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An MPC Reference Governor Approach for Enhancing the Performance of Precompensated Boost DC–DC Converters

机译:MPC参考调速器方法,用于增强预补偿的Boost DC-DC转换器的性能

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This article addresses the problem of enhancing the performance of boost DC–DC converters that are already compensated either in voltage-mode by a common proportional–integral–derivative (PID, Type III) primary controller or in current-mode with a two-loop PI control law. Improved performance may be obtained with the addition of a secondary controller/prefilter in the form of a reference governor. This complementary scheme adjusts the imposed voltage reference input signal dynamically and can be designed in an optimal fashion via the model predictive control (MPC) methodology. Our evaluation with numerical simulation in MATLAB suggests that this two-level controller can effectively enhance the performance of a DC–DC boost converter in a wide operating range without imposing extra requirements or limitations. A simple linear MPC design in explicit form is employed in this approach, which is computationally tractable for digital microprocessor implementation. This work paves the way for future research involving reference governor ideas in the area of bilinear power electronic converters.
机译:本文解决了增强升压型DC-DC转换器性能的问题,该升压型DC-DC转换器已经在电压模式下通过通用比例积分微分(PID,Type III)主控制器进行了补偿,或者在电流模式下通过两回路进行了补偿。 PI控制法。通过添加参考调节器形式的辅助控制器/预滤波器,可以提高性能。这种互补方案可以动态调整施加的参考电压输入信号,并且可以通过模型预测控制(MPC)方法以最佳方式进行设计。我们在MATLAB中进行的数值模拟评估表明,这种两级控制器可以在较宽的工作范围内有效增强DC-DC升压转换器的性能,而无需施加额外的要求或限制。这种方法采用显式形式的简单线性MPC设计,对于数字微处理器的实现,该设计在计算上很容易处理。这项工作为双线性电力电子转换器领域中涉及参考调速器思想的未来研究铺平了道路。

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