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1
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0018530059
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Analysis of direct-sequence spread-spectrum spectrum multiple-access communication over Rician fading channels
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Oct.
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D. E. Borth and M. B. Pursley “Analysis of direct-sequence spread-spectrum spectrum multiple-access communication over Rician fading channels,” IEEE Trans. Commun., vol. COM-27, pp. 1566–1577, Oct. 1979.
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(1979)
IEEE Trans. Commun.
, vol.COM-27
, pp. 1566-1577
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Borth, D.E.1
Pursley, M.B.2
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2
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0018453038
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Reception through Nakagami-fading multipath channels with random delays
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Apr.
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U. Charash “Reception through Nakagami-fading multipath channels with random delays,” IEEE Trans. Commun., vol. COM-27, pp. 657–670, Apr. 1979.
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(1979)
IEEE Trans. Commun.
, vol.COM-27
, pp. 657-670
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Charash, U.1
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3
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0018287905
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Fading effects on the performance of a spread spectrum multiple access communication system
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Jan.
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C. S. Gardner and J. A. Orr “Fading effects on the performance of a spread spectrum multiple access communication system,” IEEE Trans. Commun., vol. COM-27, pp. 143–149, Jan. 1979.
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(1979)
IEEE Trans. Commun.
, vol.COM-27
, pp. 143-149
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Gardner, C.S.1
Orr, J.A.2
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4
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84896586843
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Error probability for binary PSK spread-spectrum multiple-access communications
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Johns Hopkins Univ., Baltimore, MD, Mar.
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E. A. Geraniotis and M. B. Pursley, “Error probability for binary PSK spread-spectrum multiple-access communications,” in Proc. Conf. Inform. Sci. Syst., Johns Hopkins Univ., Baltimore, MD, Mar. 1981, pp. 238–244.
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(1981)
Proc. Conf. Inform. Sci. Syst.
, pp. 238-244
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Geraniotis, E.A.1
Pursley, M.B.2
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5
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0020127066
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Error probability for direct-sequence spread-spectrum multiple-access communications—Part II: Approximations
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May
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“Error probability for direct-sequence spread-spectrum multiple-access communications—Part II: Approximations,” IEEE Trans. Commun., vol. COM-30, pp. 985–995, May 1982.
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(1982)
IEEE Trans. Commun.
, vol.COM-30
, pp. 985-995
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Geraniotis, E.A.1
Pursley, M.B.2
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6
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84941517131
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Effects of specular multipath on noncoherent direct-sequence spread-spectrum communications
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Philadelphia, PA, June
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“Effects of specular multipath on noncoherent direct-sequence spread-spectrum communications,” in Conf. Rec., IEEE Int. Conf. Commun., Philadelphia, PA, June 1982, vol. 3, pp. 6B.5.1-6B.5.5.
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(1982)
Conf. Rec., IEEE Int. Conf. Commun.
, vol.3
, pp. 6
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Geraniotis, E.A.1
Pursley, M.B.2
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7
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0020984621
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Noncoherent direct-sequence spread-spectrum multiple-access communications
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Johns Hopkins Univ., Baltimore, MD, Mar.
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E. A. Geraniotis, “Noncoherent direct-sequence spread-spectrum multiple-access communications,” in Proc. Conf. Inform. Sci. Syst., Johns Hopkins Univ., Baltimore, MD, Mar. 1983.
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(1983)
Proc. Conf. Inform. Sci. Syst.
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Geraniotis, E.A.1
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8
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84936896674
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Optimal binary sequences for spread spectrum multiplexing
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R. Gold “Optimal binary sequences for spread spectrum multiplexing,” IEEE Trans. Inform. Theory, vol. IT-13, pp. 619–621, 1967.
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(1967)
IEEE Trans. Inform. Theory
, vol.IT-13
, pp. 619-621
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Gold, R.1
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9
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0020986535
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Multipath diversity reception of coherent direct-sequence spread-spectrum communications
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Johns Hopkins Univ., Baltimore, MD, Mar. 23–25
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J. S. Lehnert and M. B. Pursley, “Multipath diversity reception of coherent direct-sequence spread-spectrum communications,” in Proc. Conf. Inform. Sci. Syst., Johns Hopkins Univ., Baltimore, MD, Mar. 23–25, 1983.
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(1983)
Proc. Conf. Inform. Sci. Syst.
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Lehnert, J.S.1
Pursley, M.B.2
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10
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24944568044
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On the correlation function of random binary sequences
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J. Moon and L. Moser “On the correlation function of random binary sequences,” SIAM J. Appl. Math., vol. 16, no. 2, pp. 340–343, 1968.
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(1968)
SIAM J. Appl. Math.
, vol.16
, Issue.2
, pp. 340-343
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Moon, J.1
Moser, L.2
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11
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0017523322
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Performance evaluation for phase-coded spread-spectrum spectrum multiple-access communications—Part I: System analysis
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Aug.
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M. B. Pursley “Performance evaluation for phase-coded spread-spectrum spectrum multiple-access communications—Part I: System analysis,” IEEE Trans. Commun., vol. COM-25, pp. 795–799, Aug. 1977.
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(1977)
IEEE Trans. Commun.
, vol.COM-25
, pp. 795-799
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Pursley, M.B.1
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12
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0020128671
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Error probability for direct-sequence spread-spectrum spectrum multiple-access communications—Part I: Upper and lower bounds
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May
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M. B. Pursley et al. “Error probability for direct-sequence spread-spectrum spectrum multiple-access communications—Part I: Upper and lower bounds,” IEEE Trans. Commun., vol. COM-30, pp. 975–984, May 1982.
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(1982)
IEEE Trans. Commun.
, vol.COM-30
, pp. 975-984
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Pursley, M.B.1
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13
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0017767208
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Correlation parameters of random binary sequences
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H. Roefs and M. Pursley “Correlation parameters of random binary sequences,” Electron. Lett., vol. 13, pp. 488–489, 1977.
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(1977)
Electron. Lett.
, vol.13
, pp. 488-489
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Roefs, H.1
Pursley, M.2
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14
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0019021287
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Cross-correlation properties of pseudorandom and related sequences
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D. Sarwate and M. Pursley, “Cross-correlation properties of pseudorandom and related sequences,” Proc. IEEE, vol. 68, pp. 593–619, 1980.
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(1980)
Proc. IEEE
, vol.68
, pp. 593-619
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Sarwate, D.1
Pursley, M.2
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15
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0018997051
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Introduction to spread-spectrum antimultipath techniques and their application to urban digital ratio
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G. Turin “Introduction to spread-spectrum antimultipath techniques and their application to urban digital ratio,” Proc. IEEE, vol. 68, pp. 328–353, 1980.
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(1980)
Proc. IEEE
, vol.68
, pp. 328-353
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Turin, G.1
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16
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0003829621
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Simulation of digital communication through urban/suburban multipath
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Ph.D. dissertation, Dep. Elec. Eng. Comput. Sci., Univ. California, Berkeley. June
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M. A. Kamil, “Simulation of digital communication through urban/suburban multipath,” Ph.D. dissertation, Dep. Elec. Eng. Comput. Sci., Univ. California, Berkeley. June 1981.
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(1981)
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Kamil, M.A.1
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