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Dynamic Analysis of Three-Port DC/DC Converter for Space Applications

机译:用于空间应用的三端口DC / DC转换器的动态分析

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This paper presents the control structure for a novel three-port converter topology. This topology has the advantage of low switch count, high power density, high efficiency, so it is a valuable choice for space applications. The three port converter for space application interfaces one solar panel input port, one bi-directional battery port and an isolated output port. Lithium-Ion battery charge control simulation is implemented. Maximum Power Point Tracking (MPPT) is adopted to maximize the solar energy input. Two of the three ports can be simultaneously regulated. However, the two control loops have interactions with each other due to the integrated power trains of the three ports. Therefore, implementing the closed loop control requires careful analysis of their dynamic behaviors. In this paper, the dynamic behavior of the converter during different operational modes is fully characterized and studied. Small signal models are derived based on state space equations, and experimental results verify the converter control structure.
机译:本文介绍了一种新颖的三端口转换器拓扑的控制结构。这种拓扑的优点是开关数量少,功率密度高,效率高,因此对于空间应用来说是一个宝贵的选择。用于空间应用的三端口转换器连接一个太阳能电池板输入端口,一个双向电池端口和一个隔离输出端口。进行锂离子电池充电控制仿真。采用最大功率点跟踪(MPPT)以最大化太阳能输入。三个端口中的两个可以同时调节。但是,由于三个端口集成了动力传动系,因此两个控制回路之间会相互影响。因此,实施闭环控制需要仔细分析其动态行为。本文对变流器在不同工作模式下的动态行为进行了充分的表征和研究。基于状态空间方程推导了小信号模型,实验结果验证了转换器的控制结构。

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