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Tractive power supply at German Federal Railway's 400 km/h runs

机译:德国联邦铁路以400 km / h的速度运行时的牵引电源

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A short review is given of the overhead catenary system used for several high-speed lines and of novel high-performance pantographs. The characteristic data of the trial section are described. Upgrading of the catenary and using a novel pantograph enabled record speed on rails (406.9 km/h) to be attained. Advanced measuring devices were used to supervise the run of the pantograph and the behavior of the catenary. The monitored data proved that the tractive power was reliably transmitted to the vehicle even at the peak speed. The design speed of the catenary was 250 km/h. Tests carried out under the catenary and the high-speed runs demonstrated the effectiveness of the design. They proved that in regular service, speeds up to 300 km/h will not cause any reductions of the quality of contact between the pantograph and the overhead catenary. The topography of the trial section, the limited superelevation of the rail, and the power capacity of the train determined the achieved speed. The catenary would have been suitable for a further increase in speed.
机译:简要回顾了用于多条高速线路的架空接触网系统和新型高性能受电弓。描述了试验部分的特征数据。悬链线的升级和使用新颖的受电弓,可以达到创纪录的铁轨速度(406.9 km / h)。先进的测量设备被用来监督受电弓的运行和悬链线的行为。监测数据证明,即使在峰值速度下,牵引力也能可靠地传输到车辆。悬链线的设计速度为250 km / h。在悬链线和高速运行下进行的测试证明了该设计的有效性。他们证明,在常规服务中,高达300 km / h的速度不会降低集电弓与架空接触网之间的接触质量。试验路段的地形,铁路有限的超高和火车的动力容量决定了所达到的速度。悬链线将适合进一步提高速度。

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