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State-of-charge-based droop control for stand-alone AC supply systems with distributed energy storage

机译:具有分布式能量存储的独立交流电源系统的基于充电状态的下垂控制

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摘要

The droop method is an advantageous technique for stand-alone AC supply systems, allowing for power sharing among various inverters with no need for communication cables. However, in stand-alone systems with multiple distributed energy storage units, the conventional droop methods are unable to control the storage unit state-of-charge (SOC) in order to change simultaneously. Existing techniques endeavor to solve this problem by changing the slope of the P-f curve however this solution compromises the power response performance. As an alternative, this paper proposes a new SOC-based droop control, whereby the P-f curve is shifted either upwards or downwards according to the battery SOC. The proposed technique makes it possible to select the time constant for the battery SOC convergence and, at the same time, to optimize the power response performance. The paper also shows how the SOC changes when the ratios between the battery capacity and the inverter rated power are different and how the proposed technique can limit the SOC imbalance. Simulation and experimental results corroborate the theoretical analysis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于独立的交流电源系统,下垂方法是一种有利的技术,无需通信电缆即可在各种逆变器之间共享功率。然而,在具有多个分布式能量存储单元的独立系统中,常规的下垂方法无法控制存储单元的荷电状态(SOC)以便同时更改。现有技术致力于通过改变P-f曲线的斜率来解决该问题,但是该解决方案损害了功率响应性能。作为替代方案,本文提出了一种新的基于SOC的下垂控制,其中P-f曲线根据电池SOC向上或向下移动。所提出的技术使得可以为电池SOC收敛选择时间常数,并同时优化功率响应性能。本文还展示了当电池容量和逆变器额定功率之比不同时,SOC如何变化,以及所提出的技术如何限制SOC不平衡。仿真和实验结果证实了理论分析。 (C)2015 Elsevier Ltd.保留所有权利。

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