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Digital Predictive Peak Current-Mode Control for Three-Level Buck Converters

机译:三电平降压转换器的数字预测峰值电流模式控制

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This paper addresses the application of digital predictive current-mode control (DPCMC) to three-level flying-capacitor Buck converters (3LFC). While DPCMC has been extensively studied for basic dc-dc topologies, its reliable application to multilevel converters is subject to the constraint that the flying capacitor voltage(s) remains stable. This work clarifies the stability properties of predictive peak current-mode control for three-level converters when operated in single-sampling and multisampling mode. A specific implementation of the multisampled DPCMC through a fast-update of the duty cycle command is also disclosed and analyzed which guarantees system stability and FC voltage balancing while significantly extending the dynamic capabilities of the converter. Results are validated in simulation and experimentally on a low-voltage 3LFC prototype.
机译:本文介绍了数字预测电流模式控制(DPCMC)在三级飞电容降压转换器(3LFC)中的应用。尽管已经针对基本的DC-DC拓扑对DPCMC进行了广泛的研究,但DPCMC在多电平转换器中的可靠应用受制于飞跨电容器电压保持稳定的约束。这项工作阐明了在单采样和多采样模式下工作的三电平转换器的预测峰值电流模式控制的稳定性。还公开并分析了通过占空比指令的快速更新对多采样DPCMC的具体实现,该方法可确保系统稳定性和FC电压平衡,同时显着扩展转换器的动态能力。在低压3LFC原型上进行仿真和实验验证了结果。

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