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Hybrid Control of DC–DC Series Resonant Converters: The Direct Piecewise Affine Approach

机译:DC-DC系列谐振转换器的混合控制:直接逐段仿射方法

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摘要

The control and stabilization of resonant converters are essential problems in power electronics. The conventional controller design and stability analysis for these converters are based on the linearized averaged model. Nevertheless, the state variables in resonant converters have large ac variations and the validity of the linearized average model is violated. Hence, using large signal and nonaveraged models are necessary for controller design and stability analysis. In this paper, a new hybrid controller is presented that is applicable to dc–dc series resonant converters and use neither averaging nor small signal approximation. The dc–dc resonant converters are inherently switched affine systems with constrained switching law. The proposed controller is based on the switched behavior of the converter and the concept of piecewise affine methodology. Moreover, it has switched inner and proportional-integral (PI) outer control loops and does not require a modulator. The large signal and closed loop stability analysis of the resonant converters is presented by a theorem. The minimum phase attribute of the control system is investigated by zero dynamic stability analysis. The proposed controller has less complexity in comparison to other suggested controllers and can be implemented using simple analog circuits. The simulation and experimental results show the effectiveness of the proposed method.
机译:谐振转换器的控制和稳定性是电力电子学中的基本问题。这些转换器的常规控制器设计和稳定性分析均基于线性平均模型。然而,谐振转换器中的状态变量具有较大的交流变化,并且违反了线性化平均模型的有效性。因此,对于控制器设计和稳定性分析,必须使用大信号模型和非平均模型。在本文中,提出了一种新的混合控制器,该控制器适用于dc-dc串联谐振转换器,并且既不使用平均也不使用小信号逼近。 dc-dc谐振转换器本质上是具有受限开关定律的开关仿射系统。所提出的控制器基于转换器的开关特性和分段仿射方法的概念。而且,它已经切换了内部和比例积分(PI)外部控制回路,并且不需要调制器。一个定理给出了谐振变换器的大信号和闭环稳定性分析。通过零动态稳定性分析研究了控制系统的最小相位属性。与其他建议的控制器相比,建议的控制器具有较低的复杂性,并且可以使用简单的模拟电路来实现。仿真和实验结果表明了该方法的有效性。

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