Battery Energy Storage System for PV Output Power Leveling

Rajkiran Singh, S. Taghizadeh, N. Tan, J. Pasupuleti
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引用次数: 11

Abstract

Fluctuating photovoltaic (PV) output power reduces the reliability in power system when there is a massive penetration of PV generators. Energy storage systems that are connected to the PV generators using bidirectional isolated dc-dc converter can be utilized for compensating the fluctuating PV power. This paper presents a grid connected energy storage system based on a 2 kW full-bridge bidirectional isolated dc-dc converter and a PWM converter for PV output power leveling. This paper proposes two controllers: a current controller using the d-q synchronous reference and a phase-shift controller. The main function of the current controller is to regulate the voltage at the high-side dc, so that the voltage ratio of the high-voltage side (HVS) with low-voltage side (LVS) is equal to the transformer turns ratio. The phase-shift controller is employed to manage the charging and discharging modes of the battery based on PV output power and battery voltage. With the proposed system, unity power factor and efficient active power injection are achieved. The feasibility of the proposed control system is investigated using PSCAD simulation.
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用于光伏输出功率均衡的蓄电池储能系统
当光伏发电机组大量渗透时,光伏输出功率的波动会降低电力系统的可靠性。利用双向隔离dc-dc变换器与光伏发电机组连接的储能系统可以补偿光伏发电功率的波动。本文提出了一种基于2kw全桥双向隔离dc-dc变换器和PWM变换器的并网储能系统,用于光伏输出功率均衡。本文提出了两种控制器:采用d-q同步基准的电流控制器和相移控制器。电流控制器的主要作用是调节高压侧直流电处的电压,使高压侧(HVS)与低压侧(LVS)的电压比等于变压器匝数比。采用相移控制器根据光伏输出功率和电池电压对电池的充放电模式进行管理。该系统实现了统一的功率因数和高效的有功功率注入。通过PSCAD仿真验证了该控制系统的可行性。
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