DocumentCode
1432395
Title
Fundamental Limits of Information Dissemination in Wireless Ad Hoc Networks—Part II: Multi-Packet Reception
Author
Wang, Zheng ; Sadjadpour, Hamid R. ; Garcia-Luna-Aceves, J.J.
Author_Institution
Dept. of Electr. Eng., Univ. of California, Santa Cruz, CA, USA
Volume
10
Issue
3
fYear
2011
fDate
3/1/2011 12:00:00 AM
Firstpage
803
Lastpage
813
Abstract
We present capacity and delay scaling laws for random wireless ad hoc networks under all information dissemination modalities (unicast, multicast, broadcast and anycast) when nodes are endowed with multi-packet reception (MPR) capabilities. Information dissemination modalities are modeled with an (n, m, k)-cast formulation, where n, m, and k denote the number of nodes in the network, the number of destinations for each communication group, and the actual number of communication group members that receives the information (i. e., k ≤ m ≤ n), respectively. We show that Θ(R(n)\\√m/k), Θ(1/k), and Θ(R2(n)) bits per second constitute a tight bound for the throughput capacity of random wireless ad hoc networks under the protocol model when m = O(R-2(n)), Ω(k) = R-2(n)= O(m), and k = Ω(R-2(n)), respectively. R(n) denotes the receiver range which depends on the decoding complexity of the nodes. For the minimum receiver range of Θ(√(log n/n)) to guarantee network connectivity, a gain of Θ(log n) for (n, m, k)-casting is attained with MPR compared to the capacity attained when receivers can decode at most one transmission at a time in . Furthermore, we derive the capacity-delay tradeoff of (n, m, k)-casting when MPR is used. We show that the use of MPR can lead to both increased network capacity and reduced delays in wireless ad hoc networks.
Keywords
ad hoc networks; decoding; protocols; capacity-delay tradeoff; decoding complexity; delay scaling law; information dissemination; information dissemination modality; multipacket reception; network connectivity; protocol model; wireless ad hoc networks; Scaling laws; multi-packet reception; network information theory;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2011.011211.100007
Filename
5696842
Link To Document