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Improvements of energy efficiency of urban rapid rail systems

机译:改善城市快速铁路系统的能源效率

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摘要

In general, there are three complementary approaches to energy reduction in urban rail systems operation, such as rapid rail or metro. Firstly, the driving style and timetable of a single train run can be adjusted, so that traction energy consumption is minimal. To implement this strategy in manually operated systems an assistance system would be necessary. Secondly, the use of energy regenerated during braking in the railway network contributes to a further reduction of overall energy consumption. To influence the amount of regenerative energy used by other trains, the optimal choice of the synchronization time between the departures in the two directions is necessary as well as train running time control. The third approach presented deals with strict adaptation of transport supply to demand by using small vehicles and flexible headway scheduling. The operational effort of the railway system can be reduced for a constant or even increasing traffic demand, so that the required traction energy is minimized. An estimation of the potential energy reduction is presented for each strategy by means of simulation and case studies.
机译:通常,在快速铁路或地铁等城市轨道交通系统运营中,有三种互补的节能方法。首先,可以调整单列火车的行驶方式和时间表,从而使牵引能耗最小。为了在手动操作系统中实施该策略,将需要一个辅助系统。其次,使用在铁路网络中制动过程中再生的能量有助于进一步降低总能耗。为了影响其他列车使用的再生能量的数量,在两个方向的出发之间的同步时间的最佳选择以及列车运行时间控制是必要的。提出的第三种方法通过使用小型车辆和灵活的行程安排来严格满足运输需求。对于恒定的或什至增加的交通需求,可以减少铁路系统的运行费用,从而使所需的牵引能量最小化。通过仿真和案例研究,对每种策略的潜在能量减少量进行了估算。

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