459 results on '"Milstein, L.B."'
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52. Distributed Link Scheduling, Power Control and Routing for Multi-hop Wireless MIMO Networks.
53. Joint Acquisition/Channel Estimation for UWB Communications in the Presence of Narrow-band Interference.
54. Distributed Power and Scheduling Management for Mobile Ad Hoc Networks with Delay Constraints.
55. n-Channel Symmetric Motion-Compensated Multiple Description Coding for Video Communications over OFDM Networks.
56. Performance Analysis of Multiple Antenna DS-CDMA UWB System with Noisy Channel Estimates and Narrow-Band Interference.
57. WLC36-6: Multicode MIMO for High Data Rate Mobile Ad-hoc Networks.
58. Joint Code Acquisition and Channel Estimation for UWB Transmission.
59. The effects of phase estimation errors on RAKE receiver performance
60. Coarse Acquisition Performance of Spectral-Encoded UWB Communication Systems in the Presence of Narrow-Band Interference.
61. Impact of feedback errors in multiuser diversity systems.
62. Comments on 'Carrier Tracking in RAKE Reception of Wide-band DSSS in Riccan Fading'
63. Spectral-encoded UWB communication systems.
64. A non-Gaussian approach to the performance analysis of UWB TH-BPPM systems.
65. Performance of adaptive linear interference suppression in the presence of dynamic fading
66. The effect of low SNR in phase estimation in wideband CDMA
67. Combined MMSE interference suppression and turbo coding for a coherent DS-CDMA system
68. Corrections to "Effects of carrier tracking in RAKE reception of wide-band DSSS in ricean fading"
69. Acquisition of direct sequence spread spectrum signals with correlated fading
70. Comparing DS-CDMA and multicarrier CDMA with imperfect channel estimation.
71. Acquisition of direct sequence spread spectrum signals in frequency selective Rayleigh and Ricean channels.
72. Wideband code division multiple access
73. Uplink performance evaluation of multicode DS/CDMA systems in the presence of nonlinear distortions
74. Coding for a coherent DS-CDMA system employing an MMSE receiver in a Rayleigh fading channel
75. On the performance of hybrid FEC/ARQ systems using rate compatible punctured turbo (RCPT) codes
76. A performance bound for the LMS estimator
77. Performance analysis of MMSE receivers for DS-CDMA in frequency-selective fading channels
78. Coded modulation for a coherent DS-CDMA system employing an MMSE receiver in a fading channel
79. Effects of carrier tracking in RAKE reception of wide-band DSSS in Rician fading
80. On the effect of imperfect interleaving for the Gilbert-Elliott channel
81. Interference suppression for DS/CDMA
82. Asynchronous near-far resistant DS-CDMA receivers without a priori synchronization
83. Waveform and receiver design considerations on wideband CDMA
84. Impact of imperfect CSI estimation on multidimensional communication systems over a Rayleigh fading channel
85. Convolutionally coded multicarrier DS-CDMA systems in a multipath fading channel. II. Narrow-band interference suppression
86. Convolutionally coded multicarrier DS-CDMA systems in a multipath fading channel. I. Performance analysis
87. Optimal decision strategies for acquisition of spread-spectrum signals in frequency-selective fading channels
88. Performance of a wireless access protocol on correlated Rayleigh-fading channels with capture
89. Error statistics in data transmission over fading channels
90. Performance of closed-loop power control in DS-CDMA cellular systems
91. Capacities of FDMA/CDMA systems in the presence of phase noise and multipath Rayleigh fading
92. ARQ error control for fading mobile radio channels
93. Analysis of hybrid, coherent FDMA/CDMA systems in Ricean multipath fading
94. Partially coherent DS-SS performance in frequency selective multipath fading
95. On the performance of a higher order alphabet size in CDMA
96. Parallel acquisition in mobile DS-CDMA systems
97. Parallel acquisition of spread-spectrum signals with antenna diversity
98. Downlink DS CDMA performance over a mobile satellite channel
99. The coarse acquisition performance of a CDMA overlay system
100. A noise whitening approach to multiple-access noise rejection .II. Implementation issues
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