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Robust Control of DC-DC Boost Converter by using μ-Synthesis Approach

机译:使用μ综合方法对DC-DC Boost转换器进行鲁棒控制

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Boost converters are used in many renewable energy systems in order to interface a lower voltage source such as a solar array or battery to the dc input of a grid-connected inverter. The boost converter must be controlled in order to correct for the effects of variable input voltages and changing output loads. This paper develops an improved controller design method using aμ-synthesis approach. The goal is to achieve a low order controller that can be implemented at a reduced cost. This is an improvement overH∞ controllers that achieve robust performance with more complex realizations. Detailed simulation results for a wide range of parametric changes in the boost circuit environment confirm the benefits of the proposed method. The results are compared with a PI controller whereby it is shown thatμ-synthesis provides improved performance compared to a conventional controller.
机译:升压转换器用于许多可再生能源系统中,以便将较低电压源(例如太阳能电池板或电池)连接到并网逆变器的直流输入。必须控制升压转换器,以校正可变输入电压和变化的输出负载的影响。本文开发了一种使用μ综合方法的改进的控制器设计方法。目标是实现可以以降低的成本实现的低阶控制器。这是对H∞控制器的改进,它通过更复杂的实现实现了鲁棒的性能。升压电路环境中各种参数变化的详细仿真结果证实了该方法的优势。将结果与PI控制器进行比较,结果表明与传统控制器相比,μ合成可提供更高的性能。

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