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Management and control of storage photovoltaic energy using battery-supercapacitor combination

机译:使用电池-超级电容器组合管理和控制存储光伏能量

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Due to the variable characteristics of photovoltaic energy production, batteries used in storage systems renewable power can undergo many irregular cycles of charge / discharge. In turn, this can also have a detrimental effect on the life of the battery and can increase project costs. This paper presents a study of the storage of photovoltaic energy by using a hybrid batteries-Supercapacitors system. Supercapacitors are used to improve batteries life and reduce their stresses. The photovoltaic cells are connected to DC bus (400V) with boost converter and controlled with MPPT algorithm, Supercapacitors and batteries are linked to the DC bus through the buck-boost converter. The inductive load is connected to the DC bus by a DC-AC converter. The static converters associated with batteries and supercapacitors are controlled by current. The components of the systems are supervised through a block of energy management. The complete model of the system is implemented in MATLAB/Simulink environment. Some simulation results prove the effectiveness of the proposed control strategy.
机译:由于光伏能源生产的可变特性,用于存储系统可再生能源的电池可能会经历许多不规则的充电/放电循环。反过来,这也会对电池寿命产生不利影响,并可能增加项目成本。本文介绍了通过使用混合电池-超级电容器系统来存储光伏能量的研究。超级电容器用于延长电池寿命并减少其应力。光伏电池通过升压转换器连接到DC总线(400V),并通过MPPT算法控制。超级电容器和电池通过降压-升压转换器连接到DC总线。感性负载通过DC-AC转换器连接到DC总线。与电池和超级电容器相关的静态转换器由电流控制。系统的组成部分通过能源管理模块进行监督。该系统的完整模型在MATLAB / Simulink环境中实现。仿真结果证明了该控制策略的有效性。

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