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首页> 外文期刊>Journal of Computational Methods in Sciences and Engineering >Evaluation of subway passengers transfer hub congestion based on queuing model and TOPSIS method
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Evaluation of subway passengers transfer hub congestion based on queuing model and TOPSIS method

机译:基于排队模型和TOPSIS方法的地铁乘客转移集线器堵塞的评价

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摘要

To scientifically and reasonably evaluate and pre-warn the congestion degree of subway transfer hub, and effectively know the risk of subway passengers before the congestion time coming. We analyzed the passenger flow characteristics of various service facilities in the hub. The congested area of the subway passenger flow interchange hub is divided into queuing area and distribution area. The queuing area congestion evaluation model selects M/M/C and M/G/C based on queuing theory. The queuing model and the congestion evaluation model of the distribution area select the TOPSIS (Technique for Order Preference by Similarity to Ideal Solution) method. Queue length and waiting time are selected as the evaluation indicators of congestion in the queuing area, and passenger flow, passenger flow density and walking speed are selected as the evaluation indicators of congestion in the distribution area. And then, K-means cluster analysis method is used to analyze the sample data, and based on the selected evaluation indicators and the evaluation model establishes the queuing model of the queuing area and the TOPSIS model of the collection and distribution area. The standard value of the congestion level of various service facilities and the congestion level value of each service facility obtained from the evaluation are used as input to comprehensively evaluate the overall congestion degree of the subway interchange hub. Finally we take the Xi'an Road subway interchange hub in Dalian as empirical research, the data needed for congestion evaluation was obtained through field observations and questionnaires, and the congestion degree of the queue area and the distribution area at different times of the workday was evaluated, and the congestion of each service facility was evaluated. The grade value is used as input, and the TOPSIS method is used to evaluate the degree of congestion in the subway interchange hub, which is consistent with the results of passenger congestion in the questionnaire, which verifies the feasibility of the evaluation model and method.
机译:为了科学合理地评估和预发起地铁传输枢纽的拥堵程度,并有效地了解在拥堵时间之前的地铁乘客的风险。我们分析了集线器中各种服务设施的乘客流动特性。地铁乘客流量交换中心的拥挤区域分为排队区和分配区域。排队区域拥塞评估模型基于排队理论选择M / M / C和M / G / C.分布区域的排队模型和拥塞评估模型选择TOPSIS(通过相似性与理想解决方案的顺序偏好)方法。选择队列长度和等待时间被选择为排队区域中拥塞的评估指标,以及客流,客流密度和步行速度被选为分布区域中拥塞的评估指标。然后,K-means集群分析方法用于分析样本数据,并基于所选择的评估指标,评估模型建立了排队区域的排队模型和集合和分配区域的Topsis模型。各种服务设施的拥塞水平的标准值和从评估中获得的每个服务设施的拥塞水平值被用作输入,以全面评估地铁交换中心的整体拥塞程度。最后,我们乘坐西安道路地铁交流中心作为实证研究,通过现场观测和问卷获得拥堵评估所需的数据,以及工作日不同时间的队列区域和分布区域的拥塞程度评估,评估每个服务设施的拥塞。等级值用作输入,并使用TOPSIS方法来评估地铁交换中心中的拥塞程度,这与调查问卷中的乘客拥塞结果一致,这验证了评估模型和方法的可行性。

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