Title :
OTRA-THS MAC to reduce Power Outage Data Collection Latency in a smart meter network
Author :
Garlapati, S. ; Kuruganti, Teja ; Buehrer, M.R. ; Reed, Jeff H.
Author_Institution :
Dept. of Electr. & Comput. Eng., Virginia Tech, Blacksburg, VA, USA
Abstract :
The deployment of advanced metering infrastructure by electric utilities poses unique communication challenges, particularly as the number of meters per aggregator increases. When there is a power outage, a smart meter tries to report it instantaneously to the electric utility. In a densely populated residential/industrial locality, it is possible that a large number of smart meters simultaneously try to get access to the communication network to report the power outage. If the number of smart meters is very high on the order of tens of thousands (metropolitan areas), the power outage data flooding can lead to Random Access CHannel (RACH) congestion. Several utilities are considering the use of cellular network for smart meter communications. In 3G/4G cellular networks, RACH congestion not only leads to collisions, retransmissions and increased RACH delays, but also has the potential to disrupt the dedicated traffic flow by increasing the interference levels (3G CDMA). In order to overcome this problem, in this paper we propose a Time Hierarchical Scheme (THS) that reduces the intensity of power outage data flooding and power outage reporting delay by 6/7th, and 17/18th when compared to their respective values without THS. Also, we propose an Optimum Transmission Rate Adaptive (OTRA) MAC to optimize the latency in power outage data collection. The analysis and simulation results presented in this paper show that both the OTRA and THS features of the proposed MAC results in a Power Outage Data Collection Latency (PODCL) that is 1/10th of the 4G LTE PODCL.
Keywords :
3G mobile communication; 4G mobile communication; access protocols; cellular radio; code division multiple access; power system reliability; radiofrequency interference; smart meters; telecommunication congestion control; telecommunication power management; wireless channels; 3G CDMA; 3G-4G cellular networks; 4G LTE PODCL; OTRA-THS MAC; RACH congestion; THS; cellular network; electric utilities; interference levels; optimum transmission rate adaptive; power outage data collection latency; random access channel congestion; smart meter communications; smart meter network; time hierarchical scheme; traffic flow; Data collection; Equations; Interference; Mathematical model; Power system faults; Power system restoration; Smart grids;
Conference_Titel :
Computing, Networking and Communications (ICNC), 2014 International Conference on
Conference_Location :
Honolulu, HI
DOI :
10.1109/ICCNC.2014.6785435