A Framework combining Agile, User-centered design and Service Oriented Architecture approaches for Collaborative Disaster Management system Design

Author(s):  
Christophe Kolski ◽  
Djilali Idoughi ◽  
Karima Ait Abdelouhab
2021 ◽  
Vol 331 ◽  
pp. 02015
Author(s):  
Delfiyanti ◽  
Magdariza

Southeast Asia was in a natural disaster thus the management was supposed to be a priority to the existing states in this territory. It is the most vulnerable to disaster in the world. By then, the member states of ASEAN agree to issue the regulation for disaster management, ASEAN Agreement on Disaster Management and Emergency Response (AADMER) that in forwarding established ASEAN Coordinating Centre for Humanitarian Assistance on Disaster Management (AHA Centre). It is facilitating cooperation and coordination for disaster management in the ASEAN territory. The organization was established in Indonesia as a member state with potential disaster. To reinforce the regulation and disaster management system, the government issues Act No.24 of 2007 on disaster management as the base and manual. The policy refers to the activities implemented immediately for an accident in control arising worst impact, involving rescue and evacuation of the victim, properties, compliance of demand, shelter, refugees handling, and facilities-infrastructure restoration. Moreover, the Act regulating disaster mitigation-based layout system set in an attempt to improve safety and living comfort.


2011 ◽  
pp. 678-693
Author(s):  
Ishan Bhalla ◽  
Kamlesh Chaudhary

Traffic Management System (TMS) is a possible implementation of a Green IT application. It can have direct impact on reducing the greenhouse gases. The focus of this report is to illustrate how event driven SOA design principles can be applied in designing traffic management system. It also discusses how cloud computing concept can be used for TMS application. Traffic during peak hours is a problem in any major city where population growth far exceeds the infrastructure. Frequent stop and start of the cars on the heavy traffic roads and slow moving traffic causes greater fuel consumption, which results in greater emission of carbon gases. If efficient traffic management system can speed up the traffic average speed it will help reduce the carbon emission. As the WiMAX technology reaches maturity and achieves greater reliability and speed for wireless data transmissions new mobile applications are possible. Traffic Management System is one such example. WiMAX can facilitate communication to and from fast moving cars. WiMAX combined with GPS (Global Positioning System) technology can facilitate building an efficient traffic management system. The authors have also discussed various scenarios where Cloud computing technology can be utilised resulting in further optimisation of the computing resources and therefore reducing the carbon emission.


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