首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Self-tuning virtual synchronous generator control for improving frequency stability in autonomous photovoltaic-diesel microgrids
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Self-tuning virtual synchronous generator control for improving frequency stability in autonomous photovoltaic-diesel microgrids

机译:自调整虚拟同步发电机控制,用于提高自主光伏 - 柴油机微电网的频率稳定性

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This paper investigates the use of a virtual synchronous generator (VSG) to improve frequency stability in an autonomous photovoltaic-diesel microgrid with energy storage. VSG control is designed to emulate inertial response and damping power via power injection from/to the energy storage system. The effect of a VSG with constant parameters (CP-VSG) on the system frequency is analyzed. Based on the case study, self-tuning algorithms are used to search for optimal parameters during the operation of the VSG in order to minimize the amplitude and rate of change of the frequency variations. The performances of the proposed self-tuning (ST)-VSG, the frequency droop method, and the CP-VSG are evaluated by comparing their effects on attenuating frequency variations under load variations. For both simulated and experimental cases, the ST-VSG was found to be more efficient than the other two methods in improving frequency stability.
机译:本文调查了虚拟同步发电机(VSG)的使用,提高自主光伏 - 柴油微电网中的频率稳定性,具有储能。 VSG控制旨在通过/到能量存储系统的电力注入来模拟惯性响应和阻尼功率。分析了VSG与恒定参数(CP-VSG)对系统频率的影响。基于案例研究,自调谐算法用于在VSG的操作期间搜索最佳参数,以便最小化频率变化的变化幅度和速率。通过比较其对负载变化下的衰减频率变化的效果来评估所提出的自调谐(ST)-VSG,频率下垂方法和CP-VSG的性能。对于模拟和实验情况,发现ST-VSG比改善频率稳定性的其他两种方法更有效。

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