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2022 | OriginalPaper | Buchkapitel

Wireless Acoustic Emission Systems

verfasst von : Stephen Grigg, Takashi Usui, Kazuo Watabe, Tomoki Shiotani, Rhys Pullin, Karen M. Holford

Erschienen in: Acoustic Emission Testing

Verlag: Springer International Publishing

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Abstract

The development of both commercial and research driven wireless Acoustic Emission (AE) devices has increased in recent years. These have the potential to substantially improve the ease at which AE can be monitored, and so reduce the cost of doing so. Monitoring AE wirelessly has significant differences to other Structural Health Monitoring (SHM) applications; this chapter gives some key challenges faced and an overview of available systems. The development and testing of a state-of-the-art, low power, device for AE monitoring of bridges is also presented. Testing showed this device to be capable of continuous monitoring of a bridge structure, utilizing photovoltaic energy harvesting and novel power saving approaches.

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Literatur
Zurück zum Zitat Callaway E, Gorday P, Hester L (2002) Home networking with IEEE 802.15.4: a developing standard for low-rate wireless personal area networks. IEEE Commun Mag. IEEE. internal-pdf://240.190.9.185/Home networking IEEE 802.15.4.pdf Callaway E, Gorday P, Hester L (2002) Home networking with IEEE 802.15.4: a developing standard for low-rate wireless personal area networks. IEEE Commun Mag. IEEE. internal-pdf://240.190.9.185/Home networking IEEE 802.15.4.pdf
Zurück zum Zitat Elsheikh MH et al (2014) A review on thermoelectric renewable energy: principle parameters that affect their performance. Renew Sustain Energy Rev 30:337–355. internal-pdf://0476189560/1-s2.0-S1364032113007260-main.pdf Elsheikh MH et al (2014) A review on thermoelectric renewable energy: principle parameters that affect their performance. Renew Sustain Energy Rev 30:337–355. internal-pdf://0476189560/1-s2.0-S1364032113007260-main.pdf
Zurück zum Zitat Giannì C et al (2020) Low-power global navigation satellite system-enabled wireless sensor network for acoustic emission localisation in aerospace components. Struct Control Health Monit (January):1–13. https://doi.org/10.1002/stc.2525 Giannì C et al (2020) Low-power global navigation satellite system-enabled wireless sensor network for acoustic emission localisation in aerospace components. Struct Control Health Monit (January):1–13. https://​doi.​org/​10.​1002/​stc.​2525
Zurück zum Zitat Godínez-Azcuaga V, Obdulia L (2013) Structural health monitoring of aerospace structures using a low-power, wireless, multichannel acoustic emission node. In: 5th international symposium on NDT in aerospace, pp 13–15. internal-pdf://118.103.248.36/Structural Health Monitoring of Aerospace Stru.pdf Godínez-Azcuaga V, Obdulia L (2013) Structural health monitoring of aerospace structures using a low-power, wireless, multichannel acoustic emission node. In: 5th international symposium on NDT in aerospace, pp 13–15. internal-pdf://118.103.248.36/Structural Health Monitoring of Aerospace Stru.pdf
Zurück zum Zitat Khan S, Pathan A-SK, Alrajeh NA (2016) Wireless sensor networks: current status and future trends. CRC Press Khan S, Pathan A-SK, Alrajeh NA (2016) Wireless sensor networks: current status and future trends. CRC Press
Zurück zum Zitat Li J et al (2016) Efficient time synchronization for structural health monitoring using wireless smart sensor networks. Struct Control Health Monit (Wiley Online Library) 23(3):470–486CrossRef Li J et al (2016) Efficient time synchronization for structural health monitoring using wireless smart sensor networks. Struct Control Health Monit (Wiley Online Library) 23(3):470–486CrossRef
Zurück zum Zitat MISTRAS (2013) 1284: the first multi channel wireless acoustic emission system. MISTRAS MISTRAS (2013) 1284: the first multi channel wireless acoustic emission system. MISTRAS
Zurück zum Zitat MISTRAS (2017) Micro-SHM product data sheet MISTRAS (2017) Micro-SHM product data sheet
Zurück zum Zitat Nguyen MD et al (2015) Acoustic emission sensor using liquid-on-beam structure. Pham Q-K, Nguyen M-D, Matsumoto K, Shimoyama I. The University of Tokyo, Tokyo, Japan. IEEE, pp 1137–1139 Nguyen MD et al (2015) Acoustic emission sensor using liquid-on-beam structure. Pham Q-K, Nguyen M-D, Matsumoto K, Shimoyama I. The University of Tokyo, Tokyo, Japan. IEEE, pp 1137–1139
Zurück zum Zitat Ono K (2011) Application of acoustic emission for structure diagnosis. Diagn Struct Health Monit 2(58) Ono K (2011) Application of acoustic emission for structure diagnosis. Diagn Struct Health Monit 2(58)
Zurück zum Zitat Shaikh FK, Zeadally S (2016) Energy harvesting in wireless sensor networks: a comprehensive review. Renew Sustain Energy Rev 55:1041–1054CrossRef Shaikh FK, Zeadally S (2016) Energy harvesting in wireless sensor networks: a comprehensive review. Renew Sustain Energy Rev 55:1041–1054CrossRef
Zurück zum Zitat Shiotani T, Yuyama S, Li ZW, Ohtsu M (2001) Application of AE improved b-value to quantitative evaluation of fracture process in concrete materials. J Acoust Emiss 19:118–133 Shiotani T, Yuyama S, Li ZW, Ohtsu M (2001) Application of AE improved b-value to quantitative evaluation of fracture process in concrete materials. J Acoust Emiss 19:118–133
Zurück zum Zitat Watabe K, Takamine H, Nishida T, Shiotani T (2019) Novel non-destructive technique of internal deterioration in concrete deck with elastic wave approaches. In: Proceedings of the 12th world congress on engineering asset management and the 13th international conference on vibration engineering and technology, pp 665–676 Watabe K, Takamine H, Nishida T, Shiotani T (2019) Novel non-destructive technique of internal deterioration in concrete deck with elastic wave approaches. In: Proceedings of the 12th world congress on engineering asset management and the 13th international conference on vibration engineering and technology, pp 665–676
Zurück zum Zitat Wu Y, Liu W, Li K (2017) A novel wireless acoustic emission sensor system for distributed wooden structural health monitoring. Int J Innov Comput Inf Control 13(4):1289–1306 Wu Y, Liu W, Li K (2017) A novel wireless acoustic emission sensor system for distributed wooden structural health monitoring. Int J Innov Comput Inf Control 13(4):1289–1306
Metadaten
Titel
Wireless Acoustic Emission Systems
verfasst von
Stephen Grigg
Takashi Usui
Kazuo Watabe
Tomoki Shiotani
Rhys Pullin
Karen M. Holford
Copyright-Jahr
2022
DOI
https://doi.org/10.1007/978-3-030-67936-1_23