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A New Approach for Acoustic Field Interpolation

   | 09 apr 2016
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1. Bai, R. M., J. G. Ih, J. Benesty. Acoustic Array Systems. John Wiley & Sons Singapore Pte. Ltd., Singapore, 2013.10.1002/9780470827253Search in Google Scholar

2. Graham, T. S. Long-Wavelength Acoustic Holography. – Journal of the Acoustical Society of America, Vol. 46, 1969, No 1A, p. 116.10.1121/1.1972702Search in Google Scholar

3. Maynard, J. D., E. G. Williams, Y. Lee. Nearfield Acoustic Holography: I. Theory of Generalized Holography and the Development of NAH. – Journal of the Acoustical Society of America, Vol. 78, 1985, No 4, pp. 1395-1413.10.1121/1.392911Search in Google Scholar

4. Williams, E. G. Fourier Acoustics. Academic Press, 1999.Search in Google Scholar

5. http://www.bksv.com/Search in Google Scholar

6. Kim, B. K., J. G. Ih. On the Reconstruction of Vibro-Acoustic Field over the Surface Enclosing an Interior Space Using the Boundary Element Method. – Journal of the Acoustical Society of America, Vol. 100, 1996, No 5, pp. 3003-3016.10.1121/1.417112Search in Google Scholar

7. Schuhmacher, A., J. Hald, K. B. Rasmussen, P. C. Hansen. Sound Source Reconstruction Using Inverse Boundary Element Calculations. – Journal of the Acoustical Society of America, Vol. 113, 2003, No 1, pp. 114-126.10.1121/1.152966812558252Search in Google Scholar

8. Hald, J. Patch Near-Field Acoustical Holography Using a New Statistically Optimal Method. – Brüel & Kjær Technical Review, 2005, No 1, pp. 40-50.Search in Google Scholar

9. Wang, Z., S. F. Wu. Helmholtz Equation – Least-Squares Method for Reconstruction of the Acoustic Pressure Field. – Journal of the Acoustical Society of America, Vol. 102, 1997, No 4, pp. 2020-2032.10.1121/1.419691Search in Google Scholar

10. Sarkissian, A. Method of Superposition Applied to Patch Near-Field Acoustic Holography. – Journal of the Acoustical Society of America, Vol. 118, 2005, No 2, pp. 671-678.10.1121/1.1945470Search in Google Scholar

11. Bi, Ch., X. Chen, J. Chen, R. Zhou. Near-Field Acoustic Holography Based on the Equivalent Source Method. – Science in China Ser. E Engineering & Materials Science, Vol. 48, 2005, No 3, pp. 338-353.10.1360/03ye0538Search in Google Scholar

12. Chyrka, I. D., I. P. Omelchuk. Multichannel Modified Covariance Estimator of a Single-Tone Frequency. – Cybernetics and Information Technologies, Vol. 15, 2015, No 7, pp. 35-44.10.1515/cait-2015-0087Search in Google Scholar

13. Jacobsen F., V. Jaud. Statistically Optimized Near Field Acoustic Holography Using an Array of Pressure-Velocity Probes. – Journal of the Acoustical Society of America, Vol. 121, 2007, No 3, pp. 1550-1558.10.1121/1.243424517407892Search in Google Scholar

14. Sarkissian, A. Extension of Measurement Surface in Near-Field Acoustic Holography. – Journal of the Acoustical Society of America, Vol. 115, 2004, No 4, pp. 1593-1596.10.1121/1.1645609Search in Google Scholar

15. Williams, E. G. Continuation of Acoustic Near-Fields. – Journal of the Acoustical Society of America, Vol. 113, 2003, No 3, pp. 1273-1281.10.1121/1.152817312656362Search in Google Scholar

16. Nikitin, A. V., S. V. Iushanov. Measurement of Instantaneous Frequency of Wideband Signals on the Short Observation Interval. – Measuring Technics. 2008. No 2, pp. 50-54.Search in Google Scholar

17. Bing Hua, C., Z. Wei, C. Zi Nan. Underwater Acoustic Sensor Networks Deployment Using Improved Self-Organize Map Algorithm. – Cybernetics and Information Technologies, Vol. 14, 2014, pp. 63-77.10.2478/cait-2014-0044Search in Google Scholar

eISSN:
1314-4081
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Computer Sciences, Information Technology