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An integrated four-port full-bridge converter with DMPPT for renewable power system

机译:具有DMPPT的集成式四端口全桥转换器,用于可再生能源系统

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In order to involve multiple different renewable energy sources and balance power flow, a four-port full-bridge converter (FPFBC) with distributed maximum power point tracking (DMPPT) is proposed for renewable power systems. This converter, featuring two input ports, one bidirectional port and one isolated output port, is derived by integrating two Buck-Boost converters and a full-bridge converter. The switching legs are shared by the Buck/Boost converter and full-bride converter. Hence, single stage conversion between any two of the ports is achieved. As a result, high power density and high efficiency can be guaranteed. DMPPT is realized on the two input ports connecting to different renewable sources, which ensures maximum renewable energy harvest. A pulse-width modulation plus phase angle shift control scheme and a power control strategy are presented for the FPFBC to implement the power management of the four ports. The operation modes and principles of the proposed converter, along with the design considerations, are discussed in detail. Simulation and experimental results verify the feasibility and effectiveness of the proposed converter.
机译:为了涉及多个不同的可再生能源并平衡功率流,针对可再生能源系统提出了一种具有分布式最大功率点跟踪(DMPPT)的四端口全桥转换器(FPFBC)。该转换器具有两个输入端口,一个双向端口和一个隔离输出端口,它是通过集成两个Buck-Boost转换器和一个全桥转换器而得到的。降压/升压转换器和全桥转换器共享开关支路。因此,实现了任意两个端口之间的单级转换。结果,可以确保高功率密度和高效率。 DMPPT在连接到不同可再生资源的两个输入端口上实现,从而确保最大程度地获取可再生能源。提出了一种脉冲宽度调制加相角移位控制方案和一种功率控制策略,用于FPFBC来实现四个端口的功率管理。详细讨论了所提出的转换器的工作模式和原理,以及设计注意事项。仿真和实验结果验证了该转换器的可行性和有效性。

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