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A Bidirectional Multiple-Input Multiple-Output Modular Multilevel DC–DC Converter and its Control Design

机译:双向多输入多输出模块化多电平DC-DC转换器及其控制设计

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This paper introduces a multiple-input multiple-output modular multilevel dc–dc converter (MIMO-MMC) and its associated control scheme. The proposed topology has a bidirectional structure and may be utilized in both low- and high-power applications ranging from approximately 100 W–10 MW. The modular structure of the MIMO-MMC enables efficient component utilization through module voltage and current sharing capabilities. The topology can supply or extract regulated power from an arbitrary number of controllable voltage nodes without requiring source or load multiplexing, resulting in minimized filtering requirements. The MIMO-MMC's structure is described, and the steady-state operation of the converter is theoretically analyzed. The dynamic models of the converter for both step-down and step-up configuration are derived and employed to devise an effective control algorithm for closed-loop operation. A general method is provided for stability analysis of the proposed closed-loop system followed by a case study verifying stability of the system at different operating points. The steady-state operation and dynamic response of the converter under both configurations is investigated through simulation and experiment.
机译:本文介绍了一种多输入多输出模块化多电平dc-dc转换器(MIMO-MMC)及其相关的控制方案。拟议的拓扑结构具有双向结构,可在大约100W-10MW的低功率和高功率应用中使用。 MIMO-MMC的模块化结构通过模块电压和电流共享功能实现了有效的组件利用。拓扑可以从任意数量的可控电压节点提供或提取调节后的功率,而无需源或负载多路复用,从而使滤波要求降至最低。描述了MIMO-MMC的结构,并从理论上分析了转换器的稳态工作。推导了用于降压和升压配置的转换器动态模型,并为闭环操作设计了一种有效的控制算法。提供了一种通用方法来对拟议的闭环系统进行稳定性分析,然后进行案例研究,以验证系统在不同工作点的稳定性。通过仿真和实验研究了两种配置下转换器的稳态工作和动态响应。

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