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Sliding motion, robust control and power loss minimization in a class of non-linear switched converters

机译:在一类非线性开关转换器中的滑动,鲁棒控制和功率损耗最小化

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摘要

In this paper we propose a sliding mode control scheme that allows robust control of the output voltage in a class of nonlinear switched converters that includes the Non-Inverting Buck-Boost, the Watkins-Johnson and the Inverse of Watkins-Johnson. Using a full-state reference profile-based sliding surface, periodic signals may be tracked by the output voltage under appropriate restrictions. Furthermore, semi-infinite programming techniques are used to minimize power loses while taking into account the existence of load perturbations. The procedure consists of choosing a reference signal for the inductor current with minimum root mean square, subject to the maintenance of sliding regime under possible load variation in a set with known bounds. Realistic simulation results show a highly robust performance in the presence of load disturbances.
机译:在本文中,我们提出了一种滑模控制方案,该方案允许在包括非反相降压-升压,沃特金斯-约翰逊和沃特金斯-约翰逊反型在内的一类非线性开关转换器中对输出电压进行鲁棒控制。使用基于全状态参考曲线的滑动表面,可以在适当的限制下通过输出电压跟踪周期性信号。此外,在考虑到负载扰动的同时,使用了半无限编程技术来最大程度地减少功率损耗。该过程包括为电感电流选择一个具有最小均方根的参考信号,该信号受制于在已知范围内可能的负载变化下保持滑动状态的情况。现实的仿真结果表明,在存在负载干扰的情况下,其性能非常稳定。

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