TY - GEN
T1 - ASFALT
T2 - 26th IEEE International Symposium on Reliable Distributed Systems, SRDS 2007
AU - Jadliwala, Murtuza
AU - Upadhyaya, Shambhu
AU - Taneja, Manik
PY - 2007
Y1 - 2007
N2 - We consider the problem of robust node deployment and fault-tolerant localization in wireless sensor networks for emergency and first response applications. Signature-based localization algorithms are a popular choice for use in such applications due to the non-uniform nature of the sensor node deployment. But, random destruction/disablement of sensor nodes in such networks adversely affects the deployment strategy as well as the accuracy of the corresponding signature-based localization algorithm. In this paper, we first model the phenomenon of sensor node destruction as a non-homogeneous Poisson process and derive a robust and efficient strategy for sensor node deployment based on this model. Next, we outline a protocol, called Group Selection Protocol, that complements current signature-based algorithms by reducing localization errors even when some nodes in a group are destroyed. Finally, we propose a novel yet simple localization technique, ASFALT, that improves the efficiency of the localization process by combining the simplicity of range-based schemes with the robustness of signature-based ones. Simulation experiments are conducted to verify the performance of the proposed algorithms.
AB - We consider the problem of robust node deployment and fault-tolerant localization in wireless sensor networks for emergency and first response applications. Signature-based localization algorithms are a popular choice for use in such applications due to the non-uniform nature of the sensor node deployment. But, random destruction/disablement of sensor nodes in such networks adversely affects the deployment strategy as well as the accuracy of the corresponding signature-based localization algorithm. In this paper, we first model the phenomenon of sensor node destruction as a non-homogeneous Poisson process and derive a robust and efficient strategy for sensor node deployment based on this model. Next, we outline a protocol, called Group Selection Protocol, that complements current signature-based algorithms by reducing localization errors even when some nodes in a group are destroyed. Finally, we propose a novel yet simple localization technique, ASFALT, that improves the efficiency of the localization process by combining the simplicity of range-based schemes with the robustness of signature-based ones. Simulation experiments are conducted to verify the performance of the proposed algorithms.
UR - https://www.scopus.com/pages/publications/47249150954
U2 - 10.1109/SRDS.2007.4365679
DO - 10.1109/SRDS.2007.4365679
M3 - Conference contribution
AN - SCOPUS:47249150954
SN - 076952995X
SN - 9780769529950
T3 - Proceedings of the IEEE Symposium on Reliable Distributed Systems
SP - 3
EP - 12
BT - Proceedings - 26th IEEE International Symposium on Reliable Distributed Systems, SRDS 2007
Y2 - 10 October 2007 through 12 October 2007
ER -