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Stability Analysis of an Islanded Microgrid Using Supercapacitor-based Virtual Synchronous Generator

机译:基于超级电容器的虚拟同步发电机的孤岛微电网的稳定性分析

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The gradually increasing number of distributed generators in microgrids cause negative affections to their dynamic stability. Moreover, dynamic performance of small synchronous generators such as diesel is usually poor due to slow response and low inertia. To overcome these drawbacks, virtual synchronous generator is considered as a promising suggestion to improve dynamic characteristics of synchronous generators in such a way of increasing microgrid inertia, especially in islanded operation. This paper analyzes the dynamic stability of microgrid including diesel generator, photovoltaic, loads and an energy storage system based on a voltage-source inverter equipped with virtual synchronous generator control strategy. Supercapacitor with fast response capability is utilized to inject demand’s power from voltage source inverter. Nonlinear mathematical models of microgrid used for this study are built in Simulink/Matlab environment. Finally, simulation results in time-domain under various operating conditions are presented to verify the effectiveness of virtual synchronous generator suggestion.
机译:微电网中逐渐增加的分布发电机数量对其动态稳定性产生负面影响。此外,由于响应缓慢和低惯性,柴油等小同步发电机的动态性能通常差。为了克服这些缺点,虚拟同步发电机被认为是提高同步发电机的动态特性以增加微电网惯性的方式,尤其是在岛立的操作中。本文分析了微电网的动态稳定性,包括基于配备虚拟同步发电机控制策略的电压源逆变器的柴油发电机,光伏,负载和储能系统。具有快速响应能力的超级电容器用于从电压源逆变器注入需求的电源。用于本研究的MicroGrid的非线性数学模型内置于Simulink / Matlab环境中。最后,提出了在各种操作条件下的时域的仿真结果,以验证虚拟同步发电机建议的有效性。

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