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Robust Control of Railway Traction System

机译:铁路牵引系统的鲁棒控制

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In this paper, a robust control strategy of a railway traction system with induction motor is proposed. The control problem is divided into sub-loops such as, current loop, acceleration loop, speed loop and position loop. A conventional PI controller is designed for the current loop, which is a very fast loop in comparison to the other mechanical loops. A nonlinear PI controller is used to control the acceleration loop. The speed and position loops are controlled via robust PI-PD controllers. The robustness problem is considered both as disturbance rejection, which arise due to resistive forces, and as robustness against uncertainties such as, the mass of the railway vehicle and the wheel diameter. The practical applicability of the method is emphasized via verification and validation steps with realistic constraints on acceleration, jerk, torque and power on a case study. Simulation results reveal that the proposed controller structure is quite effective for a railway traction system.
机译:本文提出了一种具有感应电动机的铁路牵引系统的鲁棒控制策略。控制问题被分成子环路,例如电流环路,加速环,速度环和位置环。传统的PI控制器设计用于电流回路,与其他机械环相比,这是一个非常快的回路。非线性PI控制器用于控制加速循环。速度和位置环通过鲁棒PI-PD控制器控制。鲁棒性问题被认为是扰动抑制,这因电阻力而产生,并且作为防止不确定性的鲁棒性,例如,铁路车辆的质量和车轮直径。通过验证和验证步骤强调了该方法的实际适用性,验证和验证步骤具有关于加速,混蛋,扭矩和电源的逼真约束。仿真结果表明,所提出的控制器结构对于铁路牵引系统非常有效。

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