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Adaptive terminal sliding-mode control strategy for DC-DC buck converters

机译:DC-DC降压转换器的自适应终端滑模控制策略

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摘要

This paper presents an adaptive terminal sliding mode control (ATSMC) strategy for DC-DC buck converters. The idea behind this strategy is to use the terminal sliding mode control (TSMC) approach to assure finite time convergence of the output voltage error to the equilibrium point and integrate an adaptive law to the TSMC strategy so as to achieve a dynamic sliding line during the load variations. In addition, the influence of the controller parameters on the performance of closed-loop system is investigated. It is observed that the start up response of the output voltage becomes faster with increasing value of the fractional power used in the sliding function. On the other hand, the transient response of the output voltage, caused by the step change in the load, becomes faster with decreasing the value of the fractional power. Therefore, the value of fractional power is to be chosen to make a compromise between start up and transient responses of the converter. Performance of the proposed ATSMC strategy has been tested through computer simulations and experiments. The simulation results of the proposed ATSMC strategy are compared with the conventional SMC and TSMC strategies. It is shown that the ATSMC exhibits a considerable improvement in terms of a faster output voltage response during load changes.
机译:本文提出了一种适用于DC-DC降压转换器的自适应终端滑模控制(ATSMC)策略。该策略背后的思想是使用终端滑模控制(TSMC)方法来确保输出电压误差到平衡点的有限时间收敛,并将自适应定律集成到TSMC策略中,从而在驱动期间实现动态滑线。负载变化。此外,还研究了控制器参数对闭环系统性能的影响。可以看出,随着滑动功能中使用的小数功率值的增加,输出电压的启动响应变得更快。另一方面,由负载的阶跃变化引起的输出电压的瞬态响应随着分数功率值的减小而变得更快。因此,应选择分数功率的值以在转换器的启动和瞬态响应之间做出折衷。拟议的ATSMC策略的性能已通过计算机仿真和实验进行了测试。将拟议的ATSMC策略的仿真结果与常规SMC和TSMC策略进行了比较。结果表明,在负载变化期间,ATSMC在更快的输出电压响应方面显示出了显着的改进。

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