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A New Method to Improve the Transient Performance of Virtual Synchronous Generator with the Extended Virtual Impedance

机译:利用扩展的虚拟阻抗改善虚拟同步发电机瞬态性能的新方法

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Although the virtual rotor inertia and damping factor in the virtual synchronous generator (VSG) control can reduce the rate of change of frequency (ROCOF) in the inverter stand-alone mode and contributes to overall frequency stability in the grid-connected mode, they deteriorate transient performance in the grid-connected mode with power/current overshoots and oscillations. In this paper, an extended virtual impedance method is introduced for the first time to improve the transient performance of the VSG active power loop. Compared to the existing solutions, the proposed method achieves more exceptional transient performance in the grid-connected mode with the simpler parameter tuning process. Meanwhile, it also keeps the effective rotor inertia unchanged and maintains the same frequency stability in the grid-connected or stand-alone modes. Finally, the effectiveness of the proposed method is validated and compared with existing method by experimental results.
机译:尽管虚拟同步发电机(VSG)控制中的虚拟转子惯性和阻尼因数可以降低逆变器独立模式下的频率变化率(ROCOF),并有助于并网模式下的整体频率稳定性,但它们会恶化并网模式下的瞬态性能,其中包括功率/电流过冲和振荡。本文首次引入扩展的虚拟阻抗方法,以改善VSG有功功率环路的瞬态性能。与现有解决方案相比,该方法以更简单的参数调整过程在并网模式下实现了更出色的瞬态性能。同时,它还保持有效转子惯量不变,并在并网或独立模式下保持相同的频率稳定性。最后,通过实验结果验证了该方法的有效性,并与现有方法进行了比较。

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