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Comprehensive perspective on virtual inductor for improved power decoupling of virtual synchronous generator control

机译:虚拟电感综合透视,用于改进虚拟同步发电机控制的功率去耦

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摘要

The virtual inductor is widely used in the virtual synchronous generator (VSG) control to attain predominantly inductive impedance and reduce the power coupling. In fact, 'predominantly inductive impedance' is a misleading indicator of decoupling performance. In this study, a comprehensive perspective on virtual inductor is given for the improved decoupling performance of VSG control. A small-signal model is proposed to make a thorough inquiry into the effects of virtual inductor on power decoupling. With the proposed model, the optimal value of virtual inductor is obtained, the physical interpretation of the optimal decoupling is revealed, and the necessity of using virtual inductor is discussed. First, with optimisation of the value of virtual inductor, some negative effects of excessively large virtual inductor on power decoupling can be avoided. The excessively large value of virtual inductor will deteriorate the performance of power decoupling, aggravate the reactive power shortage of the grid and increase the capacity demand of voltage-source converter. Additionally, when the grid inductance is larger than the threshold value, virtual inductor is not needed. After that, the external physical characteristics of VSG when the grid inductance is under that critical condition are analysed. Finally, the theoretical analysis is validated by simulation and experiments.
机译:虚拟电感广泛用于虚拟同步发电机(VSG)控制,以实现主要感应阻抗并减小电力耦合。事实上,'主要是归纳阻抗'是解耦性能的误导性指标。在这项研究中,给出了虚拟电感器的全面透视,用于改进VSG控制的解耦性能。提出了一种小信号模型,以对虚拟电感器对功率去耦的影响进行彻底调查。利用所提出的模型,获得了虚拟电感器的最佳值,讨论了最佳解耦的物理解释,并且讨论了使用虚拟电感器的必要性。首先,通过优化虚拟电感器的值,可以避免在功率去耦上过大的虚拟电感的一些负效应。过高的虚拟电感值将使功率解耦的性能恶化,加剧了电网的无功功率短缺并提高了电压源转换器的容量需求。另外,当网格电感大于阈值时,不需要虚拟电感。之后,分析了当网格电感处于该临界条件下时VSG的外部物理特性。最后,通过模拟和实验验证了理论分析。

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