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首页> 外文期刊>Journal of advanced transportation >Virtual Line Shafting-Based Total-Amount Coordinated Control of Multi-Motor Traction Power
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Virtual Line Shafting-Based Total-Amount Coordinated Control of Multi-Motor Traction Power

机译:基于虚拟线路备件的多电机牵引力的总协调控制

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摘要

This paper investigates a virtual line shafting-based total-amount coordinated control method of multi-motor traction power to solve the traffic safety problem caused by train traction power loss. This method considers the total amount instead of the synchronous control amongst single motors in a multi-motor control system. Firstly, a block diagram of the proposed method is built. Secondly, on the basis of this diagram, an accurate system model with parameter perturbations is constructed. Thirdly, a virtual controller is designed to quickly adjust the output torque of the virtual motor and to realise a tracking control of the reference torque. A total-amount coordinated control strategy based on the integral sliding mode is also designed to keep the total traction power of the multi-motor system constant under uncertain and unknown disturbances. Lyapunov stability theory is used to prove the system stability. The simulation and experiment results verify the effectiveness of the virtual controller and the total-amount coordinated control strategy in guaranteeing system robustness under disturbances and parameter perturbations.
机译:本文调查了基于虚拟的基于线备件的全额协调控制方法,用于解决火车牵引力损耗引起的交通安全问题。该方法考虑了多电机控制系统中的单电机中的总量代替同步控制。首先,构建了所提出的方法的框图。其次,在该图的基础上,构造了具有参数扰动的准确系统模型。第三,虚拟控制器旨在快速调整虚拟电机的输出扭矩,并实现参考扭矩的跟踪控制。基于整体滑动模式的总协调控制策略也被设计为在不确定和未知的干扰下保持多电机系统常数的总牵引力。 Lyapunov稳定性理论用于证明系统稳定性。仿真和实验结果验证了虚拟控制器的有效性和总额协调控制策略,保证了在干扰和参数扰动下的系统鲁棒性方面。

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