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Battery and Accelerating-Catenary Hybrid System for Light Rail Vehicles and Trams

机译:轻轨车辆和电车电池和加速 - 膨胀混合系统

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An electric train is currently one of the best solutions to urban passenger mobility challenges. However, diesel powered trains are still common in low capacity lines on which the density of traffic is insufficient to justify the high fixed cost of railway electrification. In such cases, battery driven trams present an alternative that some railway operators have been opting for. Since rail vehicles are heavy, a high capacity, high voltage traction battery will be required to provide accelerating power. To minimize the peak power that a traction battery has to supply and subsequently the required battery size, this paper presents a battery-catenary hybrid tram system in which a tram accelerates from a station under a 200-meter-long catenary and cruises with traction battery. The tram was modelled and simulated in MATLAB. The traction battery peak power was reduced from 300 kW to 100 kW. This means a significant reduction in the required battery size with just a short catenary. Suggested applications of such a system are, on shuttle lines with few stops and in countries or regions where full railway electrification would mean dominance of diesel trains.
机译:电动火车目前是城市乘客移动性挑战的最佳解决方案之一。然而,柴油动力列车在低容量线上仍然是常见的,其流量密度不足以证明铁路电气化的高固定成本。在这种情况下,电池驱动的电车推出了一些铁路运营商已经选择的另一种选择。由于轨道车辆重,因此需要高容量,高压牵引电池提供加速功率。为了最小化牵引电池必须提供的峰值功率和随后所需的电池尺寸,提出了一种电池电阻式混合动力电车系统,其中电车电车电车系统在200米长的围绕电路台下加速电台和牵引电池的巡航。电车在Matlab中进行了建模和模拟。牵引电池峰值功率从300千瓦降至100kW。这意味着只需短链状所需的电池尺寸就会显着降低。建议的这种系统的应用是在班车线上的梭子线,少数站点或地区或地区,全铁路电气化将意味着柴油列车的主导地位。

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