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An optimal Lyapunov-based control strategy for power factor correction AC/DC converters applicable to electric vehicles

机译:适用于适用于电动车辆的功率因数校正AC / DC转换器的最佳Lyapunov的控制策略

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This paper presents a simple and novel digital control scheme for a power factor correction (PFC) AC/DC boost converter based on Control-Lyapunov function theory. It is shown in this paper that the dynamics of the boost converter can be significantly improved by implementing the proposed controller, which introduces a Lyapunov function to the system and determines the optimal converter duty-ratio needed to minimize the Lyapunov function. The performance of the proposed controller is confirmed on a digitally controlled 3 kW boost PFC converter operating at 100 kHz switching frequency. Experimental results show that the proposed controller causes the boost converter to operate with low input current harmonics and very fast output voltage transient responses that are much less than a single input line cycle, compared to responses of several input line cycle transient periods seen in conventional control schemes.
机译:本文介绍了一种基于控制 - Lyapunov函数理论的功率因数校正(PFC)AC / DC升压转换器的简单和新的数字控制方案。本文示出了通过实现所提出的控制器,可以显着改善升压转换器的动态,这将Lyapunov函数引入系统并确定最小化Lyapunov功能所需的最佳转换器占空比。在以100 kHz开关频率的数字控制的3kW升压PFC转换器上确认了所提出的控制器的性能。实验结果表明,与在传统控制中看到的几个输入线循环瞬态瞬态时段的响应相比,所提出的控制器使升压转换器以低输入电流谐波和远低于单个输入线循环的快速输出电压瞬态响应操作。方案。

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