Title :
Cooperation Achieves Optimal Multicast Capacity-Delay Scaling in MANET
Author :
Wang, Xinbing ; Peng, Qiuyu ; Li, Yingzhe
Author_Institution :
Dept. of Electron. Eng., Shanghai Jiao Tong Univ., Shanghai, China
fDate :
10/1/2012 12:00:00 AM
Abstract :
In this paper, we focus on capacity-delay tradeoffs for multicast traffic pattern. Under the assumption that n nodes move in a unit square according to an i.i.d. mobility model, with each serving as a source that sends identical packets to k destinations, we propose four schemes of which the achievable capacity λ and delay D are analyzed: (1) 2-hop noncooperative non-redundancy scheme, (2) 2-hop noncooperative redundancy scheme, (3) 2-hop cooperative non-redundancy scheme, (4) 2-hop cooperative redundancy scheme. Compared with non-cooperative scheme with capacity delay tradeoff λ = O( E[D]/nk log k) first developed in [5], cooperation among destination nodes achieves optimal capacity delay tradeoff λ = O(E[D]/n log k) in cell partitioned network. With intelligent cooperation, each destination acts equivalently as relay and helps other destinations get more opportunities of receiving packets with capacity sacrificed to a addition, our redundancy schemes also allow delay under Θ(√n) log k factor compared with unicast in [3] under the same delay. In achievable, which is the minimum delay under the schemes of [3],[5].
Keywords :
cellular radio; cooperative communication; mobile ad hoc networks; multicast communication; telecommunication network reliability; telecommunication traffic; 2-hop cooperative nonredundancy scheme; 2-hop cooperative redundancy scheme; 2-hop noncooperative nonredundancy scheme; 2-hop noncooperative redundancy scheme; MANET; cell partitioned network; destination node; intelligent cooperation; mobile ad hoc network; mobility model; multicast traffic pattern; optimal capacity delay tradeoff; optimal multicast capacity-delay scaling; receiving packet; Delay; Markov processes; Mobile ad hoc networks; Receivers; Redundancy; Relays; Unicast; Capacity; MANET; cooperation; multicast;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2012.081512.110535