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Nonlinear Disturbance Observer-Based Sliding Mode Control for the PMSM with Matched and Mismatched Disturbances

机译:基于非线性干扰观察者的PMSM滑动模式控制,具有匹配和不匹配的干扰

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摘要

High-efficiency permanent-magnet synchronous motor (PMSM) is a key technology to improve the driving range of batteries in electric vehicles, while the mismatched disturbance that is caused by external disturbances and parameter perturbation may easily result in speed fluctuations and overshoot of the PMSM, which further deteriorate the performance and efficiency of batteries. To solve the problem, a novel nonlinear disturbance observer-based sliding mode control (NDO-SMC) is proposed. Compared with the traditional SMC method, the NDO-SMC scheme has better disturbance rejection ability in the presence of matched and mismatched uncertainties and disturbances by introducing the estimation value of the nonlinear disturbance observer in the sliding surface. Furthermore, owing to the compensation of the disturbance observer, the switching gain is only required to be greater than the bound of the disturbance estimation error rather than that of the disturbance; thus, the chattering problem is substantially alleviated. A rigorous stability proof of the whole closed-loop system is given in detail using Lyapunov theory by designing an appropriate Lyapunov function. The simulation results demonstrate the feasibility and superiority of the proposed NDO-SMC strategy.
机译:高效永磁同步电机(PMSM)是改善电动汽车电池驾驶范围的关键技术,而由外部干扰和参数扰动引起的不匹配干扰可能很容易导致PMSM的速度波动和过冲,进一步恶化了电池的性能和效率。为了解决问题,提出了一种新颖的非线性干扰观察者的滑动模式控制(NDO-SMC)。与传统的SMC方法相比,通过引入滑动表面中的非线性干扰观察者的估计值,NDO-SMC方案在存在匹配和不匹配的不确定性和干扰方案中具有更好的扰动能力。此外,由于扰动观测器的补偿,切换增益仅需要大于干扰估计误差而不是干扰的界限;因此,抖动问题基本上缓解。通过设计适当的Lyapunov功能,使用Lyapunov理论详细描述了整个闭环系统的严格稳定性证据。仿真结果表明了所提出的NDO-SMC策略的可行性和优越性。

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