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Boundary Control of Full-Bridge ZVS: Natural Switching Surface for Transient and Steady-State Operation

机译:全桥ZVS的边界控制:用于瞬态和稳态操作的自然开关表面

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摘要

This paper presents the use of a high-performance boundary controller for the full-bridge zero-voltage-switching topology. An enhanced dynamic response is obtained by employing the natural switching surface (SS), which is thoroughly derived in the normalized geometrical domain. The advantages of the normalization are the simple graphical representation, the generality for any combination of parameters, and the mathematical simplicity. Recently, nonisolated basic topologies have benefited from advancements in boundary control. The analysis and derivation in this work bring the benefit of outstanding dynamic performance to this isolated topology. As demonstrated in this work, the relationship between the leakage and output filter inductances makes the formulation of the natural trajectories for isolated converters possible. The resulting SS provides an excellent dynamic response during start-up, reference change, and sudden output loading conditions. Experimental results are presented to illustrate the characteristics and advantages of the control scheme and the converter operation with fixed switching frequency.
机译:本文介绍了针对全桥零电压开关拓扑的高性能边界控制器的使用。通过使用自然切换表面(SS)获得增强的动态响应,该表面在归一化的几何域中彻底得出。规范化的优点是简单的图形表示,参数任意组合的通用性和数学上的简单性。近来,非隔离的基本拓扑受益于边界控制的进步。这项工作的分析和推导为这种孤立的拓扑带来了出色的动态性能。如这项工作所示,泄漏和输出滤波器电感之间的关系使公式化隔离转换器的自然轨迹成为可能。所得的SS在启动,基准电压变化和突然的输出负载条件下提供了出色的动态响应。实验结果表明了该控制方案的特性和优势以及固定开关频率下的转换器运行。

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