A multi-objective optimal control scheme of the hybrid energy storage system for accurate response in the demand side

W. Chai, X. Cai, Zheng Li
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Abstract

The idea of applying energy storage system (ESS) into the demand side for accurate response has attracted lots of attention. Hybrid energy storage system (HESS) is the combination of various ESS types, which can exploit the strength of each ESS type and enjoy good comprehensive performance. In order to: 1) increase the accuracy of the demand side response, 2) extend the HESS lifetime, 3) reduce the energy loss of HESS and 4) lower the maintenance cost, a HESS synthetical model is developed including the lifetime model, the energy efficiency model, the economic cost model, the demand side response accuracy and the constraints. Comparison of different single types of ESS for demand side response is studied, and a multi-objective optimal control scheme of the HESS is proposed based on the particle swarm optimization (PSO). Finally, the effectiveness of the proposed control strategy is verified by actual data from a regional power grid in eastern China.
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基于需求侧精确响应的混合储能系统多目标优化控制方案
将储能系统(ESS)应用到需求侧进行准确响应的想法引起了人们的广泛关注。混合储能系统(HESS)是多种ESS类型的组合,可以发挥每种ESS类型的优势,具有良好的综合性能。为了:1)提高需求侧响应精度,2)延长HESS寿命,3)减少HESS能量损失,4)降低维护成本,建立了包括寿命模型、能效模型、经济成本模型、需求侧响应精度和约束条件在内的HESS综合模型。研究了不同类型电力系统需求侧响应的比较,提出了一种基于粒子群算法的电力系统多目标优化控制方案。最后,通过华东某区域电网的实测数据验证了所提控制策略的有效性。
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