Catastrophic disasters cause failure of conventional communication systems where they can be collapsed completely or partially. In such situations disaster relief operations are deployed immediately in order to save human lives. Communication and exchange of Information are extremely vital for disaster response in order to gather information and make important decisions. Hence raises the requirement for rapidly deployable, robust to failures, easily maintainable and service provider independent communication systems. But the feasible technology options are very limited. Use of portable wireless Ad-hoc networks for establishing communication with the aid of existing infrastructure in a post disaster situation in order to coordinate field activities of rescue crews can solve many problems exist. In this paper we have proposed a wireless Ad-hoc network architecture that can be used to establish emergency communication. Core of the network is created using Wi-Fi nodes adopting the Ad-hoc paradigm. Portable wirelesses nodes can be installed in the disaster area where they inter communicate while rescuers and survivors can connect to these nodes using Wi-Fi devices. System is specifically aimed for communication using smart phones as they are common and Wi-Fi capable. At least one of the nodes in an area has a long distance transceiver unit in order to establish communication between the rescue operation and a faraway data center. A prototype system is constructed to evaluate the function of the network and its performance through several disaster applications such as Voice over IP (Internet Protocol), broadcasting messages, peer to peer texting and file transferring.
[1]
Noriki Uchida,et al.
Residents oriented disaster information network
,
2003,
2003 Symposium on Applications and the Internet Workshops, 2003. Proceedings..
[2]
Sachin Garg,et al.
An experimental study of throughput for UDP and VoIP traffic in IEEE 802.11b networks
,
2003,
2003 IEEE Wireless Communications and Networking, 2003. WCNC 2003..
[3]
Fabio Kon,et al.
Is IEEE 802.11 ready for VoIP?
,
2006,
2006 IEEE Workshop on Multimedia Signal Processing.
[4]
Ionut Cardei,et al.
Backup Wi-Fi Ad-Hoc Network for Emergency Response in Scenarios with Sporadic Connectivity and Primary Users
,
2014,
2014 10th International Conference on Mobile Ad-hoc and Sensor Networks.
[5]
Noriki Uchida,et al.
Disaster information system and its wireless recovery protocol
,
2004,
2004 International Symposium on Applications and the Internet Workshops. 2004 Workshops..
[6]
Ramón Agüero,et al.
Behavior of UDP-based applications over IEEE 802.11 wireless networks
,
2001,
12th IEEE International Symposium on Personal, Indoor and Mobile Radio Communications. PIMRC 2001. Proceedings (Cat. No.01TH8598).
[7]
Ieee Staff.
2015 8th International Conference on Ubi Media Computing (UMEDIA)
,
2015
.
[8]
Koichi Gyoda,et al.
Analysis of Ad Hoc Network Performance for Disaster Communication Models
,
2011,
2011 Tenth International Symposium on Autonomous Decentralized Systems.
[9]
Alec Wolman,et al.
Wireless wakeups revisited: energy management for voip over wi-fi smartphones
,
2007,
MobiSys '07.