Title :
SankatEdge: A distributed network edge infrastructure framework for disaster recovery
Author :
Krishnaswamy, Dilip ; Krishnan, Ram ; Qamar, Asif ; Rajagopal, Karthikeyan
Author_Institution :
IBM Res., Yorktown Heights, NY, USA
Abstract :
This paper describes a robust, distributed, virtualized fault-tolerant framework for rapid response to catastrophic events such as earthquakes, land-slides, flooding, fire, and epidemics. The approach is distinguished in that fault tolerance in computing, communications, and storage, and the availability of relevant information content at the edge specific to the disaster scenario and location is ensured. The core themes of the framework are the prepositioning of a rich body of pertinent knowledge to facilitate helpers in a disaster area, and the rapid establishment of ad-hoc wireless networks to ensure that high levels of communication and coordination prevails in the response team, and the affected population. The paper suggests the availability of dedicated servers, local servers, cloud servers, and dynamically deployable servers, capable of support disaster edge services, with a fault-tolerant infrastructure capable of supporting and sharing computing, communications, and storage resources across the network. Virtualization of disaster edge services can be support on such servers if desired. Disaster edge services can be made available in a dormant mode of operation ready to respond to a catastrophe when needed. Adaptation of the proposed system to emerging Network Functions Virtualization (NFV) scenarios is described as well.
Keywords :
ad hoc networks; business continuity; cloud computing; emergency management; fault tolerant computing; network servers; virtualisation; NFV scenarios; SankatEdge; ad-hoc wireless networks; catastrophic events; cloud servers; communications; computing; dedicated servers; disaster area; disaster edge service virtualization; disaster recovery; distributed fault-tolerant framework; distributed network edge infrastructure framework; dynamically deployable servers; earthquakes; epidemics; fault tolerance; fault-tolerant infrastructure; fire; flooding; land-slides; local servers; network functions virtualization scenarios; rapid response; robust fault-tolerant framework; storage; virtualized fault-tolerant framework; Ad hoc networks; Educational institutions; Fault tolerance; Fault tolerant systems; Portals; Servers; Wireless communication; Disaster Edge Services; Disaster Recovery; Distributed Networks; Edge Networks; Edge Storage; Fault Tolerance; Network Functions Virtualizaiton (NFV); Virtualization; Wireless Distributed Computing;
Conference_Titel :
Global Humanitarian Technology Conference - South Asia Satellite (GHTC-SAS), 2014 IEEE
Conference_Location :
Trivandrum
Print_ISBN :
978-1-4799-4098-1
DOI :
10.1109/GHTC-SAS.2014.6967586