DocumentCode
3562527
Title
Exploring the gain of Opportunistic Routing in wireless Multicast
Author
Tan Le ; Yong Liu
Author_Institution
Dept. of Electr. & Comput. Eng., Polytech. Inst. of NYU, New York, NY, USA
fYear
2014
Firstpage
506
Lastpage
511
Abstract
Opportunistic Routing (OR) has recently been proposed to improve the efficiency of unicast in multi-hop wireless networks. OR exploits the broadcast nature of wireless transmission medium and opportunistically selects a relay path to deliver a packet to its receiver. In this paper, we explore the gain of adopting OR in wireless multicast. The main challenge is to efficiently share opportunistic relay paths between multiple receivers. We proposed a scheme in [1] named Minimum Steiner Tree with Opportunistic Routing (MSTOR). In MSTOR, the source and receivers are connected by a Steiner tree. Packets are transmitted using Unicast OR on each link of the tree. MSTOR does not exploit opportunistic receptions cross different links in the tree. In this paper, we propose a Multicast OR (MOR) algorithm follow another approach. Starting from the source, MOR opportunistically employs a set of forwarders to push a packet closer to all receivers round-by-round. Each forwarder is responsible for sending the packet to a subset of receivers, and transmits the packet once each round. Based on packet receptions at the end of each round, a new forwarder set is constructed to maximize the Expect Transmission Advancement (ETA) towards all receivers. We study the performance improvement of MSTOR and MOR using numerical simulations. Our results demonstrate that both MOR and MSTOR can achieve a much higher multicast efficiency than the original Unicast OR and the traditional minimum multicast-tree based schemes. MOR constantly achieves significant transmission cost savings in all studied cases.
Keywords
multicast communication; numerical analysis; radio networks; radio receivers; radio reception; relay networks (telecommunication); telecommunication network routing; ETA; MOR algorithm; MSTOR; expect transmission advancement; minimum Steiner tree with opportunistic routing; multicast OR algorithm; multihop wireless multicast network; multiple receiver; numerical simulation; opportunistic relay path selection; unicast OR algorithm; wireless multicast; wireless transmission medium; Receivers; Relays; Routing; Silicon; Transmitters; Unicast; Wireless communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Technologies for Communications (ATC), 2014 International Conference on
Print_ISBN
978-1-4799-6955-5
Type
conf
DOI
10.1109/ATC.2014.7043441
Filename
7043441
Link To Document