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Model-based on-line sensor fault detection in Wireless Sensor Actuator Networks

Xuewu Dai, Fei Qin, Zhiwei Gao, Kewen Pan, Krishna Busawon

Year
2015
Citations
12

Abstract

Wireless Sensor Actuator Networks (WSANs) have shown its advantages of flexibility and cable-free deployment in industrial applications. However, the sensors explore directly to the harsh environment and are the most prone to faults and malfunctioning, which poses a big challenge to the WSAN's applicability in applications with high safety requirements. This paper focuses on highly reliable WSANs equipped with double-sensing system and proposes a model-based on-line sensor fault detection scheme by exploiting information redundancy between sensors and actuators. An optimization method is developed to make the proposed scheme robust to the largely fluctuating end-to-end packet transmission delays due to wireless communications. The performance of the proposed sensor fault detection scheme is demonstrated by the simulation of a pick and place robot.

Keywords

Wireless sensor networkActuatorWirelessKey distribution in wireless sensor networksComputer scienceFault detection and isolationRedundancy (engineering)Robustness (evolution)Network packetReal-time computing

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