DocumentCode
162993
Title
Random Linear Network Coding for converge-cast Smart Grid wireless networks
Author
Rajalingham, Gowdemy ; Quang-Dung Ho ; Tho Le-Ngoc
Author_Institution
Dept. of Electr. & Comput. Eng., McGill Univ., Montreal, QC, Canada
fYear
2014
fDate
1-4 June 2014
Firstpage
208
Lastpage
212
Abstract
The power electric grid is undergoing a paradigm shift with the inclusion of information and communication technologies that allow for two-way flow of information, automation and distributed intelligence. A reliable and secure Smart-Grid Communications Network (SGCN), is necessary to achieve the SG goals. In particular, the SG Neighbor Area Network (NAN) poses a communications challenge due to the bottlenecks associated with the converge-cast nature of uplink traffic. This can potentially be addressed through network coding. Therefore, this paper aims to determine the feasibility of Random Linear Network Coding (RLNC) at the SG NAN level. Specifically, RLNC is considered in converge-cast scenarios while both network size and link reliability are varied. This preliminary study suggests that inter-session RLNC does achieve throughput enhancements but at the cost of higher network load. Additionally, performance drops sharply with low link reliabilities due to the lack of partial decoding. Therefore, for large converge-cast networks, as in the case of the SG NAN, network coding that allows for partial decoding operations should be more beneficial.
Keywords
decoding; linear codes; network coding; radio networks; random codes; smart power grids; telecommunication network reliability; telecommunication traffic; SG NAN level; SGCN; converge-cast smart grid wireless networks; distributed intelligence; information and communication technology; inter-session RLNC; link reliability; neighbor area network; network load cost; network size; partial decoding; power electric grid; random linear network coding; secure smart-grid communication network; uplink traffic; Decoding; Encoding; Network coding; Reliability; Smart grids; Throughput; Uplink;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (QBSC), 2014 27th Biennial Symposium on
Conference_Location
Kingston, ON
Type
conf
DOI
10.1109/QBSC.2014.6841215
Filename
6841215
Link To Document