Title :
Quality of Surveillance Measures in K-Covered Heterogeneous Wireless Sensor Networks
Author :
Wueng, Meng-Chun ; Hwang, I-Shyan
Abstract :
Heterogeneous Wireless Sensor Networks, in which the deployed sensors have different capacities, are gradually used to perform critical surveillance in real world. For conserving energy, powerful sensors are usually activated only when an event is detected, while low-cost and error-prone sensors dominate the quality of surveillance (QoSu) when an interesting event just appears. To guarantee a desired QoSu, deploying the K-coverage configuration in HWSNs has attracted much attention. However, little work addresses a significant issue of measuring the fault tolerance level on a K-coverage configuration in HWSNs. In this paper, we first propose an energy-efficient eligibility approach to perform the K-covered HWSNs with very low cost. The QoSu is further formalized in terms of explicit metrics, such as probabilities of system false positives and system false negatives. An appropriate deployment of the K-coverage configuration can thus be determined according to a desired QoSu while prolonging the system lifetime.
Keywords :
energy conservation; fault tolerance; quality of service; wireless sensor networks; HWSN; QoSu; energy conservation; error-prone sensors; explicit metrics; fault tolerance level; k-covered heterogeneous wireless sensor networks; probability; quality of surveillance; system lifetime; Fault tolerance; Sensor phenomena and characterization; Sleep; Surveillance; Wireless sensor networks; Heterogeneous Wireless Sensor Networks; K-coverage Configuration; Quality of Surveillance; System False Negative; System False Positive;
Conference_Titel :
Parallel Processing Workshops (ICPPW), 2010 39th International Conference on
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4244-7918-4
Electronic_ISBN :
1530-2016
DOI :
10.1109/ICPPW.2010.82