Extending the Energy Storage Lifetime: A Hybrid Power-Sharing Method

Budyanto Jo Salli, Hafiz Ahmed
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Abstract

The increased adoption of renewable energy sources is reducing the overall inertial response capability of the modern electric power grid, which translates into larger frequency variation in both transient and pseudo-steady-state operation. Energy storage system (ESS) has the potential to play a significant role in regulating the frequency of more renewable electric power grid. This service is commonly known as frequency response or enhanced frequency response (EFR). Lithium-ion (Li-ion) battery is a popular choice as an ESS to provide EFR. However, EFR is very dynamic and the battery may have to provide high and fast response. This may accelerate the aging process of the battery. To overcome this issue, hybrid ESS (HESS) comprised of Li-ion battery and supercapacitor (SC) have been proposed in the literature. HESS typically works through power-sharing method (PSM). This work deals with the design of power sharing controllers able to enable the provision of EFR services from HESS. Keeping the battery lifetime in mind, proposed controllers employ a hybrid PSM by combining both proportional integral (PI) control and Fuzzy logic to maintain the battery state of charge (SOC) as close to the reference as possible while providing EFR. Results show that the lifetime of the Li-ion battery can be significantly extended by using the proposed controllers. However, this depends on the capacity of the SC that is used to support the Li-ion battery. Numerous simulation results are provided to demonstrate the suitability of the proposed controllers.
延长储能寿命:一种混合电力共享方法
可再生能源使用的增加降低了现代电网的总体惯性响应能力,这意味着在瞬态和准稳态运行中频率变化更大。储能系统(ESS)在调节可再生能源电网的频率方面具有重要的潜力。这种服务通常被称为频率响应或增强频率响应(EFR)。锂离子(Li-ion)电池是提供EFR的ESS的热门选择。然而,EFR是非常动态的,电池可能必须提供高和快速的响应。这可能会加速电池的老化过程。为了克服这一问题,文献中提出了由锂离子电池和超级电容器组成的混合ESS (HESS)。HESS通常通过功率共享方法(PSM)工作。这项工作涉及功率共享控制器的设计,能够使HESS提供EFR服务。考虑到电池寿命,建议的控制器采用混合PSM,结合比例积分(PI)控制和模糊逻辑,以保持电池充电状态(SOC)尽可能接近参考,同时提供EFR。结果表明,该控制器可显著延长锂离子电池的使用寿命。然而,这取决于用于支持锂离子电池的SC的容量。大量的仿真结果证明了所提控制器的适用性。
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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