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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Scheduling of the Shuttle Freight Train Services for Dry Ports Using Multimethod Simulation-Optimization Approach
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Scheduling of the Shuttle Freight Train Services for Dry Ports Using Multimethod Simulation-Optimization Approach

机译:使用多立面模拟优化方法对干端到干港的班车货运服务的安排

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This paper introduces a simulation-optimization method for addressing scheduling problems for shuttle freight trains (SFTs) in a shared railway corridor between a seaport and dry port. We use dispatching delays for scheduling the SFT trips so as to not disturb the existing scheduled regular train (SRT) paths. The method employs a multi-method microscopic simulation model and an optimization framework. A swarm-based optimization algorithm is used for finding the best dispatching delays to preserve SRT paths. The method is demonstrated for a railway corridor between the Alsancak seaport and a close-distance dry port. The railway corridor is modeled using a simulation model considering single and double railway tracks, stations, and schedules. By running the simulation-optimization, the SFT freight transport capacity and the quality of the SFT and SRT operations were compared using key performance indicators (number of completed trips and station stops, average trip delay, and average station delay) addressing the throughput and punctuality after the application of dispatching delays. The results show that, by preserving the existing SRT paths, freight transport capacity decreased by 11.1% (from 18 to 16 completed SFT trips) and 13.8% (from 36 to 31 completed SFT trips) for single and couple SFT scenarios, respectively. The methodology also decreased the average SFT station delays by 45.2% and 45.6% for the single and couple SFT scenarios comparing with the unoptimized SFT trips. However, the number of SFT station stops increased by 12.5% and 57.1% for the single and couple SFT scenarios for prioritizing the SRTs. Also after the optimization, the average SFT trip delays decreased by 30.7% and 0.58% for the single and couple SFT scenarios. This study successfully demonstrates that the proposed method can be used for scheduling the SFT trips inside a congested railway corridor and can be implemented as a capacity assessment tool for cyclic SFT service using a series of key performance indicators addressing throughput and punctuality.
机译:本文介绍了一种仿真优化方法,用于解决海港和干港之间共用铁路走廊中的班车货车(SFT)调度问题。我们使用调度延迟来调度SFT跳闸,以便不要打扰现有的预定常规列车(SRT)路径。该方法采用多种方法微观模拟模型和优化框架。基于群的优化算法用于查找保存SRT路径的最佳调度延迟。该方法是在Alsancak海港和紧密干港之间的铁路走廊进行说明。考虑单个铁路轨道,站和时间表,使用模拟模型建模铁路走廊。通过运行仿真优化,使用关键性能指标(已完成的旅行数量和站点,平均跳闸延迟和平均站延迟)进行比较SFT货运传输容量和SRT操作的质量,解决吞吐量和准时性在调度延迟的应用之后。结果表明,通过保留现有的SRT路径,运输能力分别下降了11.1%(从18至16次完成的SFT旅行)和13.8%(从31至31次完成的SFT旅行),分别为单一和耦合的SFT情景。与未优化的SFT旅行相比,该方法还将平均SFT站延迟减少45.2%和45.6%。然而,对于优先顺序排序,SFT站的数量停止增加12.5%和57.1%,用于优先考虑SRT。同样在优化之后,平均SFT行程延迟减少了30.7%,为单身和夫妇SFT方案减少了30.7%和0.58%。本研究成功地展示了所提出的方法可用于调度拥挤的铁路走廊内的SFT跳闸,并且可以使用一系列关键性能指示器寻址吞吐量和准时的循环SFT服务来实现作为循环SFT服务的容量评估工具。

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