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The active minimization of harmonic enclosed sound fields, Part I: Theory
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0025243664
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Active reduction of a one-dimensional enclosed sound field: An experimental investigation of three control strategies
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A. R. D. Curtis, P. A. Nelson, and S. J. Elliott, "Active reduction of a one-dimensional enclosed sound field: An experimental investigation of three control strategies," J. Acoust. Soc. Am. 88, 2265-2268 (1990).
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An evaluation of active noise attenuation in rectangular enclosures
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Global active niose control in rectangular enclosures
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Newport Beach, CA
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An adaptive filtered-x algorithm for energy-based active control
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The active minimization of harmonic enclosed sound fields, Part II: A computer simulation
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A. J. Bullmore, P. A. Nelson, A. R. D. Curtis, and S. J. Elliott, "The active minimization of harmonic enclosed sound fields, Part II: A computer simulation," J. Sound Vib. 117, 15-33 (1987).
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Multichannel active control of random noise in a small reverberant room
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A multiple error LMS algorithm and its application to the active control of sound and vibration
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S. J. Elliott, I. M. Stothers, and P. A. Nelson, "A multiple error LMS algorithm and its application to the active control of sound and vibration," IEEE Trans. Acoust. Speech Signal Process. 35 1423-1434 (1987).
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Active adaptive sound control in a duct: A computer simulation
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The selection and application of an IIR adaptive filter for use in active sound attenuation
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L. J. Eriksson, M. C. Allie, and R. A. Greiner, "The selection and application of an IIR adaptive filter for use in active sound attenuation," IEEE Trans. Acoust. Speech Signal Process. ASSP-35, 433-437 (1987).
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13
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The design of a precision digital integrator for use in an active vibration control system
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T. Hodges, P. A. Nelson, and S. J. Elliot, "The design of a precision digital integrator for use in an active vibration control system," Mech. Syst. Sign. Process. 4, 345-353 (1990).
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