Isuru Samaraweera, & Sheran Corera. (2007). Sahana victim registries: Effectively track disaster victims. In K. Nieuwenhuis P. B. B. Van de Walle (Ed.), Intelligent Human Computer Systems for Crisis Response and Management, ISCRAM 2007 Academic Proceedings Papers (pp. 17–32). Delft: Information Systems for Crisis Response and Management, ISCRAM.
Abstract: “Disaster management” a key topic these days due to the enormous amount of disasters occurring all over the world tends to focus mainly on the individuals victimized as human lives and living conditions are in jeopardy. During such a disaster scenario there are many different volunteer organizations and volunteers willing to support victims but due to the lack of robust and reliable human computer systems developed for responding and managing disaster aftermaths the efficiency tends to suffer thus crushing down the volunteer efforts drastically. So developing an effective disaster management solution is vital and a computerized registry that captures and handles information on disaster victims can be called the heart of the system due to the significant bearing it has on human lives. Thus one could say that disaster victim registries have a higher significance in a disaster management context. Due to this reason, three such registries have been developed and integrated into the Sahana Disaster Management System namely the Disaster Victim Registry, Missing Person Registry and the Children Registry.
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Connie White, Murray Turoff, & Starr Roxanne Hiltz. (2010). A real time online Delphi Decision System, V 2.0: Crisis management support during extreme events. In C. Zobel B. T. S. French (Ed.), ISCRAM 2010 – 7th International Conference on Information Systems for Crisis Response and Management: Defining Crisis Management 3.0, Proceedings. Seattle, WA: Information Systems for Crisis Response and Management, ISCRAM.
Abstract: The Delphi Decision Maker system has been designed to support the decision making needs of crisis managers, considering factors such as stress, time pressure, information overload, and uncertainty. It has been built as a module for the Sahana Disaster Management system, a free and open source system. The Design Science research paradigm was used in an iterative development process. Triangulation was employed in the evaluation, analyzing the system against the research questions using both qualitative and quantitative statistics as well as proof of concept. Modifications need to be made for real world use. A second version of the system is under development. Research findings and future research are outlined in this work in progress.
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