Uneingeschränkter Zugang

Non-Destructive Detection of Rebar Buried in a Reinforced Concrete Wall with Wireless Passive SAW Sensor


Zitieren

[1] Valíček, J., Držík, M., Hryniewicz, T., et al. (2012). Non-Contact method for surface roughness measurement after machining. Measurement ScienceReview,12 (5), 184-188.10.2478/v10048-012-0028-3Search in Google Scholar

[2] Hola, J., Schabowicz, K. (2005). Application of artificial neural networks to determine concrete compressive strength based on non-destructive tests. Journal of Civil Engineering and Management, 11 (1), 23-32.Search in Google Scholar

[3] Diego, S.B., Sung, Q., Patrich, G.A., et al. (2008). A preliminary magneto inductive sensor system for realtime imaging of steel reinforcing bars embedded within concrete. IEEE Transactions onInstrumentation and Measurement, 57 (11), 2437-2442.Search in Google Scholar

[4] Popovics, J.S., Gallo, G.E., Shelton, M., et al. (2007). A magnetic sensing approach to characterize corrosion in reinforced concrete. In Sensors and SmartStructures Technologies for Civil, Mechanical, andAerospace Systems 2007, Proceedigs of SPIE, vol. 6529.10.1117/12.714307Search in Google Scholar

[5] Tsukada, K., Kiwa, T., Kawata, T., et al. (2006). Lowfrequency eddy current imaging using MR sensor detecting tangential magnetic field components for nondestructive evaluation. IEEE Transactions onMagnetics, 42 (10), 3315-3317.10.1109/TMAG.2006.879754Search in Google Scholar

[6] Yamazaki, K., Ishikawa, K., Haga, A., et al. (2010). Impedance measurement using a resonance circuit for detecting steel bars and cables inside pliable plastic conduit tubes buried in concrete walls and slabs. IEEETransaction on Magnetics, 46 (6), 1963-1966.10.1109/TMAG.2010.2044869Search in Google Scholar

[7] Binhack, M., Buff, W., Klett, S., et al. (2000). A combination of SAW-resonators and conventional sensing elements for wireless passive remote sensing. In 2000 IEEE Ultrasonics Symposium, 22-25 October 2000. IEEE, 495-498.10.1109/ULTSYM.2000.922599Search in Google Scholar

[8] Schimetta, G., Dollinger, F., Weigel, R., et al. (2000). A wireless pressure measurement system using a SAW hybrid sensor. In 2000 IEEE MTT-S InternationalMicrowave Symposium Digest, 11-16 June 2000. IEEE, vol. 3, 1407-1410.Search in Google Scholar

[9] Petrović, P. (2012). Frequency and parameter estimation of multi-sinusoidal signal. MeasurementScience Review, 12 (5), 175-183.10.2478/v10048-012-0027-4Search in Google Scholar

[10] Angrisani, L., Capriglione, D., Ferrigno, L., Miele, G. (2011). A new digital signal processing method for spectrum interference monitoring. MeasurementScience Review, 11 (1), 1-8.10.2478/v10048-011-0006-1Search in Google Scholar

[11] Fu, Q., Wang, J., Luo, W., et al. (2008). Progress of matching network for passive remote hybrid sensor based on SAW resonator. In IUS 2008 : IEEEUltrasonics Symposium, 2-5 November 2008. IEEE, 1512-1515.Search in Google Scholar

[12] Klett, S., Blinhack, M., Buff, W., et al. (2002). Progress in modeling of sensor function for matched SAW resonators. In 2002 IEEE UltrasonicsSymposium, 8-11 October 2002. IEEE, 471-474.10.1109/ULTSYM.2002.1193444Search in Google Scholar

eISSN:
1335-8871
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
6 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Technik, Elektrotechnik, Mess-, Steuer- und Regelungstechnik