TY - GEN
T1 - Anomaly resilient node placement approach for pipelines monitoring
AU - Baroudi, Uthman
AU - Albaseer, Abdullatif
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2017/7/19
Y1 - 2017/7/19
N2 - Wireless sensor network has proven to be a good candidate for many monitoring applications such as habitat monitoring, structural health monitoring, pipeline monitoring, etc. Pipeline monitoring is a challenging application where the sensors are placed in a linear topology. This linear topology requires careful attention in placing sensors to ensure robustness against anomaly, minimize the energy consumption and maximize the network lifetime. This paper investigates this problem by improving and evaluating the performance of two greedy node placement approaches. In contrast to existing work, we have validated experimentally the 31 power levels of CC2420 TelosB chipon and their corresponding transmission ranges. Having more power-level resolution yields less energy consumption and longer lifetime compared to traditional 8 power levels. Extensive simulation and real experiments have been conducted. The results demonstrate 23% extension in the lifetime when all power levels are adopted.
AB - Wireless sensor network has proven to be a good candidate for many monitoring applications such as habitat monitoring, structural health monitoring, pipeline monitoring, etc. Pipeline monitoring is a challenging application where the sensors are placed in a linear topology. This linear topology requires careful attention in placing sensors to ensure robustness against anomaly, minimize the energy consumption and maximize the network lifetime. This paper investigates this problem by improving and evaluating the performance of two greedy node placement approaches. In contrast to existing work, we have validated experimentally the 31 power levels of CC2420 TelosB chipon and their corresponding transmission ranges. Having more power-level resolution yields less energy consumption and longer lifetime compared to traditional 8 power levels. Extensive simulation and real experiments have been conducted. The results demonstrate 23% extension in the lifetime when all power levels are adopted.
KW - Equal-Power Placement
KW - Pipeline Monitoring
KW - TelosB
KW - WSN
UR - https://www.scopus.com/pages/publications/85027862036
U2 - 10.1109/IWCMC.2017.7986305
DO - 10.1109/IWCMC.2017.7986305
M3 - Conference contribution
AN - SCOPUS:85027862036
T3 - 2017 13th International Wireless Communications and Mobile Computing Conference, IWCMC 2017
SP - 311
EP - 316
BT - 2017 13th International Wireless Communications and Mobile Computing Conference, IWCMC 2017
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 13th IEEE International Wireless Communications and Mobile Computing Conference, IWCMC 2017
Y2 - 26 June 2017 through 30 June 2017
ER -