首页> 外文期刊>Embedded Systems Letters, IEEE >Battery Current’s Fluctuations Removal in Hybrid Energy Storage System Based on Optimized Control of Supercapacitor Voltage
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Battery Current’s Fluctuations Removal in Hybrid Energy Storage System Based on Optimized Control of Supercapacitor Voltage

机译:基于超级电容器电压优化控制的混合动力储能系统中电池电流的波动消除

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摘要

In a hybrid energy storage system, batteries play an important role to store and release energy when it is required. Because batteries are very expensive, increasing their life cycles has a paramount importance in cost justification of the energy storage systems. However, current fluctuations reduce normal life cycles of batteries. As a remedy, supercapacitors are adopted to reduce the current fluctuations to smooth battery's current. Recently, researchers have attempted to minimize the batteries' current fluctuations by controlling the supercapacitor's current and/or voltage, with a limited reported success. This letter proposes an enhanced approach to reduce batteries' current fluctuations and to minimize energy lost for residential applications, by controlling the supercapacitor's voltage using two optimization stages: 1) predictive reference voltage determination and 2) online voltage adjustment. The proposed method has been evaluated using simulated and real data, and results validate the superiority of the proposed method compared to the state-of-the-art.
机译:在混合储能系统中,电池在需要时可以存储和释放能量,具有重要作用。由于电池非常昂贵,因此延长电池的使用寿命对于储能系统的成本合理性至关重要。但是,电流波动会缩短电池的正常使用寿命。补救措施是采用超级电容器来减小电流波动,以使电池电流趋于平滑。最近,研究人员试图通过控制超级电容器的电流和/或电压来最大程度地减小电池的电流波动,但成功的报道有限。这封信提出了一种增强的方法,可通过使用两个优化阶段控制超级电容器的电压来减少电池电流波动并最大程度减少住宅应用中的能量损失:1)预测参考电压确定和2)在线电压调整。所提出的方法已使用模拟和真实数据进行了评估,结果证明了所提出方法与最新技术相比的优越性。

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