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Optimal Allocation of Energy Storage System Considering Price-Based Demand Response and Dynamic Characteristics of VRB in Wind-PV-ES Hybrid Microgrid

机译:考虑基于价格的需求响应和VRB在风PV-ES杂交微电网中的维持响应和动态特性的最佳分配

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摘要

Studying the influence of the demand response and dynamic characteristics of the battery energy storage on the configuration and optimal operation of battery energy storage system (BESS) in the Wind-Photovoltaic (PV)-Energy Storage (ES) hybrid microgrid. A demand response model that is based on electricity price elasticity is established based on the time-of-use price. Take the capital-operating cost and direct economic benefit of the BESS and the loss of abandoned photovoltaic and wind power as the optimization objective, an optimal configuration method that considers the dynamic characteristics of the BESS and the maximum absorption of photovoltaic and wind power is proposed while using particle swarm optimization to solve. The results show that the configuration results considering the demand side response of the microgrid BESS can obtain better economy and reduce the storage capacity requirement, and the result shows that the efficiency of BESS relates to the load of the system, the distributed generation (DG) characteristics, and the dynamic characteristics of BESS. Meanwhile, the capacity and power of the energy storage configuration increase as the DG permeability increases due to the reverse load characteristic of the wind power.
机译:研究需求响应和上的配置,并在风光伏(PV) - 能量存储(ES)的混合微电网电池储能系统(BESS)的最佳操作的电池能量储存器的动态特性的影响。根据使用时间价格建立基于电价弹性的需求响应模型。以资本经营成本和BESS的直接经济效益和被遗弃的光伏和风电为优化目标,考虑了BESS和光伏和风力发电的最大吸收的动态特性的最佳配置方法的损失提出在使用粒子群优化来解决。结果表明,考虑微电网的需求侧响应的配置结果可以获得更好的经济性并降低存储容量要求,结果表明,贝尔斯的效率涉及系统的负载,分布式发电(DG)特征,以​​及贝丝的动态特征。同时,随着DG渗透率的增加,由于风电的反向载荷特性增加,能量存储配置的容量和功率增加。

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