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Building and Analyzing the Robustness of Interdependent Transportation Network for Hazmat Transporting Network and the Connected Traffic Network of Hazmat Transport

机译:建设和分析绣花哈姆达运输网络相互依存运输网络的鲁棒性及危险运输连通交通网络

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Hazardous Materials Transportation Network (HMTN) has very tight coupling with Traffic Flow Network of Hazmat Transportation (TFNHT), We build the interdependent system for the two networks. One of them is the HMTN of Zhangji-agang City, another is generated with power-law parameters which is considered as TFNHT. One node from the HMTN is random failed as initial emergency failure. It has an impact on one dependent node from the TFNHT. The dependent node would give traffic pressure on connected nodes from the HMTN. In order to know the stability and robustness of each single network, we propose the Node Failure Rate (NFR) to show the percentage of non-function with iterations going on. The two variables in simulation are different average degrees of the TFNHT and initial failure of one random selecting node which belongs to the set of different degrees. In terms of the basic data and the simulation results, we found that (1) the high average degree of the TFNHT has more impact on the interdependent network than the low average degree of it. It means that high values of average degree can lead interdependent weakness and instability; (2) We suggest that the node of low degree should be considered as the part of hazmat transportation routes, and it reduces as far as possible selecting the nodes of high degree when we design the HMTN for improving the robustness; (3) In the interdependent transportation network, the HMTN is more stability than the connected TFNHT and the two networks have the same NFR rising trend.
机译:危险材料运输网络(HMTN)具有非常紧密的耦合与Hazmat运输(TFNHT)的交通流网络,我们为两个网络构建相互依存的系统。其中一个是张吉 - 阿加市的HMTN,另一个是由幂律参数产生的,被认为是TFNHT。来自HMTN的一个节点是随机的,因为初始紧急失败失败。它对来自TFNHT的一个依赖节点产生影响。从属节点将为来自HMTN的连接节点上的交通压力。为了了解每个网络的稳定性和稳健性,我们提出了节点故障率(NFR)以显示使用迭代进行的非功能的百分比。模拟中的两个变量是TFNHT的不同平均度和一个随机选择节点的初始失败,属于不同程度的集合。就基本数据和仿真结果而言,我们发现(1)TFNHT的高平均程度对相互依存的网络产生更多的影响而不是其低平均程度。这意味着高度的平均程度可以呈现相互依存的弱点和不稳定性; (2)我们建议应将低程度的节点视为Hazmat运输路线的一部分,并且当我们设计HMTN以改善鲁棒性时,它尽可能减少高度的节点; (3)在相互依存的运输网络中,HMTN比连接的TFNHT更稳定,两个网络具有相同的NFR上升趋势。

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