Control of single-phase islanded PV/battery minigrids based on power-line signaling

P. Quintana, J. Guerrero, T. Dragičević, J. Vasquez
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引用次数: 3

Abstract

Power regulation of all converter units in a micro-grid should not be only determined by load demand, but also by the available power of each unit, i.e. a converter fed by a battery. Energy management control is essential in order to handle the variety of prime movers which may include different types of renewable energy sources (RES) and energy storage systems (ESS). Specifically, the recharging process of secondary battery, the most prominent ESS, should be done in a specific manner to preserve its life-time, microgrid line voltage must be kept within the bounds and the energy offered by RES should be utilized as efficiently as possible. This paper proposes a coordinated control strategy based on power-line signaling (PLS), instead of common communications, for a single-phase minigrid in which each unit can operate in different operation modes taking into account the resource limitation. The whole system is explained ahead and finally, Hardware in the loop results obtained with a dSPACE are presented in order to validate the proposed control strategy.
基于电力线信号的单相孤岛光伏/电池微型电网控制
微电网中所有变流器单元的功率调节不仅应由负载需求决定,还应由每个单元(即由电池供电的变流器)的可用功率决定。能源管理控制是必要的,以处理各种原动机,其中可能包括不同类型的可再生能源(RES)和能源存储系统(ESS)。其中,最突出的ESS——二次电池的充电过程应以特定的方式进行,以保持其寿命,微电网线路电压必须保持在限定范围内,并尽可能有效地利用RES提供的能量。本文提出了一种基于电力线信令(PLS)而非普通通信的单相微型电网协调控制策略,在考虑资源限制的情况下,每个单元可以在不同的运行模式下运行。对整个系统进行了说明,最后给出了硬件在环结果,以验证所提出的控制策略。
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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