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Switching Frequency Regulation in Sliding Mode Control by a Hysteresis Band Controller

机译:迟滞带控制器在滑模控制中的开关频率调节

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Fixing the switching frequency is a key issue in sliding mode control implementations. This paper presents a hysteresis band controller capable of setting a constant value for the steady-state switching frequency of a sliding mode controller in regulation and tracking tasks. The proposed architecture relies on a piecewise linear modeling of the switching function behavior within the hysteresis band, and consists of a discrete-time integral-type controller that modifies the amplitude of the hysteresis band of the comparator in accordance with the error between the desired and the actually measured switching period. For tracking purposes, an additional feedforward action is introduced to compensate the time variation of the switching function derivatives at either sides of the switching hyperplane in the steady state. Stability proofs are provided, and a design criterion for the control parameters to guarantee closed-loop stability is subsequently derived. Numerical simulations and experimental results validate the proposal.
机译:固定开关频率是滑模控制实现中的关键问题。本文提出了一种磁滞带控制器,该控制器能够为调节和跟踪任务中的滑模控制器的稳态开关频率设置一个恒定值。所提出的体系结构依赖于滞后带内开关功能行为的分段线性建模,并且由离散时间积分型控制器组成,该控制器根据期望值与期望值之间的误差修改比较器滞后带的幅度。实际测量的开关周期。为了跟踪的目的,引入了附加的前馈动作,以补偿稳态下开关超平面两侧的开关函数导数的时间变化。提供了稳定性证明,随后得出了控制参数的设计准则,以确保闭环稳定性。数值模拟和实验结果验证了该建议。

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