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A Novel Filter Extracted Equivalent Control Based Fixed Frequency Sliding Mode Approach for Power Electronic Converters

机译:一种新型滤波器提取电力电子转换器的等效控制的固定频率滑动模式方法

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摘要

The key issue in the implementation of the Sliding Mode Control (SMC) in analogue circuits and power electronic converters is its variable switching frequency. The drifting frequency causes electromagnetic compatibility issues and also adversely affect the efficiency of the converter, because the proper size of the inductor and the capacitor depends upon the switching frequency. Pulse Width Modulation based SMC (PWM-SMC) offers the solution, however, it uses either boundary layer approach or employs pulse width modulation of the ideal equivalent control signal. The first technique compromises the performance within the boundary layer, while the latter may not possess properties like robustness and order reduction due to the absence of the discontinuous function. In this research, a novel approach to fix the switching frequency in SMC is proposed, that employs a low pass filter to extract the equivalent control from the discontinuous function, such that the performance and robustness remains intact. To benchmark the experimental observations, a comparison with existing double integral type PWM-SMC is also presented. The results confirm that an improvement of 20% in the rise time and 25.3% in the settling time is obtained. The voltage sag during step change in load is reduced to 42.86%, indicating the increase in the robustness. The experiments prove the hypothesis that a discontinuous function based fixed frequency SMC performs better in terms of disturbances rejection as compared to its counterpart based solely on ideal equivalent control.
机译:在滑模控制(SMC)的模拟电路和功率电子转换器的实施的关键问题是其可变切换频率。的频率漂移引起的电磁兼容性问题,也转换器的效率产生不利影响,这是因为电感器的合适的尺寸和电容取决于开关频率。基于脉冲宽度调制SMC(PWM-SMC)提供的解决方案,但是,它使用或者边界层的办法或采用脉冲宽度的理想等效控制信号的调制。第一种技术损害了边界层内的性能,而后者可能不具有像鲁棒性和为了还原性能由于不存在不连续的功能。在这项研究中,一种新颖的方法来解决在SMC的开关频率,提出了采用低通滤波器来提取从非连续函数,从而使性能和鲁棒性保持不变的等效控制。到基准实验观察,与现有的双积分类型PWM-SMC的比较还给出。结果证实,得到的上升时间的20%和25.3%,在稳定时间的改善。在负荷步骤期间变化的电压暂降减小到42.86%,这表明在鲁棒性的增加。实验证明,一不连续函数基于固定频率SMC进行更好在扰动抑制方面相比于仅基于理想等效控制其对应的假说。

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