Methods of Quality of Service Satisfied Multicast Protocol Using Soft Computing Techniques
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Abstract
Mobile Adhoc Networks (MANETs) function using several data rates for Qualityof-
newlineService (QoS)-constrained multimedia transfer will effectively reduce resource
newlineutilization. Multicasting is typically defined as the simultaneous data transfer between the
newlineorigin and multiple targets. To accomplish this, constructing a multicast tree is far more
newlineefficient than independent transmission of similar data between the origin and the targets.
newlineA delay-sensitive multicast routing is required for these transfers because the
newlineneighborhood of a host varies in those networks, One-Hop and end-to-end delays (e2D)
newlineshould be measured during the construction of a delay-sensitive multicast tree which has
newlinehigh complexity issues.
newlineTo address this issue, the Delay-Sensitive Multicast (DSM) routing protocol was
newlineproposed, which estimates one-hop delay based on the busy/idle fraction of the distributed
newlineradio channel. A multicast tree was also built to adjust transmission data rates and reduce
newlineEnd to End Delay (e2D). Different metrics, rather than delay, are required to further
newlineimprove network performance. Taking into account the aforementioned issues, this
newlineresearch work proposes protocols to improve the QoS performance of multicast routing in
newlinemultirate MANETs.
newlineIn DSM protocol, delay will be considered as major aspect to construct a multicast
newlinetree which does not maximize the QoS guarantees of the network. So, this research work
newlineaims to resolve this issue by introducing a new method called QoS-Satisfied Multicast
newlineusing Multiple rate (QSSM-M) routing protocol. This QSSM-M is integrated with an
newlineadditional QoS metrics like bandwidth, packet dropping rate and jitter in which each
newlinemulticast tree can satisfy the predefined rate of the QoS demands. This protocol reduces
newlinethe overall latency and bandwidth usage of each node while ensuring QoS to a requested
newlinetraffic flows.
newlineIn QSSM-M, different QoS parameters were taken into consideration to construct
newlinemany multicast trees and select the path for data transfer according to their QoS demands.
newlineOn the other han