Mobile Communication devices such as cellular phone, laptops, and PDAs are typically equipped with multiple radio access interfaces in the current trend. The opportunity to attach to more than one access network at a time makes users capable of roaming over access technologies and administrative domains seamlessly. Soft HO can easily be implemented and load balancing is possible to leverage when the amount of traffic exceeds the capacity of one single radio access interface. The aim of this Research work is to present the relative presentation of MIP and Seamless IP diversity based Generalised Mobility Architecture using the simulation setup using mSCTP for the video streaming. To set the research work in background, it explains the latest work which has been complete to advance the capability of MIP.
">Mobile Communication devices such as cellular phone, laptops, and PDAs are typically equipped with multiple radio access interfaces in the current trend. The opportunity to attach to more than one access network at a time makes users capable of roaming over access technologies and administrative domains seamlessly. Soft HO can easily be implemented and load balancing is possible to leverage when the amount of traffic exceeds the capacity of one single radio access interface. The aim of this Research work is to present the relative presentation of MIP and Seamless IP diversity based Generalised Mobility Architecture using the simulation setup using mSCTP for the video streaming. To set the research work in background, it explains the latest work which has been complete to advance the capability of MIP.