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基于FA-LESO与改进有限位置集PLL的PMSM无位置传感器控制OA

PMSM Sensorless Control Based on Frequency-Adaptive Linear Extended State Observer and Improved Finite Position Set PLL

中文摘要英文摘要

针对现有线性扩张状态观测器(LESO)在永磁同步电机(PMSM)无传感器控制中对反电动势(BEMF)的估计存在相位滞后和直流误差,以及传统正交锁相环(PLL)在估计转子信息时存在动态误差与参数配置困难的问题,该文提出一种频率自适应扩张状态观测器(FA-LESO)与改进有限位置集锁相环(FPS-PLL)相结合的无位置传感器控制方法.首先,不同于现有局部频率补偿的改进策略,利用二阶广义积分器(SOGI)和内模原理对 LESO 进行重构,设计出具有带通特性的 FA-LESO,能够在有效抑制直流误差和高频噪声的同时,实现对 BEMF 的自适应无滞后估计.此外,通过设计新型等效电压误差构成代价函数,结合割线法改进了 FPS-PLL,无需参数配置,使电机在迭代过程中只有一个收敛值,不会造成错误收敛,同时降低计算量,具有良好的动态响应能力.最后,通过实验验证所提方法的有效性.

Permanent magnet synchronous motor(PMSM)sensorless control systems based on the back electromotive force(BEMF)model exhibit excellent performance in medium-to-high speed ranges.They generally consist of a BEMF observer and a rotor information extractor.The linear extended state observer(LESO)is widely adopted for its simple structure,fast convergence,and low model dependency.However,owing to inverter nonlinearities and current sensor drift,the estimated BEMF inevitably contains interference such as DC bias.Since the LESO has a low-pass characteristic and the BEMF is a sinusoidal signal that varies with speed,amplitude,and phase deviation,DC bias errors arise during estimation.The traditional phase-locked loop(PLL)employs a fixed-gain PI controller,which introduces tracking errors proportional to acceleration under dynamic conditions.Moreover,repeated experiments are required to determine PI parameters,complicating parameter tuning.Therefore,this paper proposes a PMSM sensorless control method based on a frequency-adaptive linear extended state observer(FA-LESO)and an improved finite-position-set phase-locked loop(FPS-PLL). Firstly,the limitations of existing LESO schemes are analyzed.Unlike conventional local frequency compensation strategies,the proposed method employs a second-order generalized integrator(SOGI)to extract signals at specific frequencies and reconstruct the internal disturbance model of the LESO.An FA-LESO with band-pass characteristics is designed to enable unbiased extraction at the center frequency while rapidly attenuating out-of-band components.When the center frequency equals the motor speed,the observer achieves frequency-adaptive,lag-free estimation of the fundamental BEMF signal. Secondly,based on the model-predictive principle,a novel equivalent-voltage error is designed to form a cost function,and the FPS-PLL is improved using the secant method.The new cost function has one single convergence point per iteration,effectively overcoming false convergence caused by conventional cost functions within the angular error range.Moreover,the secant iteration avoids the derivative computation required by the Newton method and the initial-value preprocessing,thereby reducing computational cost and eliminating the need for parameter tuning. Finally,the proposed method is validated on a PMSM test platform using a Links-RT hardware-in-the-loop simulator.Results show that:(1)The FA-LESO achieves frequency-adaptive,lag-free estimation of BEMF signals at different frequencies.Compared with conventional schemes,the BEMF delay is reduced by 40%and 92%at 1 000 r/min and 2 000 r/min,respectively.With its band-pass characteristics,it effectively suppresses high-frequency noise and minimizes the impact of DC errors on position estimation accuracy.(2)The improved FPS-PLL has one convergence point per iteration and attains a theoretical accuracy of 3.52×10-6 rad within five iterations.Compared with the traditional PLL,the proposed method exhibits better dynamic response and requires no parameter tuning.

郭默冉;赵希梅

沈阳工业大学电气工程学院 沈阳 110870沈阳工业大学电气工程学院 沈阳 110870

信息技术与安全科学

永磁同步电机无位置传感器控制频率自适应扩张状态观测器有限位置集锁相环

Permanent magnet synchronous motorsensorless controlfrequency adaptive extended state observerfinite position set phase-locked loop

《电工技术学报》 2026 (16)

5439-5450,12

辽宁省自然科学基金面上项目(2024-MSLH-369)和辽宁省科技厅揭榜挂帅项目(2023JI1/11100004)资助.

10.19595/j.cnki.1000-6753.tces.251299

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