme is described in details, with not only power loops but inner ac voltage and current loops. Then taking the dc-side voltage into account, the d-q small-signal output impedance model of LVSM is derived, and the impedance of the LVSM behaves inductive, being consistent with the grid impedance characteristics in the middle and high frequency areas. Based on GNC, the stability between the LVSM and the weak grid is analyzed for the first time. And the stability analysis result shows that LVSM remains stable in weak grid. Finally, the simulation results are shown to verify the d-q impedance model and the stability analysis.
机译:随着电力电子负载越来越普遍存在网格中,电网逐渐发展成低惯性和更少的阻尼网络,这严重导致不稳定问题。为了解决问题,引入负载虚拟同步机(LVSM)技术以支持惯性和阻尼。详细描述了控制方案,不仅具有电源循环而是内部交流电压和电流环。然后考虑到DC侧电压,导出LVSM的D-Q小信号输出阻抗模型,并且LVSM的阻抗行为归纳,与中高频区域中的网格阻抗特性一致。基于GNC,第一次分析了LVSM和弱网格之间的稳定性。并且稳定性分析结果表明,LVSM在弱网格中保持稳定。最后,示出了仿真结果来验证D-Q阻抗模型和稳定性分析。

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