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PV Isolated Three-Port Converter and Energy-Balancing Control Method for PV-Battery Power Supply Applications

机译:用于光伏电池电源应用的光伏隔离三端口转换器和能量平衡控制方法

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摘要

A photovoltaic (PV)-based stand-alone power system is usually used to manage the energy supplied from several power sources such as PV solar arrays and battery and deliver a continuous power to the users in an appropriate form. Traditionally, three different dc/dc converters would have been used. To reduce the cost and improve the power density of the power system, an integrated solution of PV isolated dc/dc three-port converter (TPC) is proposed in this paper. Zero current switching can be achieved for all main diodes and MOSFETs to improve the efficiency, and a continuous input current of solar array is maintained by adding a magnetic switch derived from a fourth winding of the half-bridge transformer. Based on the energy-balancing part formed by boost, the control methods for the single module to realize maximum power point tracking (MPPT), battery charge control, and main bus regulation are proposed. The power system control method for multimodules in parallel is also derived, and the operation of the TPC power system can be transited between conductance mode and MPPT mode automatically. Finally, the experimental results verify that the proposed TPC, together with the proposed control method, meets the requirements of a high-power-density stand-alone PV-battery power system.
机译:基于光伏(PV)的独立电源系统通常用于管理从多个电源(例如PV太阳能电池板和电池)提供的能量,并以适当的形式向用户提供连续的电源。传统上,将使用三个不同的dc / dc转换器。为了降低成本并提高电源系统的功率密度,本文提出了一种光伏隔离式dc / dc三端口转换器(TPC)的集成解决方案。可以为所有主二极管和MOSFET实现零电流开关,以提高效率,并且通过添加一个从半桥变压器的第四绕组引出的磁性开关来维持太阳能电池阵列的连续输入电流。基于升压形成的能量平衡部分,提出了单模块实现最大功率点跟踪(MPPT),电池充电控制和主总线调节的控制方法。推导了多模块并联的电力系统控制方法,TPC电力系统的运行可以在电导模式和MPPT模式之间自动转换。最后,实验结果验证了所提出的TPC和所提出的控制方法能够满足高功率密度独立式PV电池电源系统的要求。

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