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A Hybrid MMC-Based Photovoltaic and Battery Energy Storage System

机译:基于混合MMC的光伏和电池储能系统

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This paper proposes a new configuration and its control strategy for a modular multilevel converter (MMC)-based photovoltaic (PV)-battery energy storage (BES) system. In the MMC-based PV-BES system, each PV submodule is interfaced from its dc side with multiple PV generators using isolated dual active bridge (DAB) dc-dc converters. One BES system is embedded into each arm of the converter and is connected to the dc port of the associated BES submodule using multiple isolated DAB converters. The embedded BES systems are used to smooth the output power of the PV generators and limit the rate of change of the power delivered to the host grid. Moreover, they enable compensation of power mismatches between the arms and legs of the system by exchanging power with the arms of the converter. This paper then proposes a hybrid power mismatch elimination strategy using a combination of power exchange with the arms of the converter and internal power flow control of the MMC. The proposed hybrid power mismatch elimination strategy employs BES systems and differential currents to compensate power mismatches and transfer power between the arms and legs of the converter, respectively. The effectiveness of the proposed power smoothing technique using the embedded BES systems and hybrid power mismatch elimination strategy is demonstrated using time-domain simulations conducted on a switched model of the PV-BES system in PSCAD/EMTDC software environment.
机译:本文提出了一种基于模块化多电平转换器(MMC)的光伏(PV)-电池储能(BES)系统的新配置及其控制策略。在基于MMC的PV-BES系统中,每个PV子模块都使用隔离的双有源桥(DAB)dc-dc转换器从其dc侧与多个PV发电机接口。一个BES系统嵌入到转换器的每个臂中,并使用多个隔离的DAB转换器连接到相关BES子模块的dc端口。嵌入式BES系统用于平滑PV发电机的输出功率,并限制传递到主电网的功率的变化率。此外,它们通过与转换器的臂交换功率来补偿系统的臂和臂之间的功率失配。然后,本文提出了一种混合功率不匹配消除策略,该策略将转换器臂的功率交换与MMC的内部功率流控制相结合。提出的混合功率失配消除策略采用BES系统和差分电流分别补偿功率失配并在转换器的臂和臂之间转移功率。通过在PSCAD / EMTDC软件环境中对PV-BES系统的切换模型进行时域仿真,证明了使用嵌入式BES系统和混合功率不匹配消除策略的拟议功率平滑技术的有效性。

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