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Synchronous control system based on wireless data transmission for 50,000-t heavy-haul trains

机译:50,000吨重载列车基于无线数据传输的同步控制系统

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In order to meet the ever-increasing freight capacity demand, operation of heavy-haul freight trains with a 50,000 t capacity has been widely studied for a decade in China. A typical heavy-haul train with a large capacity employs multiple locomotives that are evenly distributed along the train, and each locomotive, or two or more locomotives, hauls a certainamount of freight cars. The synchronicity among locomotives is of great importance to safety. A 50,000-t train developedin China will be pulled by 10 locomotives, and the uneven distribution of traction or brake force, caused by the asynchronous command execution of different locomotives, could eventually lead to severe accidents such as decoupling.This article focuses on how to apply the existing wireless-based multi-locomotive synchronous control system to thetrains with the capacity of 50,000 t. The modular functionality of the control system is introduced, and some methodsaiming to enhance the reliability of wireless communication are discussed. Then four experiments conducted on realtrains or in laboratory are described. Test results show that the wireless synchronous control system can meet the technical requirements of 50,000-t trains and its operation is feasible.
机译:为了满足不断增长的货运能力需求,十年来,在中国已经广泛研究了载运能力为50,000吨的重型货运列车的运行。典型的具有大容量的重载火车采用沿火车均匀分布的多个机车,并且每个机车或两个或多个机车牵引一定数量的货车。机车之间的同步性对安全性至关重要。在中国开发的50,000吨火车将被10辆机车牵引,并且由于不同机车的异步命令执行而导致的牵引力或制动力分配不均,最终可能会导致严重的事故,例如脱钩。将现有的基于无线的多机车同步控制系统应用于容量为50,000吨的列车上。介绍了控制系统的模块化功能,并讨论了一些旨在提高无线通信可靠性的方法。然后描述了在真实火车上或在实验室中进行的四个实验。测试结果表明,该无线同步控制系统可以满足5万吨列车的技术要求,运行可行。

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