Title
Delay and Capacity Analysis in MANETs with Correlated Mobility and -Cast Relay
Abstract
Many studies have presented the order sense results of information transmission capacity and packet delivery delay in mobile ad hoc networks (MANETs). To achieve the fundamental understanding of MANETs, we focus on deriving the closed-form expressions of the network capacity and end-to-end delay. A MANET with the generalized correlated mobility model is considered in this paper, where the mobility of nodes clustered in one group is confined within a specified area, and multiple groups move uniformly across the network. We also leverage limited packet redundancy to speed up the packet transmission, i.e., each source node is allowed to distribute at most f copies of each packet in its delivery process. Specifically, we first propose an effective multi-hop scheduling-routing scheme under the correlated mobility model, and then develop the closed-form expressions of both per node throughput capacity and expected end-to-end delay. We further explore the tradeoff between throughput capacity and packet delay by using packet redundancy f. The simulation studies validate our theoretical results.
Year
DOI
Venue
2014
10.1109/TPDS.2014.2298014
Parallel and Distributed Systems, IEEE Transactions  
Keywords
Field
DocType
mobile ad hoc networks,mobility management (mobile radio),redundancy,relay networks (telecommunication),scheduling,telecommunication network routing,MANET multihop scheduling-routing scheme,closed-form expression,end-to-end delay,f-cast relay,generalized correlated mobility model,information transmission capacity analysis,mobile ad hoc network throughput,packet delivery delay analysis,packet redundancy,packet transmission tradeoff,Capacity and delay analysis,correlated mobility,mobile ad-hoc networks
Mobile ad hoc network,End-to-end delay,Computer science,Transmission delay,Network packet,Computer network,Mobility model,Real-time computing,Wireless ad hoc network,Throughput,Processing delay,Distributed computing
Journal
Volume
Issue
ISSN
25
11
1045-9219
Citations 
PageRank 
References 
2
0.37
15
Authors
4
Name
Order
Citations
PageRank
Chen Wang139.53
Baoliu Ye221232.11
Xiaoliang Wang39124.74
Song Guo43431278.71