Flexible Integration Techniques for Wireless Sensors Network Deployment: Application to Aircraft Structure Health Monitoring

被引:0
|
作者
Dragomirescu, D. [1 ]
Jatlaoui, M. M. [1 ]
Charlot, S. [1 ]
Beluch, T. [1 ]
Pons, P. [1 ]
Aubert, H. [1 ]
Plana, R. [1 ]
机构
[1] CNRS, LAAS, F-31077 Toulouse, France
关键词
RADIO;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper describes the realization of a 60GHz wireless communicating node integrated on a flexible substrate for wireless sensors networks. These wireless communicating objects are composed of sensors and a transceiver which includes digital baseband, RF front-end at 60GHz and an antenna. The MAC layer which establishes the network is also integrated in ASIC together with the digital baseband and reported by flip chip on flexible substrate. The 60GHz band was chosen because of its short range propagation and its directionally which is a major advantage for wireless sensor networks deployed in a small, closed area, like an aircraft. The main advantage of the flexible substrate integration is the realization of wireless sensor networks which can be placed in all locations, even those difficult to access. The main application addressed in this paper is Structure Health Monitoring for aircrafts.
引用
收藏
页码:1519 / 1526
页数:8
相关论文
共 50 条
  • [31] Deployment of a Wireless Sensor Network in Assembly, Integration and Test Activities
    Drobczyk, Martin
    Martens, Hauke
    2016 IEEE INTERNATIONAL CONFERENCE ON WIRELESS FOR SPACE AND EXTREME ENVIRONMENTS (WISEE), 2016, : 129 - 134
  • [32] TempNet: Application of Wireless Sensor Network for Industrial Temperature Monitoring with IoT Integration
    Hossain, Nafize Ishtiaque
    Reza, Sakib
    2019 5TH INTERNATIONAL CONFERENCE ON ADVANCES IN ELECTRICAL ENGINEERING (ICAEE), 2019, : 716 - 721
  • [33] The Deployment of a Smart Monitoring System using Wireless Sensors and Actuators Networks
    Bressan, Nicola
    Bazzaco, Leonardo
    Bui, Nicola
    Casari, Paolo
    Vangelista, Lorenzo
    Zorzi, Michele
    2010 IEEE 1ST INTERNATIONAL CONFERENCE ON SMART GRID COMMUNICATIONS (SMARTGRIDCOMM), 2010, : 49 - 54
  • [34] Mechanic Models for Structure Health Monitoring Based on Wireless Sensors Networks Positioning
    Fang, Weihua
    MECHANICAL ENGINEERING AND INSTRUMENTATION, 2014, 526 : 93 - 98
  • [35] Application of FBG Sensors in Flexible Pavement Monitoring
    Geng, Litao
    Ren, Ruibo
    Zhong, Yang
    Xu, Qian
    ADVANCES IN CIVIL ENGINEERING, PTS 1-6, 2011, 255-260 : 3397 - +
  • [36] Minimising number of sensors in wireless sensor networks for structure health monitoring systems
    El-Qawasma, Farah AbdelMutaleb
    Elfouly, Tarek Mohamed
    Ahmed, Mohamed Hossam
    IET WIRELESS SENSOR SYSTEMS, 2019, 9 (02) : 94 - 101
  • [37] Fiber optic sensors for health monitoring of morphing aircraft
    Brown, T
    Wood, K
    Childers, B
    Cano, R
    Jensen, B
    Rogowski, R
    SMART STRUCTURES AND MATERIALS 1999: INDUSTRIAL AND COMMERCIAL APPLICATIONS OF SMART STRUCTURES TECHNOLOGIES, 1999, 3674 : 60 - 71
  • [38] Optical Fiber Sensors for Aircraft Structural Health Monitoring
    Garcia, Iker
    Zubia, Joseba
    Durana, Gaizka
    Aldabaldetreku, Gotzon
    Asuncion Illarramendi, Maria
    Villatoro, Joel
    SENSORS, 2015, 15 (07): : 15494 - 15519
  • [39] Potential of bragg grating sensors for aircraft health monitoring
    Mrad, Nezih
    TRANSACTIONS OF THE CANADIAN SOCIETY FOR MECHANICAL ENGINEERING, 2007, 31 (01) : 1 - 17
  • [40] Flexible ultrasonic array sensors for health monitoring
    Kobayashi, M.
    Wu, K. -T.
    Song, L.
    Liu, Q.
    Jen, C. -K.
    HEALTH MONITORING OF STRUCTURAL AND BIOLOGICAL SYSTEMS 2007, 2007, 6532