Title :
Cross-Layer Optimized Video Streaming Over Wireless Multihop Mesh Networks
Author :
Andreopoulos, Yiannis ; Mastronarde, Nicholas ; Van der Schaar, Mihaela
Author_Institution :
Dept. of Electr. Eng., California Univ., Los Angeles, CA
Abstract :
The proliferation of wireless multihop communication infrastructures in office or residential environments depends on their ability to support a variety of emerging applications requiring real-time video transmission between stations located across the network. We propose an integrated cross-layer optimization algorithm aimed at maximizing the decoded video quality of delay-constrained streaming in a multihop wireless mesh network that supports quality-of-service. The key principle of our algorithm lays in the synergistic optimization of different control parameters at each node of the multihop network, across the protocol layers-application, network, medium access control, and physical layers, as well as end-to-end, across the various nodes. To drive this optimization, we assume an overlay network infrastructure, which is able to convey information on the conditions of each link. Various scenarios that perform the integrated optimization using different levels ("horizons") of information about the network status are examined. The differences between several optimization scenarios in terms of decoded video quality and required streaming complexity are quantified. Our results demonstrate the merits and the need for cross-layer optimization in order to provide an efficient solution for real-time video transmission using existing protocols and infrastructures. In addition, they provide important insights for future protocol and system design targeted at enhanced video streaming support across wireless mesh networks
Keywords :
access protocols; quality of service; radio networks; real-time systems; telecommunication network topology; video coding; video streaming; cross-layer optimization; medium access control; protocol layer; quality-of-service; real-time video transmission; video decoding; video streaming; wireless multihop mesh network; Access protocols; Decoding; Media Access Protocol; Mesh networks; Physical layer; Quality of service; Spread spectrum communication; Streaming media; Wireless communication; Wireless mesh networks; Cross-layer strategies; distributed video streaming optimization; quality-of-service (QoS); wireless mesh networks;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2006.881614