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Speed Regulation of Permanent Magnet Synchronous Motor Using Event Triggered Sliding Mode Control

机译:基于事件触发滑模控制的永磁同步电机调速

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To reduce the chattering issue and improve the dynamic tracking performance of the speed regulation of the permanent magnet synchronous motor (PMSM) system, the sliding mode control (SMC) with an enhanced exponential reaching law (EERL) is proposed in this paper. Compared to the SMC with conventional reaching law (CRL), the proposed SMC based on the EERL makes the convergence rate be associated with the change of the system state variable. In order to implement the minimum resource utilization of the embedded processor while guaranteeing the performance of the system, the event triggered strategy is developed for SMC, which possesses the excellent robustness and saves the energy cost. The stability of the event triggered SMC control law is proved by the Lyapunov function and the minimum control execution time interval is also derived. Finally, the effectiveness of the proposed EERL and the satisfactory performance of the event triggered SMC are demonstrated by the simulation results.
机译:为了减少颤动问题并提高永磁同步电动机(PMSM)系统的速度调节的动态跟踪性能,提出了一种具有增强指数到达律(EERL)的滑模控制(SMC)。与具有常规到达律的SMC相比,基于EERL的SMC使得收敛速度与系统状态变量的变化相关。为了在保证系统性能的同时实现嵌入式处理器的最小资源利用率,针对SMC开发了事件触发策略,该策略具有出色的鲁棒性并节省了能源成本。 Lyapunov函数证明了事件触发的SMC控制律的稳定性,并得出了最小控制执行时间间隔。最后,仿真结果证明了所提出的EERL的有效性和事件触发SMC的令人满意的性能。

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