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Power Balancing Control for Grid Energy Storage System in Photovoltaic Applications—Real Time Digital Simulation Implementation

机译:光伏应用中电网储能系统的功率平衡控制—实时数字仿真实现

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A grid energy storage system for photo voltaic (PV) applications contains three different power sources i.e., PV array, battery storage system and the grid. It is advisable to isolate these three different sources to ensure the equipment safety. The configuration proposed in this paper provides complete isolation between the three sources. A Power Balancing Control (PBC) method for this configuration is proposed to operate the system in three different modes of operation. Control of a dual active bridge (DAB)-based battery charger which provides a galvanic isolation between batteries and other sources is explained briefly. Various modes of operation of a grid energy storage system are also presented in this paper. Hardware-In-the-Loop (HIL) simulation is carried out to check the performance of the system and the PBC algorithm. A power circuit (comprised of the inverter, dual active bridge based battery charger, grid, PV cell, batteries, contactors, and switches) is simulated and the controller hardware and user interface panel are connected as HIL with the simulated power circuit through Real Time Digital Simulator (RTDS). HIL simulation results are presented to explain the control operation, steady-state performance in different modes of operation and the dynamic response of the system.
机译:用于光伏(PV)应用的电网储能系统包含三种不同的电源,即PV阵列,电池储能系统和电网。建议隔离这三种不同的来源,以确保设备安全。本文提出的配置提供了三个源之间的完全隔离。提出了一种针对该配置的功率平衡控制(PBC)方法,以三种不同的操作模式来操作系统。简要说明了基于双有源桥(DAB)的电池充电器的控制,该充电器在电池和其他电源之间提供电流隔离。本文还介绍了电网储能系统的各种运行模式。进行了硬件在环(HIL)仿真,以检查系统和PBC算法的性能。模拟了电源电路(包括逆变器,基于双有源桥的电池充电器,电网,PV电池,电池,接触器和开关),并且控制器硬件和用户界面面板通过实时作为HIL与模拟电源电路连接数字模拟器(RTDS)。给出了HIL仿真结果,以解释控制操作,不同操作模式下的稳态性能以及系统的动态响应。

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