There were many challenges existed in the area of MANET environment to do research and innovation. Some of the main areas are routing, data transfer, data acknowledgement, protocol implementation, multi casting, delay management and security etc. Efficient routing protocol is the backbone of MANET to achieve the scalability, reliability and security. Since last decade, many routing protocols and network topologies were introduced in MANETs to improve the efficiency. Earlier researches were concentrated on designing new protocols or updating the existing protocols to made MANET routing more efficient. Keeping in mind the end goal to address the issues in multicasting over MANETs, this theory proposed an Upgraded Scalable Virtual structures based Geographic Multicasting (USVGM) Protocol, which would extent be able to an expansive gathering size and substantial system size and this convention will give effective multicast parcel transmissions in a dynamic versatile specially appointed system condition. USVGM convention is actualized with the two layer design to dodge the participation administration problem. In this paper we propose USVGM prototcol which successfully handles the administration issues in MANETS.
[1]
Yu-Chee Tseng,et al.
Adaptive Approaches to Relieving Broadcast Storms in a Wireless Multihop Mobile Ad Hoc Network
,
2003,
IEEE Trans. Computers.
[2]
Lixia Zhang,et al.
Forwarding Group Multicast Protocol (FGMP) for multihop, mobile wireless networks
,
1998,
Cluster Computing.
[3]
Roberto Beraldi,et al.
A Caching Scheme for Routing in Mobile Ad Hoc Networks and Its Application to ZRP
,
2003,
IEEE Trans. Computers.
[4]
Klara Nahrstedt,et al.
Effective location-guided tree construction algorithms for small group multicast in MANET
,
2002,
Proceedings.Twenty-First Annual Joint Conference of the IEEE Computer and Communications Societies.
[5]
Yu-Chee Tseng,et al.
Adaptive approaches to relieving broadcast storms in a wireless multihop mobile ad hoc network
,
2001,
Proceedings 21st International Conference on Distributed Computing Systems.