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A Study on Optimal Sizing and Control for Hybrid Energy Storage System with SMES and Battery *

机译:具有SMES和电池的混合储能系统的最佳尺寸和控制研究 *

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This paper proposes the new hybrid energy storage system with the superconducting magnetic energy storage (SMES) and a lead-acid battery. The SMES is the most effective energy storage device due to its high power density, fast response, and high efficiency. However, its energy density is not higher than that of other batteries. Therefore, the proposed hybrid energy storage system combines these two energy storage devices. The optimal sizes of the SMES and battery are determined by considering the system cost, output power reference, and their proper efficiencies. Also, the new control algorithm is applied to share the charging and discharging powers effectively and therefore to manage the state-of-charge (SOC) in each energy storage device. Then, the performance of proposed hybrid energy storage system is evaluated on a residential photovoltaic (PV) system with respect to energy capacity, peak load leveling, and system efficiency.
机译:本文提出了一种具有超导磁储能(SMES)和铅酸电池的新型混合储能系统。由于其高功率密度,快速响应和高效率,SMES是最有效的能量存储设备。但是,其能量密度不高于其他电池。因此,提出的混合式能量存储系统将这两个能量存储设备结合在一起。 SMES和电池的最佳尺寸是通过考虑系统成本,输出参考功率及其适当的效率来确定的。同样,新的控制算法被应用以有效地共享充电和放电功率,并因此管理每个能量存储设备中的充电状态(SOC)。然后,在住宅光伏(PV)系统上针对能量容量,峰值负载水平和系统效率评估了拟议的混合储能系统的性能。

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