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H/sup /spl infin// control applied to boost power converters

机译:H / sup / spl infin //用于升压功率转换器的控制

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The controller in a pulse-width-modulation (PWM) power converter has to stabilize the system and guarantee an almost constant output voltage in spite of the perturbations in the input voltage and output load over as large a bandwidth as possible. Boost and flyback power converters have a right-half-plane zero (RHPZ) in their transfer function from the duty cycle to the output voltage, which makes it difficult to achieve the aforementioned goals. Here, the authors propose to design a controller using H/sup /spl infin// control theory, via the solution of two algebraic Riccati equations. The almost optimal H/sup /spl infin// controller is of the same order as the converter and has a relatively low DC gain. The closed-loop characteristics of a typical low-power boost power converter with four different control schemes were compared by computer simulation. The H/sup /spl infin// control was found to be superior in a wide frequency range, while being outperformed by the others at extremely low frequencies. Good agreement was found between simulation results and experimental measurements.
机译:脉宽调制(PWM)功率转换器中的控制器必须稳定系统,并确保输入电压和输出负载的扰动在尽可能大的带宽上保持几乎恒定。升压和反激功率转换器在从占空比到输出电压的传递函数中具有右半平面零(RHPZ),这使其难以实现上述目标。在这里,作者建议通过两个代数Riccati方程的解,使用H / sup / spl infin //控制理论设计控制器。几乎最佳的H / sup / spl infin //控制器与转换器的阶数相同,并且具有相对较低的DC增益。通过计算机仿真比较了具有四种不同控制方案的典型低功率升压功率转换器的闭环特性。发现H / sup / spl infin //控件在很宽的频率范围内表现出色,而在极低的频率下则优于其他控件。在仿真结果和实验测量之间发现了很好的一致性。

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