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by Michele Zorzi, Ramesh R. Rao, Laurence B. Milstein
http://aloha.ucsd.edu/~zorzi/papers/ICUPC95_Markov.ps
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Abstract:

On the accuracy of a first-order Markov model for data transmission on fading channels

Citations

793 Computer Networks – Tanenbaum - 1996
613 Microwave Mobile Communications – Jakes - 1974
174 Capacity of a burst-noise channel – Gilbert - 1960
64 On Verifying the First-order Markovian Assumption for a Rayleigh Fading Channel Model – Wang, Chang - 1995
47 A Statistical Theory of Mobile Radio Reception – Clarke - 1968
24 Performance of ARQ Protocols in Nonindependent Channel Errors – Lu, Chang - 1993
24 C.K.: “Performance analysis of ARQ error controls under Markovian block error pattern – Cho, Un - 1994
18 The throughput efficiency of the Go-Back-N ARQ scheme under Markov and related error structures – Leung, Kikumoto, et al. - 1988
17 Multidimensional Gaussian Distributions – Miller - 1964
17 Throughput analysis for two ARQ schemes using combined transition matrix – Kim, Un - 1992
12 Comparison of two ARQ protocols in a Rayleigh fading channel – Chuang - 1990
10 Throughput estimation of ARQ protools for a Rayleigh fading channel using fade- and interfade-duration statistics – Chang - 1991
9 Performance of ARQ Go-Back-N protocol in Markov Channels with Unreliable Feedback: Delay Analysis – Zorzi, Rao - 1995
6 Throughput analysis of ARQ Go-Back-N protocol in Markov channels with unreliable feedback – Zorzi, Rao - 1995
5 Throughput analysis of ARQ Selective-Repeat protocol with time diversity in Markov channels – Zorzi, Rao - 1995