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A sliding mode speed controller based on novel reaching law of permanent magnet synchronous motor system

机译:基于新型永磁同步电动机系统达标定律的滑模速度控制器

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This paper presents a new control methods based on a novel reaching law to overcome slow convergence rate and severe chattering in sliding mode control of permanent magnet synchronous motors (PMSM). The constant reaching law converges slowly during large systematic errors. Although the power reaching law converges fast during large error, it chatters severely while approaching to the sliding surface. Based on mentioned reaching laws, the state variable has been introduced. It can accelerate the rate of convergence when the system is away from the sliding surface. Furthermore, the stability can be satisfied in a way like constant reaching law when the system approaches to the sliding surface. Simulation results show that the novel reaching law improves dynamic performance and enhances systemic robustness obviously.
机译:本文提出了一种基于新颖的到达律的新控制方法,以克服永磁同步电动机(PMSM)滑模控制中的收敛速度慢和剧烈颤动的问题。在出现较大的系统错误时,不断达到的定律会缓慢收敛。尽管功率到达定律在大误差时会迅速收敛,但在靠近滑动面时会剧烈震颤。根据提到的到达定律,引入了状态变量。当系统远离滑动表面时,它可以加快收敛速度​​。此外,当系统接近滑动表面时,可以通过恒定到达定律的方式来满足稳定性要求。仿真结果表明,新颖的到达律可以明显提高动态性能,增强系统的鲁棒性。

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