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首页> 外文期刊>Transportation Research Procedia >An Energy-efficient Metro Speed Profiles for Energy Savings: Application to the Valencia Metro
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An Energy-efficient Metro Speed Profiles for Energy Savings: Application to the Valencia Metro

机译:节能的节能地铁速度曲线:在瓦伦西亚地铁中的应用

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Nowadays one of the main priorities for metro line operators is the reduction of energy consumption, due to the environmental impact and economic cost. In order to achieve this objective different strategies can be applied, normally focused into rolling stock, infrastructure and/or operation. Considering short-term measures and related to the traffic operation strategies, different approaches are being researched. One of the most effective strategy which reduce net energy consumption is the use of efficient driving techniques. These techniques produce a speed profile between two stations that requires the minimum net energy consumption, without degrading commercial running times or passenger comfort. In this paper, a computer model for calculating the metro vehicles speed profiles minimizing the energy consumption was developed. The equations considered in the model represent the behavior of a single vehicle operated under manual driving, subject to different constraints such as the headway, cycle time, distances and acceleration limits. The proposed model calculates different commands to be systematically executed by the driver. The resulting simulator has been tuned by means of on board measurements of speed, accelerations and energy consumption obtained along different lines in Metro de Valencia network. For this purpose, different scenarios are analyzed to assess the achievable energy savings. In general terms and comparing with the actual energy consumption, the solutions proposed can reduce the net energy consumption around 19%.
机译:如今,由于对环境的影响和经济成本的原因,减少地铁的能耗是地铁运营商的主要优先考虑之一。为了实现这一目标,可以采用不同的策略,通常将重点放在机车车辆,基础设施和/或运营上。考虑到短期措施并与交通运营策略相关,正在研究不同的方法。减少净能源消耗的最有效策略之一是使用高效的驾驶技术。这些技术可在两个站点之间产生速度曲线,而这需要最小的净能耗,而不会降低商业运行时间或乘客舒适度。在本文中,开发了一种用于计算地铁车辆速度曲线以最小化能耗的计算机模型。模型中考虑的方程式表示在手动驾驶下操作的单个车辆的行为,该行为受诸如行进距离,循环时间,距离和加速度限制等不同约束的约束。提出的模型计算驾驶员要系统执行的不同命令。最终的仿真器已经通过对地铁,巴伦西亚地铁网络沿不同线路获得的速度,加速度和能耗的车载测量进行了调整。为此,将分析不同的方案以评估可实现的节能效果。一般而言,与实际能耗相比,提出的解决方案可以将净能耗降低约19%。

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