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Three-port converter with decoupled power control strategies for residential PV-battery system

机译:具有解耦功率控制策略的三端口转换器,用于住宅光伏电池系统

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The traditional method for interconnecting PV and a battery energy storage system (BESS) to a household load uses at least two separate converters. In this paper, a fully-isolated three-port converter (TPC) which is based on a dual active bridge (DAB) configuration is proposed for integrating the PV and BESS with the household loads to avoid multistage power conversion. A converter with more than two ports is normally designed to have multimode operations which requires multiple control loops. Due to these multiple cross-coupled power control loops, designing closed loop power control strategies for the TPC becomes a complex issue. This paper presents the small signal modeling of the isolated TPC with proper decoupled networks to eliminate the interaction between multiple power control loops. The decoupled network allows a closed loop power control system design for the TPC to control the port powers independently. As two degrees of freedom (DOFs) are available, the control system can control the PV port power and the ac load port power. The battery port must then provide the balancing power. The power flows between the ports are managed by phase shift modulation (PSM). The responses of the power control system of the proposed TPC with decoupled networks are verified by simulation studies.
机译:用于将PV和电池储能系统(BESS)互连到家庭负载的传统方法使用至少两个单独的转换器。本文提出了一种基于双有源桥(DAB)配置的全隔离三端口转换器(TPC),用于将PV和BESS与家用负载集成在一起,以避免多级功率转换。具有两个以上端口的转换器通常设计为具有多模式操作,这需要多个控制环路。由于这些多个交叉耦合的功率控制环路,因此为TPC设计闭环功率控制策略成为一个复杂的问题。本文介绍了具有适当去耦网络的隔离式TPC的小信号建模,以消除多个电源控制环路之间的相互作用。解耦网络允许TPC的闭环电源控制系统设计独立控制端口电源。由于有两个自由度(DOF),控制系统可以控制PV端口电源和ac负载端口电源。然后,电池端口必须提供平衡电源。端口之间的功率流通过相移调制(PSM)进行管理。仿真研究验证了所提TPC电源控制系统解耦网络的响应。

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