DocumentCode :
3602393
Title :
On Multicast Capacity and Delay in Cognitive Radio Mobile Ad Hoc Networks
Author :
Jinbei Zhang ; Yixuan Li ; Zhuotao Liu ; Fan Wu ; Feng Yang ; Xinbing Wang
Author_Institution :
Dept. of Electron. Eng., Shanghai Jiao Tong Univ., Shanghai, China
Volume :
14
Issue :
10
fYear :
2015
Firstpage :
5274
Lastpage :
5286
Abstract :
In this paper, we focus on the capacity and delay tradeoff for multicast traffic pattern in cognitive radio mobile ad hoc networks (MANETs). In our system model, the primary network consisting of n primary nodes overlaps with the secondary network consisting of m secondary nodes in a unit square. Assume that all nodes move according to an independent and identically distributed mobility model, and each primary node serves as a source that multicasts its packets to kp primary destination nodes, whereas each secondary source node multicasts its packets to ks secondary destination nodes. Under the cell partitioned network model, we study the capacity and delay for the primary networks under two communication schemes, i.e., noncooperative scheme and cooperative scheme. The communication pattern considered for the secondary network is cooperative scheme. Given that m = nβ (β > 1), we show that per-node capacities O(1/kp) and O(1/ks) are achievable for the primary network and the secondary network, with average delays Θ(n log kp) and Θ(m log ks), respectively. Moreover, to reduce the average delay in the secondary network, we employ a redundancy scheme and prove that a per-node capacity O(1/ks √m log ks) is achievable with average delay Θ(√m log ks). We find that the fundamental delay-capacity tradeoff in the secondary network is delay/capacity ≥ O(mks log ks) under both cooperative and redundancy schemes.
Keywords :
cognitive radio; cooperative communication; mobile ad hoc networks; mobility management (mobile radio); multicast communication; telecommunication traffic; MANET; average delay reduction; cell partitioned network model; cognitive radio mobile ad hoc networks; cooperative scheme; identically distributed mobility model; independent distributed mobility model; multicast capacity tradeoff; multicast delay tradeoff; multicast traffic pattern; noncooperative scheme; primary network; primary nodes; redundancy scheme; secondary destination nodes; secondary network; secondary source node; unit square; Delays; Interference; Mobile ad hoc networks; Mobile communication; Redundancy; Relays; Throughput; Capacity Scaling; Cognitive Radio; Cognitive radio; Network Delay; capacity scaling; network delay;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2015.2435734
Filename :
7110609
Link To Document :
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