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1
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0018503655
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Canonical non-Gaussian noise models: Their implications for measurement and for prediction of receiver performance
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Aug.
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D. Middleton, “Canonical non-Gaussian noise models: Their implications for measurement and for prediction of receiver performance,” IEEE Trans. Electromag. Compat. vol. EMC-21, pp. 209–220, Aug. 1979.
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Middleton, D.1
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Optimum reception in an impulsive interference environment
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Office of Telecommunications Report OT-76-67 June (NTIS Order No. COM 75-11097/AS)
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A. D. Spaulding and D. Middleton, “Optimum reception in an impulsive interference environment,” Office of Telecommunications Report OT-76-67, June 1975 (NTIS Order No. COM 75-11097/AS).
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Spaulding, A.D.1
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0017533510
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Optimum reception in an impulsive interference environment
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Part I: Coherent detection, Part II: Incoherent reception Sept.
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A. D. Spaulding and D. Middleton, “Optimum reception in an impulsive interference environment,” Part I: Coherent detection, Part II: Incoherent reception, IEEE Trans. Commun., vol. COM-25, pp. 910–934, Sept. 1977.
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Spaulding, A.D.1
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0021371199
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Threshold detection in non-Gaussian interference environments: Exposition and interpretation of new results for EMC applications
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Feb.
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D. Middleton, “Threshold detection in non-Gaussian interference environments: Exposition and interpretation of new results for EMC applications,” IEEE Trans. Electromagn. Compat., vol. EMC-26, no. 1, pp. 19–28, Feb. 1984.
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(1984)
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Middleton, D.1
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5
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84939385378
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A tutorial review of elements of weak signal detection in non-Gaussian EMI environments
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National Telecommunications and Information Administration (NTIA), U.S. Dept, of Commerce, NTIA Report, May
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D. Middleton and A. D. Spaulding, “A tutorial review of elements of weak signal detection in non-Gaussian EMI environments,” National Telecommunications and Information Administration (NTIA), U.S. Dept, of Commerce, NTIA Report 86–194, May 1986.
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(1986)
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Middleton, D.1
Spaulding, A.D.2
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6
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84947660850
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Statistical-physical models of urban radio-noise environments–Part 1: Foundations
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D. Middleton, “Statistical-physical models of urban radio-noise environments—Part 1: Foundations,” IEEE Trans. Electromag. Compat., vol. EMC-14, no. 2, 38–56, 1972.
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Middleton, D.1
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0017525460
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Statistical-physical models of electromagnetic interference
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Aug.
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D. Middleton, “Statistical-physical models of electromagnetic interference,” IEEE Trans. Electromag. Compat., vol. EMC-19, no. 3, pp. 106–127, Aug. 1977.
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Middleton, D.1
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8
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0020750472
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Canonical and quasi-canonical probability models of class A interference
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May
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D. Middleton, “Canonical and quasi-canonical probability models of class A interference,” IEEE Trans. Electromag. Compat., vol. EMC-25, no. 2, 76–106, May 1983.
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, Issue.2
, pp. 76-106
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Middleton, D.1
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10
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84939748994
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Parameter estimation for the Class A Middleton model
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Technical Report R-1048, UILU-ENG 85-2223 Coordinated Science Laboratory, Univ. of Illinois at Urbana Champaign, July
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S. M. Zabin, “Parameter estimation for the Class A Middleton model,” Technical Report R-1048, UILU-ENG 85–2223, Coordinated Science Laboratory, Univ. of Illinois at Urbana-Champaign, July 1985.
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Zabin, S.M.1
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0024753394
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Oct.
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S. M. Zabin and H. V. Poor, “Parameter estimation for Middleton Class A interference processes,” IEEE Trans. Commun., vol. COM-37, no. 10, pp. 1042–1051, Oct. 1989.
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Zabin, S.M.1
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0025434229
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Recursive algorithms for identification of impulsive noise channels
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May
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S. M. Zabin and H. V. Poor, “Recursive algorithms for identification of impulsive noise channels,” IEEE Trans. Inform. Theory, vol. 36, no. 3, pp. 559–578, May 1990.
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