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Event-triggered Sliding Mode Control for light load efficiency improvement in Power Converters

机译:电源转换器轻负载效率改进的事件触发的滑动模式控制

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Power converters, operating under fixed switching control, observe a substantial efficiency drop at light load owing to the associated fixed switching losses. To maintain the flat efficiency curve, varying the switching frequency depending on the load has been explored in the literature as a better alternative to fixed-frequency operation. This paper presents Event-triggered Sliding Mode Control (ETSMC) based variable frequency modulation scheme for power converters. The presented strategy leverage converter dynamics to execute control signal. This need-based switching technique ensures reduced switching losses and hence improved efficiency, without compromising on performance. Widely adopted switching reduction technique of Hysteresis modulation based SMC is established as a special case of ETSMC, thus highlighting the proposed scheme's generic nature. The scheme is demonstrated on an isolated half-bridge converter. Simulations, as well as experimentation results, are included to support the theory.
机译:电源转换器,在固定开关控制下运行,由于相关的固定开关损耗而遵守轻度负荷的大效率下降。为了维持平坦的效率曲线,根据载荷改变开关频率已经在文献中被探索为更好的固定频率操作的替代方案。本文介绍了用于电源转换器的基于事件触发的基于变频调制方案的触发器的滑动模式控制(ETSMC)。呈现的策略利用转换器动力学来执行控制信号。这种基于需求的交换技术可确保降低的开关损耗,从而提高效率,而不会影响性能。广泛采用基于滞后调制的切换技术的SMC被建立为ETSMC的特殊情况,从而突出了所提出的方案的通用性质。该方案在隔离的半桥转换器上进行了说明。包括模拟,以及实验结果,以支持该理论。

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