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首页> 外文期刊>Optimal Control Applications and Methods >Hybrid predictive control of a DC-DC boost converter in both continuous and discontinuous current modes of operation
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Hybrid predictive control of a DC-DC boost converter in both continuous and discontinuous current modes of operation

机译:连续和不连续电流模式下DC-DC升压转换器的混合预测控制

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摘要

Developing efficient and appropriate modeling and control techniques for DC-DC converters is of major importance in power electronics area and has attracted much attention from automatic control theory. Since DC-DC converters have a complex hybrid nature, recently several techniques based on hybrid modeling and control have been introduced. These techniques have shown better results as compared with conventional averaging-based schemes with limited modeling and control abilities. But the current works in this field have not considered all possible dynamics of the converters in both continuous and discontinuous current modes (CCM, DCM) of operations. These dynamics are results of controlled and uncontrolled switching phenomena in DC-DC converters. This paper proposes a new switching scheme for modeling and controlling a DC-DC boost converter. The converter is represented as a hybrid automaton by considering the all three possible modes. The hybrid automaton is translated into the mixed logical dynamical (MLD) mathematical framework. The switching among these modes is generated by hybrid predictive control method which is calculated by Mixed Integer Quadratic Programming (MIQP). Using the exact model of the converter, the proposed switching algorithm can globally control the converter in all operation regimes, including CCM and DCM operations, considering all constraints in the physical plant, such as maximum inductor current and capacitor voltage limits. The switching algorithm is applied to a real converter circuit, modeled with various parasitic components. Simulation results are provided to show the advantages of the proposed control scheme.
机译:开发用于DC-DC转换器的高效,适当的建模和控制技术在电力电子领域至关重要,并且已引起自动控制理论的广泛关注。由于DC-DC转换器具有复杂的混合特性,因此最近引入了几种基于混合建模和控制的技术。与建模和控制能力有限的传统基于平均的方案相比,这些技术已显示出更好的结果。但是,该领域的当前工作并未考虑转换器在连续和不连续电流模式(CCM,DCM)下的所有可能的动态特性。这些动态是DC-DC转换器中受控和不受控开关现象的结果。本文提出了一种用于建模和控制DC-DC升压转换器的新开关方案。通过考虑所有三种可能的模式,将转换器表示为混合自动机。混合自动机被转换为混合逻辑动力学(MLD)数学框架。这些模式之间的切换是通过混合预测控制方法生成的,该方法通过混合整数二次规划(MIQP)计算得出。使用转换器的精确模型,考虑到物理工厂中的所有限制因素(例如最大电感器电流和电容器电压限制),所提出的开关算法可以在所有操作范围(包括CCM和DCM操作)中全局控制转换器。该开关算法应用于具有各种寄生元件建模的实际转换器电路。仿真结果表明了该控制方案的优越性。

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