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A Robust Approach to Controller Design for DC-DC Quasi-Resonant Converters

机译:DC-DC准谐振转换器的鲁棒控制器设计方法

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摘要

DC-DC quasi-resonant converters (QRCs) have a highly nonlinear and time-varying behavior as well as other types of DC-DC resonant converters such as conventional and multi-resonant converters. Changing in operating conditions, mainly due to variation in load and line disturbance, leads to significant changes on system dynamics so that desired performance and even stability are lost. Taking into consideration the uprising need for high-quality resonant power converters has opened a new research window on the control of these systems using modern and systematic approaches. In this paper in order to achieve both stability and desired performance, such as reduced sensitivity to load variations, desired disturbance rejection, reduced output impedance and attenuated transfer from input to output, we have proposed a methodology based on μ-synthesis technique for DC-DC QRCs controller design. The μ-analysis is used to verify the robustness of the designed controller. The proposed control strategy is applied to a typical zero-current switching QRC and nonlinear simulation is performed using nonlinear model of converter circuit. The simulation results demonstrate the good reference voltage tracking, line disturbance rejection and show that the designed procedure guarantees the robust stability and robust performance for a wide range of load variation.
机译:DC-DC准谐振转换器(QRC)具有高度的非线性和时变特性,以及其他类型的DC-DC谐振转换器,例如常规和多谐振转换器。主要由于负载和线路干扰的变化而引起的工作条件的变化导致系统动力学的显着变化,从而丧失了所需的性能甚至稳定性。考虑到对高质量谐振功率转换器的迫切需求,为使用现代系统的方法控制这些系统打开了一个新的研究窗口。在本文中,为了实现稳定性和所需的性能,例如降低对负载变化的敏感性,所需的干扰抑制,减小的输出阻抗以及从输入到输出的衰减传输,我们提出了一种基于μ合成技术的DC- DC QRC控制器设计。 μ分析用于验证所设计控制器的鲁棒性。将所提出的控制策略应用于典型的零电流开关QRC并使用转换器电路的非线性模型进行非线性仿真。仿真结果证明了良好的参考电压跟踪能力,线路干扰抑制能力,并表明所设计的程序可确保在各种负载变化范围内的鲁棒稳定性和鲁棒性能。

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