轨道数量和轨道容量有限的编组站分拣策略研究

IF 2.7 Q3 TRANSPORTATION
Max Zien , Thomas Kirschstein , Christian Bierwirth
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引用次数: 0

摘要

在编组站,货车被从进站列车分拣到出站列车,以便进一步运输。为了组织一个有效的分流过程,在文献中提出了排序策略。排序策略的应用通常受到分类轨迹数量及其长度的限制。这可能导致难以实现甚至无效的分类计划。为了处理有限的轨道容量,我们将调车过程分解为一系列连续的时间段,类似于进站列车的时间表。在轨道容量不足的情况下,每个时段都采用启发式方法决定入站列车的延迟。这样,排序策略就可以在滚动时间的基础上应用。当一种策略能够在给定的时间范围内建造所有出站列车时,我们就说它解决了一个分流任务。在一项计算研究中,我们研究了五种著名的排序策略对大量分流任务的性能。仿真结果表明,当分类轨迹的数量和长度不同时,分类策略的表现不同。总之,对于一定规模的编组场,我们能够在考虑的一组排序策略中确定最可靠的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on sorting strategies in marshaling yards with a limited number of tracks and track capacity
In marshaling yards, freight wagons are sorted from inbound trains to outbound trains for further transport. To organize an efficient shunting process, sorting strategies are proposed in the literature. The application of sorting strategies is generally restricted by the number of classification tracks and their lengths. This can lead to difficult-to-implement or even inoperative sorting plans. To handle limited track capacity, we decompose the shunting process into a series of consecutive periods of time resembling timetables of inbound trains. A heuristic is used in every period to decide on the postponement of inbound trains when track capacity is scarce. This way, sorting strategies become applicable on a rolling time basis. A strategy is said to solve a shunting task when it enables building all outbound trains within a given time horizon. We examine the performance of five well-known sorting strategies for a large set of shunting tasks within a computational study. The simulation results indicate that the sorting strategies perform differently when numbers and lengths of classification tracks vary. In conclusion, we are able to determine the most reliable strategy among the set of considered sorting strategies for a marshaling yard of a certain size.
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来源期刊
CiteScore
7.10
自引率
8.10%
发文量
41
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