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首页> 外文期刊>American journal of engineering and applied sciences >Measuring the Resiliency of the Manhattan Points of Entry in the Face of Severe Disruption | Science Publications
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Measuring the Resiliency of the Manhattan Points of Entry in the Face of Severe Disruption | Science Publications

机译:面对严重干扰,衡量曼哈顿入境口岸的弹性科学出版物

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> Problem statement: Resilient infrastructure systems are able to continue to provide the expected service levels following disruptive events. Implementing resiliency in infrastructure systems requires knowledge of the current resiliency of the system and a methodology by which different resiliency strategies can be evaluated. In the transportation infrastructure in particular, disruptions cause delays, which will in turn incur substantial economic losses and environmental damages. Approach: The Networked Infrastructure Resiliency framework (NIRA) is proposes to assess the resiliency of the road network that connects Manhattan in New York City to the rest of the regions. The framework proposes to create a network model of the system onto which hypothetical disruptions can be introduced and then to measure resiliency as the impact of disruptions on the performance measures of the system. One of the key performance measures of the transportation infrastructure system is the travel time; hence, the base resiliency of the system is measured as the ratio of the travel time preceding a disruption to the travel time following a disruption. Different resiliency strategies that improve the system
机译: > 问题陈述:弹性基础架构系统能够在发生破坏性事件后继续提供预期的服务级别。在基础架构系统中实现弹性需要了解系统当前的弹性以及可以评估不同弹性策略的方法。特别是在运输基础设施中,中断会导致延误,进而会造成巨大的经济损失和环境破坏。 方法:网络基础设施弹性框架(NIRA)旨在评估连接纽约市曼哈顿与其他地区的道路网络的弹性。该框架建议创建一个系统网络模型,在该模型上可以引入假设的中断,然后将弹性作为中断对系统性能指标的影响进行度量。运输基础设施系统的关键性能指标之一是行驶时间;因此,系统的基本弹性是用中断之前的行进时间与中断之后的行进时间之比来衡量的。改善系统的不同弹性策略

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