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Technology for energy-saving railway operation through power-limiting brakes#x2014;A case study at an urban railway

机译:通过限位制动器实现铁路节能运营的技术-以城市铁路为例

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An appropriate driver-assistance in order to use regenerative braking effectively is significant as a feasible method of a smart power management for energy-saving and economical solutions in sustainable electric railway operation. It is substantially significant to suppress braking force in high speed so that the braking force is less than corresponding traction force in the field-weakening speed region so that the whole braking force can be supplied by the regenerative electric brakes without active use of ordinary mechanical brakes. This power limitation in high speed is also beneficial to reduce the probability of regenerative braking cancellation caused by occasional high voltage at pantographs. If one limit the braking force, the total traveling time is increased, but this supplemental running time is relatively small, when the limitation of the deceleration is only applied in high speed and this supplemental time can be absorbed in realistic time margin, which is the difference of the initially scheduled conservative running time and actual one. Authors propose this type of the fully used electric braking pattern as “constant-power braking” or “power-limiting braking” and for realistic application to existing rolling stocks, they also propose a minor variation called as discrete approximate constant-power electric braking. The train driver must start braking operation considerably earlier than conventional ordinary train operation, and the braking force must be precisely controlled depending on the actual train speed timely. Since this driving method is, therefore, inherently more complicated than conventional one, a smart onboard driver-assistance or automatic train stopping control is requested for the realization.
机译:为了有效地使用再生制动,适当的驾驶员辅助作为可持续电力铁路运营中的节能和经济解决方案的智能电源管理的可行方法具有重要意义。抑制高速制动力是非常重要的,以使制动力小于在弱磁速度区域中的相应牵引力,从而可以在不主动使用普通机械制动器的情况下,由再生式电动制动器提供整个制动力。 。高速中的这种功率限制也有利于减少因受电弓偶尔出现高电压而导致的再生制动取消的可能性。如果限制制动力,则总行驶时间会增加,但是,当仅在高速下应用减速度的限制时,该补充运行时间会相对较小,并且可以在实际的时间范围内吸收该补充时间。最初计划的保守运行时间与实际运行时间之差。作者提出了这种类型的完全使用的电动制动模式,称为“恒定功率制动”或“功率限制制动”,并且为了实际应用到现有的机车车辆中,他们还提出了一个较小的变化形式,称为离散近似恒定功率制动。火车驾驶员必须比传统的普通火车运行早得多地开始制动操作,并且制动力必须根据实际火车速度及时地精确控制。因此,由于该驾驶方法本质上比传统的驾驶方法复杂,因此需要智能的车载驾驶员辅助或自动火车停止控制来实现。

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