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A Novel Control Approach: Combination of Self-tuning PID and PSO-Based ESO

机译:一种新颖的控制方法:自调整PID和基于PSO的组合

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This study focuses on the steady speed control of brush-less DC motor with load torque disturbance from the cam and spring mechanism. Due to the nonlinearity and complexity of the load torque, the control system proposed in this paper is divided into the inner-loop compensator, which is to feed-forward compensate the disturbance, and the outer-loop controller. The inner-loop compensator uses a nonlinear extended state observer (ESO) to compensate the actual system as a nominal model, and the outer-loop pole assignment self-tuning PID controller is used to stabilize the nonlinear nominal model. Since a set of suitable nonlinear ESO parameters are difficult to get normally, particle swarm optimization (PSO) is employed to optimize the observer. The simulation results with high precision verify the effectiveness of the proposed control system.
机译:本研究专注于刷子较少直流电动机与凸轮和弹簧机构的负载扭矩扰动的稳定控制。由于负载扭矩的非线性和复杂性,本文提出的控制系统被分成内环补偿器,该补偿器是前馈补偿干扰和外环控制器。内圈补偿器使用非线性扩展状态观察者(ESO)来补偿实际系统作为标称模型,并且外环极值自调整PID控制器用于稳定非线性标称模型。由于一组合适的非线性ESO参数难以正常,因此采用粒子群优化(PSO)来优化观察者。具有高精度的仿真结果验证了所提出的控制系统的有效性。

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