DocumentCode :
3613167
Title :
Simulation of low-voltage narrow-band power line communication networks to propagate OpenADR signals
Author :
Matanza, Javier ; Kiliccote, Sila ; Alexandres, Sadot ; Rodriguez-Morcillo, Carlos
Author_Institution :
Dept. of Electron., Autom. & Commun., ICAI Sch. of Eng., Madrid, Spain
Volume :
17
Issue :
6
fYear :
2015
Firstpage :
656
Lastpage :
664
Abstract :
This study analyzes the performance of power-line communications for sending open automated demand response (OpenADR) signals. In particular, we study main channel disturbances that can affect end-to-end communications and which have not been previously studied in detail. Our analysis takes into account physical phenomena, such as background and impulsive noise sources, channel attenuation, and multipath effects, and considers the physical, network, and applications layers of the communications structure. The performance of the physical layer is the basis for computing the packet error rate. In analyzing application performance, we focus specifically on the latency in several communication environments. If a channel is impaired only by background noise, latencies are less than 40 seconds. With the addition of impulsive noise in the channel, this value increases as long as 68 seconds. Using these figures, we find that power-line technology is more suitable for "slow" demand programs, such as day-ahead or day-of curtailments, rather than ancillary services markets, which require near-real-time communication.
Keywords :
carrier transmission on power lines; telecommunication channels; OpenADR signals; ancillary services markets; automated demand response; background noise; channel attenuation; communication environments; communications structure; end-to-end communications; impulsive noise; impulsive noise sources; low-voltage narrow-band power line communication networks; multipath effects; near-real-time communication; power-line technology; Analytical models; Indexes; Mathematical model; Modulation; Noise measurement; Power line communications; Transceivers; Matlab; OMNeT++; OpenADR; PRIME; network performance; power line communications;
fLanguage :
English
Journal_Title :
Communications and Networks, Journal of
Publisher :
ieee
ISSN :
1229-2370
Type :
jour
DOI :
10.1109/JCN.2015.000112
Filename :
7387353
Link To Document :
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