Lifetime-Oriented Droop Control Strategy for AC Islanded Microgrids

Yanbo Wang, Dong Liu, F. Deng, Dao Zhou, Zhe Chen
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引用次数: 11

Abstract

This paper presents a lifetime-oriented droop control approach for AC islanded microgrids, which is able to perform equal thermal stress distribution among paralleled inverters. An electro-thermal model and temperature estimation model is first established to observe the thermal stress of inverters, and then the temperature-power droop characteristic are built according to the electro-thermal model. Finally, the lifetime-oriented droop controller is proposed. Simulation results show that the proposed droop control strategy is able to perform automatically thermal stress sharing by regulating output powers of paralleled inverters, which thus mitigates the effect of unequal thermal-mechanical stresses on long term lifetime of paralleled inverters. The proposed droop control approach preserves the advantages of conventional droop control methods, and also implements the active thermal control for islanded microgrids. It thus increases the average lifetime and enhances long-time reliability of microgrids.
交流孤岛微电网面向寿命的下垂控制策略
本文提出了一种面向寿命的交流孤岛微电网下垂控制方法,该方法能够实现并联逆变器之间的均匀热应力分布。首先建立了电热模型和温度估计模型,观察逆变器的热应力,然后根据电热模型建立了温度-功率下降特性。最后,提出了面向寿命的下垂控制器。仿真结果表明,所提出的下垂控制策略能够通过调节并联逆变器的输出功率实现热应力自动分担,从而减轻了不均匀热机械应力对并联逆变器长期使用寿命的影响。提出的下垂控制方法既保留了传统下垂控制方法的优点,又实现了孤岛微电网的主动热控制。这样就增加了微电网的平均寿命,提高了微电网的长期可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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