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Robust Digital Voltage-Mode Controller for Fifth-Order Boost Converter

机译:用于五阶升压转换器的稳健数字电压模式控制器

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In this paper, a robust digital voltage-mode controller (DVMC) is proposed for a fifth-order boost point-of-load converter. Salient features of the proposed topology are compared with a conventional boost converter. Mathematical models are formulated using a discrete-time modeling technique and then employed in the compensator design, which uses the digital direct design approach. The DVMC is designed to ensure load voltage regulation. Robustness theory is applied directly in the digital domain, and then, various robust stability criteria describing sensitivity functions are formulated. The controller is designed to satisfy robustness criteria and then evaluated over a range of disturbances in spite of the fact that it maintains regulation. To confirm this, design simulations have been carried out on a 25-W 12–36-V converter system. Experimental results are provided to validate the concept and also to verify the range over which the designed controller is robust.
机译:在本文中,针对五阶升压负载点转换器,提出了一种鲁棒的数字电压模式控制器(DVMC)。将所提出的拓扑的显着特征与常规升压转换器进行了比较。使用离散时间建模技术来建立数学模型,然后将其用于使用数字直接设计方法的补偿器设计中。 DVMC旨在确保负载电压调节。鲁棒性理论直接应用于数字领域,然后制定了描述灵敏度函数的各种鲁棒稳定性标准。控制器被设计为满足鲁棒性标准,然后尽管保持调节,但仍会在一系列干扰范围内进行评估。为了证实这一点,已经在25W 12–36V转换器系统上进行了设计仿真。提供了实验结果,以验证该概念并验证所设计控制器的鲁棒性范围。

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