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PID, 2-DOF PID and mixed sensitivity loop-shaping based robust voltage control of quadratic buck DC-DC converter

机译:PID,2自由度PID和基于混合灵敏度环路整形的二次降压DC-DC转换器鲁棒电压控制

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摘要

DC-DC Quadratic Buck Converter (QBC) is largely used in applications where the high step-down conversion ratio is required. In the practical implementation, QBC is subject to uncertainties, disturbance, and sensor noise. To address the QBC control problems, a two-degree of freedom PID (2-DOF PID) is designed in the robust control framework. Further, for comparison purpose, a one-degree of freedom PID (1-DOF PID) and mixed sensitivity loop-shaping (MS-LS) controller are also proposed. Considering QBC parasitic components, the QBC small-signal transfer function is derived based on a practical approach. Sensitivity functions are used to specify the desired design requirements, and non-smooth optimization is used to tune both PID's parameters. The three control structures are implemented and tested in the Matlab/Simulink environment. As attested by simulation results, the 2-DOF PID exhibits a better regulation accuracy with enhanced robust stability and robust performance for a wide range of supply voltage/load variation and sensor noise effect.
机译:DC-DC二次降压转换器(QBC)广泛用于需要高降压转换比的应用中。在实际实施中,QBC会受到不确定性,干扰和传感器噪声的影响。为了解决QBC控制问题,在鲁棒控制框架中设计了一个两自由度PID(2-DOF PID)。此外,出于比较目的,还提出了一种自由度PID(1-DOF PID)和混合灵敏度环路整形(MS-LS)控制器。考虑到QBC寄生成分,QBC小信号传递函数是基于一种实用方法得出的。灵敏度函数用于指定所需的设计要求,非平滑优化用于调整两个PID的参数。这三种控制结构是在Matlab / Simulink环境中实现和测试的。仿真结果证明,2-DOF PID表现出更好的调节精度,具有增强的鲁棒稳定性和鲁棒性能,适用于各种电源电压/负载变化和传感器噪声影响。

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