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Input current control of boost converters using current-mode controller integrated with linear quadratic regulator

机译:使用集成了线性二次调节器的电流模式控制器对升压转换器的输入电流进行控制

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摘要

The application of power electronic converter in the renewable energy systems significantly increases their efficiencies by maintaining the operation of these systems at the optimal operating points, therefore, absorbing the maximum available power from the renewable sources all the time. In this paper, the small-signal models of the open-loop, current-mode controlled boost converter are derived. In addition, both the Current Mode Control (CMC) and the Linear Quadratic Regulator (LQR) methods are combined to design a controller that forces the input current of the converter to follow accurately a reference current, which could be generated using maximum power point tracking (MPPT) algorithms. The controller performance is tested under transient conditions and with disturbance signals using MATLAB/Simulink simulation package. The simulation results indicate that both a good response and disturbance rejection are achieved in tested conditions.
机译:功率电子转换器在可再生能源系统中的应用通过将这些系统维持在最佳运行点来显着提高其效率,因此,始终可吸收可再生能源的最大可用功率。本文推导了开环,电流模式控制升压转换器的小信号模型。此外,电流模式控制(CMC)和线性二次调节器(LQR)方法都组合在一起,以设计一种控制器,该控制器强制转换器的输入电流精确遵循参考电流,这可以使用最大功率点跟踪来生成(MPPT)算法。使用MATLAB / Simulink仿真包在瞬态条件下和带有干扰信号的情况下测试控制器的性能。仿真结果表明,在测试条件下均实现了良好的响应和干扰抑制。

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