Title :
Efficient Network-Coding-Based Opportunistic Routing Through Cumulative Coded Acknowledgments
Author :
Koutsonikolas, Dimitrios ; Wang, Chih-Chun ; Hu, Y. Charlie
Author_Institution :
Sch. of Electr. & Comput. Eng., Purdue Univ., West Lafayette, IN, USA
Abstract :
The use of random linear network coding (NC) has significantly simplified the design of opportunistic routing (OR) protocols by removing the need of coordination among forwarding nodes for avoiding duplicate transmissions. However, NC-based OR protocols face a new challenge: How many coded packets should each forwarder transmit? To avoid the overhead of feedback exchange, most practical existing NC-based OR protocols compute offline the expected number of transmissions for each forwarder using heuristics based on periodic measurements of the average link loss rates and the ETX metric. Although attractive due to their minimal coordination overhead, these approaches may suffer significant performance degradation in dynamic wireless environments with continuously changing levels of channel gains, interference, and background traffic. In this paper, we propose CCACK, a new efficient NC-based OR protocol. CCACK exploits a novel Cumulative Coded ACKnowledgment scheme that allows nodes to acknowledge network-coded traffic to their upstream nodes in a simple way, oblivious to loss rates, and with negligible overhead. Through extensive simulations and testbed experiments, we show that CCACK greatly improves both throughput and fairness compared to MORE, a state-of-the-art NC-based OR protocol.
Keywords :
linear codes; network coding; routing protocols; telecommunication traffic; wireless mesh networks; CCACK; ETX metric; background traffic; coordination overhead; cumulative coded acknowledgment scheme; cumulative coded acknowledgments; dynamic wireless environments; feedback exchange; forwarding nodes; link loss rates; opportunistic routing protocols; random linear network coding; Encoding; Loss measurement; Propagation losses; Protocols; Throughput; Vectors; Coded feedback; network coding; opportunistic routing; wireless mesh networks (WMNs);
Journal_Title :
Networking, IEEE/ACM Transactions on
DOI :
10.1109/TNET.2011.2111382