DocumentCode :
3694505
Title :
Incorporating dynamism in emergency route planning problem using immune-based approach
Author :
Mohd Nor Akmal Khalid;Umi Kalsom Yusof
Author_Institution :
School of Computer Sciences, Universiti Sains Malaysia, 11800, USM, Pulau Pinang, Malaysia
fYear :
2015
Firstpage :
160
Lastpage :
165
Abstract :
The occurrence of emergency events tends to spark a very chaotic reaction, inducing a large surge of demand (number of evacuees) which exceeds the available resources (pathway/network). Planning a suitable evacuation route and identifying the shortest evacuation route before the occurrence of extreme events are crucial for an effective evacuation process. Although evacuation plans can be orchestrated in advance, probable crowd dynamics, especially group-based characteristics (e.g. group formation, group relation, group competition, etc.), may occur, rendering unfeasible evacuation plan. Therefore, creating a dynamic and effective emergency route planning (ERP) approach is important for crowd survivability. There are number of ERP approaches have been proposed, which includes mathematical-based approach, heuristic-driven approach, and meta-heuristic approach. Although the meta-heuristic approaches are capable of handling dynamic constraints and produces optimum result, its lack of adoption in the domain of ERP problem serve as an encouragement of applying this approach. Therefore, an integrated evacuation planning approach with dynamism (iEvaP+) is proposed to cater the dynamic of groups in crowd and optimizing the route selection, where the use of immune-based meta-heuristic approach had effectively produces statistically significant results (p-value < 0.5 significance level) against an approach proposed by [1].
Keywords :
"Planning","Heuristic algorithms","Optimization","Immune system","Computers","Computational modeling","Adaptation models"
Publisher :
ieee
Conference_Titel :
Software Engineering and Computer Systems (ICSECS), 2015 4th International Conference on
Type :
conf
DOI :
10.1109/ICSECS.2015.7333102
Filename :
7333102
Link To Document :
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