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1
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0031996378
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Impulse radio: How it works
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Feb
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M. Z. Win and R. A. Sholtz, "Impulse radio: How it works," IEEE Commun. Lett., vol. 2, pp. 36-38, Feb. 1998.
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(1998)
IEEE Commun. Lett.
, vol.2
, pp. 36-38
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Win, M.Z.1
Sholtz, R.A.2
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2
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33747750272
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Ultra-wide bandwidth time-hopping spread-spectrum impulse radio for wireless multiple-access communications
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Apr
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M. Z. Win and R. A. Sholtz, "Ultra-wide bandwidth time-hopping spread-spectrum impulse radio for wireless multiple-access communications," IEEE Trans. Commun., vol. 48, pp. 679-689, Apr. 2000.
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(2000)
IEEE Trans. Commun.
, vol.48
, pp. 679-689
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Win, M.Z.1
Sholtz, R.A.2
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3
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0034854746
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Performance analysis of ultrawideband time-hopping code-division multiple-access systems: Uncoded and coded schemes
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Communications Helsinki, Finland, June
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A. R. Forouzan, M. Nasiri-Kenari, and J. A. Salehi, "Performance analysis of ultrawideband time-hopping code-division multiple-access systems: Uncoded and coded schemes," in Proc. Int. Conf. Communications, Helsinki, Finland, June 2001, pp. 3017-3021.
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(2001)
Proc. Int. Conf.
, pp. 3017-3021
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Forouzan, A.R.1
Nasiri-Kenari, M.2
Salehi, J.A.3
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4
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84900339351
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High-performance ultra-wide bandwidth systems via novel pulse shaping and frequency-domain processing
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Baltimore, MD, May
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W. Zhiqiang, Z. Fang, and C. R. Nassar, "High-performance ultra-wide bandwidth systems via novel pulse shaping and frequency-domain processing," in Proc. Ultra-Wideband Systems and Technologies Conf., Baltimore, MD, May 2002, pp. 53-58.
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(2002)
Proc. Ultra-Wideband Systems and Technologies Conf.
, pp. 53-58
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Zhiqiang, W.1
Fang, Z.2
Nassar, C.R.3
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5
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0036686437
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The ultra-wide bandwidth indoor channel: From statistical model to simulations
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Aug
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D. Cassioli, M. Z. Win, and A. F. Molisch, "The ultra-wide bandwidth indoor channel: From statistical model to simulations," IEEE J. Select. Areas Commun., vol. 20, pp. 1247-1257, Aug. 2002.
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(2002)
IEEE J. Select. Areas Commun.
, vol.20
, pp. 1247-1257
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Cassioli, D.1
Win, M.Z.2
Molisch, A.F.3
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6
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0036564137
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Evaluation of an ultra-wideband propagation channel
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May
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R. J.-M. Cramer, R. A. Scholtz, and M. Z. Win, "Evaluation of an ultra-wideband propagation channel," IEEE Trans. Antennas Propagat., vol. 50, pp. 561-570, May 2002.
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(2002)
IEEE Trans. Antennas Propagat.
, vol.50
, pp. 561-570
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Cramer, R.J.-M.1
Scholtz, R.A.2
Win, M.Z.3
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7
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84862383468
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Federal Communications Commission, Washington, DC
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FCC Part 15 Recommendation, Federal Communications Commission, Washington, DC. [Online]. Available: http://www.access.gpo.gov/nara/cfr/waisidx/47cfr15.html.
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FCC Part 15 Recommendation
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9
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0038308006
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An adaptive codec for multiuser-interference mitigation for UWB-based WLANs
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Anchorage, AK, May 11-15
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E. Baccarelli and M. Biagi, "An adaptive codec for multiuser-interference mitigation for UWB-based WLANs," in Proc. Int. Conf. Communications, vol. 3, Anchorage, AK, May 11-15, 2003, pp. 2020-2024.
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(2003)
Proc. Int. Conf. Communications
, vol.3
, pp. 2020-2024
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Baccarelli, E.1
Biagi, M.2
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10
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84900014226
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A novel approach to in-band interference mitigation in ultra-wideband radio systems
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May
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E. Baccarelli, M. Biagi, and L. Taglione, "A novel approach to in-band interference mitigation in ultra-wideband radio systems," in Proc. Ultra-Wideband Systems and Technologies Conf., May 2002, pp. 297-302.
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(2002)
Proc. Ultra-Wideband Systems and Technologies Conf.
, pp. 297-302
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Baccarelli, E.1
Biagi, M.2
Taglione, L.3
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11
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0031649765
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Performance of ultra-wideband time-shift-modulated signals in the indoor wireless impulse radio channel
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Nov. 2-5
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F. Ramirez Mireles, M. Z. Win, and R. A. Sholtz, "Performance of ultra-wideband time-shift-modulated signals in the indoor wireless impulse radio channel," in Proc. 31st Asilomar Conf. Signals, Systems, Computers, vol. 1, Nov. 2-5, 1997, pp. 192-196.
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(1997)
Proc. 31st Asilomar Conf. Signals, Systems, Computers
, vol.1
, pp. 192-196
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Ramirez Mireles, F.1
Win, M.Z.2
Sholtz, R.A.3
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