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Hybrid mode-switched control of DC-DC boost converter circuits

机译:DC-DC升压转换器电路的混合模式切换控制

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This paper has proposed a new switching scheme for controlling dc-dc boost converter circuits. The converter is represented as a hybrid system with three modes of operation. The switching among these modes is governed by the adjustable reference voltage and a reference current which are calculated by an energy balance principle. The scheme has been applied to a realistic converter circuit modeled with various parasitic components. All the specifications related to the ripple voltage, line and load regulation are shown to be achievable by relating them to the switching surfaces, namely a reference voltage and a reference current. The state trajectories have been shown to reach a hybrid limit cycle already proved to be super-stable from consideration of chaos. Numerical results clearly bring out the advantages of the proposed control scheme.
机译:本文提出了一种用于控制dc-dc升压转换器电路的新开关方案。转换器表示为具有三种操作模式的混合系统。这些模式之间的切换由通过能量平衡原理计算的可调参考电压和参考电流控制。该方案已应用于以各种寄生元件建模的实际转换器电路。与纹波电压,线路和负载调节有关的所有规格都可以通过将它们与开关表面相关联来实现,即参考电压和参考电流。已经证明状态轨迹达到了混合极限循环,考虑到混沌,这种极限循环已经被证明是超稳定的。数值结果清楚地表明了所提出的控制方案的优点。

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