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Fast and accurate speed regulation of brushless DC motor servo systems via robust composite nonlinear control

机译:通过坚固的复合非线性控制快速准确地调速无刷直流电机伺服系统

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摘要

A parameterized design of speed servo controller for brushless DC motors is presented based on a robust composite nonlinear control framework. The servo controller consists of a linear control part for achieving fast response, a nonlinear feedback part for suppressing the overshoot, and a disturbance compensation mechanism for erasing the steady-state error. A reduced-order extended state observer is adopted to estimate the un-measurable state variables and unknown disturbance. Simulations are first carried out in MATLAB/Simulink, followed by real-time experiment using a TMS320F28335 digital signal controller board. The results confirm that the proposed control scheme can achieve fast, smooth and accurate tracking of target speed, and has a good performance robustness against the load disturbance and parameter variations.
机译:基于坚固的复合非线性控制框架,提出了一种无刷直流电动机速伺服控制器的参数化设计。伺服控制器包括用于实现快速响应的线性控制部分,用于抑制过冲的非线性反馈部分,以及用于擦除稳态误差的干扰补偿机构。采用减少的扩展状态观察者来估计未测量的状态变量和未知干扰。使用TMS320F28335数字信号控制器板,首先在MATLAB / Simulink中进行仿真,然后是实时实验。结果证实,所提出的控制方案可以实现快速,光滑和准确的目标速度跟踪,并且对负载干扰和参数变化具有良好的性能鲁棒性。

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