참고문헌
- B. I. Kim, H. U. Lee, M. H. Park, and W. H. Kwon, "An analysis of highlight distribution modeling for high frequency CW pulse signal reflection on underwater target"(in Korean), J. Simul. Soc. Kr. 9, 1-11 (2000).
- B. I. Kim, H. U. Lee, and M. H. Park, "A performance analysis on the time spread highlight synthesized models for underwater active target"(in Korean), J. Military Science and Tech. Soc. Kr. 5, 37-44 (2002).
- T. H. Kim, J. H. Park, J. G. Nam, S. H. Lee, and K. S. Bae, "Synthesis and classification of active sonar target signal using highlight model"(in Korean), J. Acoust. Soc. Kr. 28, 135-140 (2009).
- H. S. Kim, K. C. Shin, W. S. Kim, D. H. Han, S. M. Choi, and J. S. Kim, "Realtime active target signal simulation"(in Korean), J. Ocean Eng. and Tech.11, 163-169 (1997).
- K. C. Shin, J. E. Park, J. S. Kim, S. M. Choi, and W. S. Kim, "Target scattering echo simulation for active sonar system in the geometric optics region"(in Korean), J. Acoust. Soc. Kr. 20, 91-97 (2001).
- K. C. Shin, J. S. Kim, W. S. Kim, W. H. Kim, and Y. Y. Kim, "A study on the acoustic scattering of submerged scale target-experiment and analysis"(in Korean), J. Ocean Eng. and Tech. 12, 92-100 (1998).
- M. C. Diana, "Active sonar modeling with emphasis on sonar stimulators,"DRDC Atlantic, Tech. Rep., 2004.
- E. K. Westwood and P. J. Vidmar, "Eigenray finding and time series simulation in a layered-bottom ocean,"J. Acoust. Soc. Am. 81, 912-924(1987). https://doi.org/10.1121/1.394571
- S. K. You, A Target Modeling in Synthetic Underwater Environment for Performance Analysis of Acoustic,(Ph.D. thesis, Hanyang Univ., 2012)
- R. J. Urick, Principle of Underwater Sound (McGraw-Hill,New York, 1983), pp. 302-308.
- A. Martin, Stability and Motion control of ocean vehicles (M.I.T. PRESS, 1972).
- C. W. Nell and L. E. Gilroy, "An improved BASIS model for the BeTSSi submarine,"DRDC Atlantic, Tech. Rep., 2003.
- K. Kim, J. H. Kim, D. S. Cho and W. Seong, "Applying time domain physical optics to acoustic wave backscattering problem," Appl. Acoust. 71, 321-327 (2010) https://doi.org/10.1016/j.apacoust.2009.10.006
- Y. H. Choi, K. C. Shin, J. S. You, J. S. Kim, W. H. Joo, Y. H. Kim, J. H. Park, S. M. Choi, and W. S. Kim, "Numerical modeling and experimental verification for target strength of submerged objects"(in Korean), J. Ocean Eng. and Tech. 19, 64-80 (2005).
- Y. H. Choi, J. S. Kim, K. C. Shin, J. S. You, W. H. Joo, Y. H. Kim, J. H. Park, S. M. Choi, and W. S. Kim, "Numerical analysis method for target strength and experimental verification"(in Korean), J. Acoust. Soc. Kr. Suppl. 1(s) 23, 171-174 (2004).
- B. Nolte, I. Schafer and J. Ehrlich, "Numerical methods for wave scattering phenomena by means of different boundary integral formulations," J. Comp. Acous. 15, 495-529 (2007). https://doi.org/10.1142/S0218396X07003536
- A. Eriksson, "Acoustic target strength design for sub-marines modeling and measurements,"in Proc. Undersea Defence Technology Europe (2008).
- B. R. Mahafza, Radar Systems Analysis and Design Using MATLAB (CHAPMAN & HALL/CRC, 2000).
- R. P. Hodges, Underwater Acoustics (WILEY, 2010).
- T. Kwan, and D. D. Ellis, "Reverberation calculations over sloping ocean bottoms,"DRDC Atlantic, Tech. Rep., 2010.
- R. E. Keenan, "An introduction to GRAB eigenrays and CASS reverberation and signal excess,"in Proc. OCEANS 2000MTS/IEEE Conference, 1065-1070 (2000).
- J. W. Choi, K. S. Yoon, J. y. Na, J. S. Park, and Y. N. Na, "Shallow water high-frequency reverberation model"(in Korean), J. Acoust. Soc. Kr. 21, 671-678 (2002).
- S. H. Kim, W. B. Lee, S. K. You, J. W. Choi, W. S. Kim, J. S. Park, and K. J. Park, "High-frequency Reverberation Simulation of High-speed Moving Source in Range-independent Ocean Environment"(in Korean), J. Acoust. Soc. Kr. 32, 104-115 (2013). https://doi.org/10.7776/ASK.2013.32.2.104
- N. C. Makris, "The effect of saturated transmissionscintillation on ocean acoustic intensity measurements," J. Acoust. Soc. Am. 100, 769-783 (1996). https://doi.org/10.1121/1.416239
- G. M. Wenz, "Acoustic Ambient Noise in the Ocean: Spectra and Sources,"J. Acoust. Soc. Am. 34, 1936-1956 (1962). https://doi.org/10.1121/1.1909155
- B. K. Choi, B. C. Kim, C. S. Kim, and B. N. Kim, "Analysis of dependence on wind speed and ship traffic of underwater ambient noise at shallow sea surrounding the Korean peninsula"(in Korean), J. Acoust. Soc. Kr. 22, 233-241 (2003).
- W. M. Carey and R. B. Evans, Ocean Ambient Noise - Measurement and theory(Springer, New York, 2011)
- B. U. Kim, K. H. Lee, W. J. Seong, and J. Y. Han, "Noise simulation and interferemce pattern analysis for submarine passive sonar"(in Korean), J. Acoust. Soc. Kr. Suppl. 2(s) 29, 11-14 (2012).
- C.Amante and B.W.Eakins, "Etopo1 arc-minute global relief model: procedures, data sources and analysis," NGDC, Tech. Rep., 2003.
- M.R.Carnes, Description and Evaluationof GDEM-V 3.0, Naval Research Laboratory, 2009.
- D.GROSSO, "A New Equation for the speed of sound in NaturalWaters,"J. Acoust. Soc. Am.56, 1084-1091 (1974). https://doi.org/10.1121/1.1903388
- J. H. Na, J. W. Choi, S. U. Son, and S. H. Kim, "Statistical characteristics analysis of sea surface reverberation signals"(in Korean), J. Acoust. Soc. Kr. Suppl. 1(s) 30, 848-851 (2011).
피인용 문헌
- Modeling and Experimental Verification of Echo Characteristics of 3 Dimensional Underwater Target vol.33, pp.3, 2014, https://doi.org/10.7776/ASK.2014.33.3.174
- Investigation of Target Echoes in Multi-static SONAR system - Part II : Numerical Modeling with Experimental Verification vol.28, pp.5, 2014, https://doi.org/10.5574/KSOE.2014.28.5.440