2012
DOI: 10.1007/s10479-012-1225-z
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Optimal egress time calculation and path generation for large evacuation networks

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Cited by 12 publications
(4 citation statements)
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“…Therefore, more methods (e.g. Hashemi, Mokarami, & Nasrabadi, ; Lawler, ; Rungta, Lim, & Baharnemati, ) will be explored in future works to solve more complex problems based on this CTDNF‐BSA algorithm, e.g. the case with multi‐sources‐multi‐sinks, dynamic origin‐destination matrices, etc.…”
Section: Discussionmentioning
confidence: 99%
“…Therefore, more methods (e.g. Hashemi, Mokarami, & Nasrabadi, ; Lawler, ; Rungta, Lim, & Baharnemati, ) will be explored in future works to solve more complex problems based on this CTDNF‐BSA algorithm, e.g. the case with multi‐sources‐multi‐sinks, dynamic origin‐destination matrices, etc.…”
Section: Discussionmentioning
confidence: 99%
“…In this stream of research, the methodologies can be roughly classified into two types: mathematical programming and simulation. Mathematical programming methods (especially integer programming) have been widely adopted to select optimal routes for evacuees Kimms 2011, 2012;Goerigk et al 2014;Lv et al 2013;Rungta et al 2012;Shen et al 2015;Saadatseresht et al 2009;Zografos and Androutsopoulos 2008). Bretschneider and Kimms (2011) propose a mixed-integer evacuation model with the objective of minimizing the evacuation time in order to provide reorganization of the traffic routing and enable fast evacuation.…”
Section: Literature Reviewmentioning
confidence: 99%
“…They suggest a heuristic to solve the overall problem. Rungta et al [29] develop a multi-objective network flow model to minimize evacuation time by minimizing the number of evacuation paths. Hadas and Laor [14] formulate a multi-objective network design model to minimize evacuation time and network construction costs, and propose a heuristic to solve the problem.…”
Section: Evacuation Time Estimationmentioning
confidence: 99%