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A methodology for development of enterprise architecture of PPDR organisations

 
: Müller, Wilmuth; Reinert, Frank

:
Volltext urn:nbn:de:0011-n-3413800 (74 KByte PDF)
MD5 Fingerprint: 4fb4302869b04130bb0ec31dba1862b9
Erstellt am: 28.5.2015


Arabnia, Hamid R. (Ed.):
International Conference on Software Engineering Research and Practice 2014. Proceedings : Affiliated with WORLDCOMP'14, the World Congress in Computer Science, Computer Engineering, and Applied Computing], July 21 - 24, 2014, Las Vegas, Nevada, USA
Las Vegas: CSREA Press, 2014
ISBN: 1-60132-286-0
S.259-263
International Conference on Software Engineering Research and Practice (SERP) <2014, Las Vegas/Nev.>
World Congress in Computer Science, Computer Engineering, and Applied Computing (WORLDCOMP) <2014, Las Vegas/Nev.>
European Commission EC
FP7; 313296; SALUS
Security And InteroperabiLity in Next Generation PPDR CommUnication InfrastructureS
Englisch
Konferenzbeitrag, Elektronische Publikation
Fraunhofer IOSB ()
architecture framework; public protection & disaster relief; NAF; OSSAF

Abstract
The growing number of events affecting public safety and security (PS&S) on a regional scale with potential to grow up to large scale cross border disasters puts an increased pressure on agencies and organization responsible for PS&S. In order to respond timely and in an adequate manner to such events Public Protection and Disaster Relief (PPDR) organisations need to cooperate, align their procedures and activities, share the needed information and be interoperable.
This paper provides an approach to tackle the above mentioned aspects by defining an Enterprise Architecture (EA) of the organisation and based on this EA define the respective System Architectures. We propose a methodology for the development of EA for PPDR organisations. Our methodology refines architectural artefacts of the OSSAF approach and introduces a lightweight architecture development model relying on capability based planning as the organisational top level approach.

: http://publica.fraunhofer.de/dokumente/N-341380.html