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Volumn 2003-January, Issue , 2003, Pages 225-228

Mixed physical modeling: DWG + FDTD + WDF

Author keywords

Acoustic scattering; Admittance; Delay lines; Difference equations; Differential equations; Digital signal processing; Finite difference methods; Impedance; Sampling methods; Time domain analysis

Indexed keywords

ACOUSTIC IMPEDANCE; AUDIO ACOUSTICS; AUDIO SIGNAL PROCESSING; DIFFERENCE EQUATIONS; DIFFERENTIAL EQUATIONS; DIGITAL FILTERS; DIGITAL SIGNAL PROCESSING; ELECTRIC ADMITTANCE; ELECTRIC DELAY LINES; ELECTRIC IMPEDANCE; FINITE DIFFERENCE METHOD; MODAL ANALYSIS; SIGNAL PROCESSING; SYNTHESIS (CHEMICAL);

EID: 84945133739     PISSN: None     EISSN: None     Source Type: Conference Proceeding    
DOI: 10.1109/ASPAA.2003.1285872     Document Type: Conference Paper
Times cited : (7)

References (13)
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    • Karjalainen, M.1
  • 2
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    • Virtual strings based on a 1-D FDTD waveguide model
    • Espoo, Finland
    • C. Erkut and M. Karjalainen, "Virtual strings based on a 1-D FDTD waveguide model," Proc. AES 22nd Int. Conf., pp. 317-323, Espoo, Finland, 2002.
    • (2002) Proc. AES 22nd Int. Conf. , pp. 317-323
    • Erkut, C.1    Karjalainen, M.2
  • 3
    • 84945162861 scopus 로고    scopus 로고
    • Finite Difference Method vs. Digital Waveguide Method in String Instrument Modeling and Synthesis
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    • Proc. ISMA'02, Mexico City, 2002
    • Erkut, C.1    Karjalainen, M.2
  • 4
    • 4344674047 scopus 로고    scopus 로고
    • BlockCompiler: Efficient Simulation of Acoustic and Audio Systems
    • Preprints of Paper 5756, Amsterdam, May
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    • (2003) AES114th Convention
    • Karjalainen, M.1
  • 5
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    • Principles of Waveguide Models of Musical Instruments
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    • J. O. Smith, "Principles of Waveguide Models of Musical Instruments," in Applications of Digital Signal Processing to Audio and Acoustics, ed. M. Kahrs and K. Brandenburg, Kluwer Academic Publishers, Boston 1998.
    • (1998) Applications of Digital Signal Processing to Audio and Acoustics
    • Smith, J.O.1
  • 8
    • 0141512605 scopus 로고
    • Synthesizing Musical Sounds by Solving the Wave Equation for Vibrating Objects: Part I, Part II
    • L. Hiller and P. Ruiz, "Synthesizing Musical Sounds by Solving the Wave Equation for Vibrating Objects: Part I, Part II," J. Audio Eng. Soc. vol. 19, nr.6 and nr. 7, pp. 452-470 and 542-551, 1971.
    • (1971) J. Audio Eng. Soc. , vol.19 , Issue.6-7
    • Hiller, L.1    Ruiz, P.2
  • 9
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    • On the use of finite differences for musical synthesis. Application to plucked stringed instruments
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    • A. Chaigne, "On the use of finite differences for musical synthesis. Application to plucked stringed instruments", J. Acoustique, vol. 5, pp. 181-211, April 1992.
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  • 10
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  • 12
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    • Physical Modeling with the 2-D Digital Waveguide Mesh
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    • S. A. Van Duyne and J. O. Smith, "Physical Modeling with the 2-D Digital Waveguide Mesh," Proc. ICMC'93, pp., 40-47, Tokyo, Japan, Sept. 1993.
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  • 13
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.