DocumentCode :
270570
Title :
Advanced metering infrastructure performance using European low-voltage power line communication networks
Author :
Matanza, Javier ; Alexandres, Sadot ; Rodríguez-Morcillo, Carlos
Author_Institution :
Autom. & Electr. Dept., ICAI Sch. of Eng., Madrid, Spain
Volume :
8
Issue :
7
fYear :
2014
fDate :
May 6 2014
Firstpage :
1041
Lastpage :
1047
Abstract :
Power line communication has recently attracted the attention of energy companies as a useful and natural technology for building the advanced metering infrastructure. In this context, device language message specification/companion specification for energy metering (DLMS/COSEM) is an increasingly popular standardised application protocol for communication between utilities and their customers. This study analyses the communication performance that can be expected when using the power line communication technology, powerline intelligent metering evolution (PRIME), to send DLMS/COSEM messages. Physical phenomena - such as background and impulsive noise sources, channel attenuation and multi-path effect - are taken into account during the first step in the evaluation of this technology´s communication performance in the physical layer. This metric is then used in upper layers to compute the packet error rate. An analysis is carried out at the application layer in terms of expected latency in different communication environments. Several simulations are performed in a European low-voltage topology to compute the number of metres that can be read within 15 min. These simulations were carried out using MATLAB and OMNeT++ software.
Keywords :
carrier transmission on power lines; power meters; protocols; telecommunication network topology; COSEM; DLMS; European low-voltage power line communication network; European low-voltage topology; MATLAB software; OMNeT++ software; advanced metering infrastructure; background noise source; channel attenuation; device language message specification; energy company; impulsive noise source; multipath effect; packet error rate; popular standardised application protocol; powerline intelligent metering evolution; specification-companion specification for energy metering; time 15 min;
fLanguage :
English
Journal_Title :
Communications, IET
Publisher :
iet
ISSN :
1751-8628
Type :
jour
DOI :
10.1049/iet-com.2013.0793
Filename :
6809384
Link To Document :
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