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Modeling and Control of Three-Port DC/DC Converter Interface for Satellite Applications

机译:卫星应用的三端口DC / DC转换器接口的建模和控制

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This paper presents the control strategy and power management for an integrated three-port converter, which interfaces one solar input port, one bidirectional battery port, and an isolated output port. Multimode operations and multiloop designs are vital for such multiport converters. However, control design is difficult for a multiport converter to achieve multifunctional power management because of various cross-coupled control loops. Since there are various modes of operation, it is challenging to define different modes and to further implement autonomous mode transition based on the energy state of the three power ports. A competitive method is used to realize smooth and seamless mode transition. Multiport converter has plenty of interacting control loops due to integrated power trains. It is difficult to design close-loop controls without proper decoupling method. A detailed approach is provided utilizing state-space averaging method to obtain the converter model under different modes of operation, and then a decoupling network is introduced to allow separate controller designs. Simulation and experimental results verify the converter control design and power management during various operational modes.
机译:本文介绍了一个集成的三端口转换器的控制策略和电源管理,该转换器连接一个太阳能输入端口,一个双向电池端口和一个隔离输出端口。多模式操作和多回路设计对于此类多端口转换器至关重要。但是,由于各种交叉耦合的控制回路,多端口转换器的控制设计很难实现多功能电源管理。由于存在多种操作模式,因此定义不同的模式并基于三个电源端口的能量状态进一步实现自主模式转换是一项挑战。使用竞争方法来实现平滑和无缝的模式转换。由于集成了动力总成,多端口转换器具有许多相互作用的控制回路。没有适当的去耦方法,很难设计闭环控制。提供一种利用状态空间平均方法获得不同操作模式下的转换器模型的详细方法,然后引入去耦网络以允许进行单独的控制器设计。仿真和实验结果验证了各种操作模式下的转换器控制设计和电源管理。

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