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Dynamic performance analysis of paralleled virtual synchronous generators under grid-connected and islanded mode

机译:并网孤岛模式下并联虚拟同步发电机的动态性能分析

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With increasing penetration of the intermittent and fluctuating renewable energy resources, control strategy of inverters in microgrid is important. Therefore, due to lack of inertia in power electronic converters, virtual synchronous generator control is proposed to introduce backup inertia and improve dynamic performance of frequency. Researches recently have proposed different methods on control of single virtual synchronous generator and the performance is investigated. However, characteristics of paralleled virtual synchronous generators in microgrids are not sufficiently studied. In this paper, a simplified transfer function model of paralleled virtual synchronous generators is constructed and verified in simulation, which is used to study microgrids with multiple virtual synchronous generators in both grid-connected mode and islanded mode. Frequency, phase and power response of ac bus and virtual synchronous generators are investigated. Influences of inertia and grid-side inductance are analyzed in detail, which shows dynamic characteristics of paralleled virtual synchronous generators and provides some practical advices on VSG design in microgrids.
机译:随着间歇性能源的不断渗透和波动,微电网中逆变器的控制策略显得尤为重要。因此,由于电力电子变换器缺乏惯性,提出了虚拟同步发电机控制,以引入备用惯性并改善频率的动态性能。最近的研究提出了对单个虚拟同步发电机的控制的不同方法,并研究了其性能。但是,微电网中并联虚拟同步发电机的特性尚未得到充分研究。本文构建了并行虚拟同步发电机的简化传递函数模型,并在仿真中进行了验证,该模型用于研究并网模式和孤岛模式下具有多个虚拟同步发电机的微电网。研究了交流总线和虚拟同步发电机的频率,相位和功率响应。详细分析了惯性和电网侧电感的影响,显示了并联虚拟同步发电机的动态特性,并为微电网中的VSG设计提供了一些实用建议。

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