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Distributed Energy-Saving Dynamic Matrix Control of Multi-locomotive Traction Heavy Haul Train

机译:多机车牵引重型列车的分布式节能动态矩阵控制

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Due to the heavy haul train's force condition is far more complex than the ordinary train, broken hook and decoupling situation will become potential danger in the operation of the train. The energy-saving operation of heavy haul train is of great importance for rail transport. In this paper, we will study the distributed co-control of heavy haul train from the aspects of reducing the load-bearing force during the operation of heavy haul train and reducing the energy consumption of heavy haul train. It is of great importance to ensure the safe and stable operation and energy saving operation of heavy haul train. In this paper, simulink is used to build the multi-locomotive multi-particle heavy haul train dynamic model. Based on the dynamic matrix control (DMC) algorithm to establish the multi-locomotive multi-particle heavy haul train dynamic matrix control system, the velocity curve is tracked and controlled. The coupler force, running displacement and energy consumption are obtained. The simulation results are compared with the results which under the PID control system.
机译:由于重载火车的力量,比普通火车更复杂,破碎的钩子和去耦的情况将成为火车的运作中的潜在危险。重箱列车的节能运行对于铁路运输具有重要意义。在本文中,我们将从重箱列车运行过程中减少承载力的各个方面研究重型运输火车的分布式共同控制,并降低重箱列车的能量消耗。确保重单据列车的安全稳定运行和节能运行是非常重要的。在本文中,Simulink用于构建多机车多粒子重载列车动态模型。基于动态矩阵控制(DMC)算法来建立多机车多粒子重型HEALUL列车动态矩阵控制系统,跟踪和控制速度曲线。获得耦合力,运行位移和能量消耗。将模拟结果与PID控制系统下的结果进行了比较。

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