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Publikováno v:
Entropy, Vol 19, Iss 9, p 467 (2017)
Let ( S 1 , i , S 2 , i ) ∼ i . i . d p ( s 1 , s 2 ) , i = 1 , 2 , ⋯ be a memoryless, correlated partial side information sequence. In this work, we study channel coding and source coding problems where the partial side information ( S 1 , S 2 )
Externí odkaz:
https://doaj.org/article/461f80052f0e413b843b70f523788614
Publikováno v:
Entropy; Volume 19; Issue 9; Pages: 467
Entropy, Vol 19, Iss 9, p 467 (2017)
Entropy, Vol 19, Iss 9, p 467 (2017)
Let (S1,i, S2,i), distributed according to i.i.d p(s1, s2), i = 1, 2, . . . be a memoryless, correlated partial side information sequence. In this work we study channel coding and source coding problems where the partial side information (S1, S2) is
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bbe72e7d330887c737a8b0ea858a990b
A single-letter characterization is provided for the capacity region of finite-state multiple access channels. The channel state is a Markov process, the transmitters have access to delayed state information, and channel state information is availabl
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::61c1de5fd8eb7592ddf2b2d335c35a74
Publikováno v:
2010 IEEE 26-th Convention of Electrical and Electronics Engineers in Israel.
A single-letter characterization is provided for the capacity region of finite-state multiple access channels, when the channel state is a Markov process, the transmitters have access to delayed state information, and channel state information is ava
Publikováno v:
2010 IEEE 26-th Convention of Electrical and Electronics Engineers in Israel.
Let (S 1, i , S 2, i ) ∼ i.i.d p(s 1 , s 2 ), i = 1, 2, … be a memoryless correlated partial side information sequence. In this work we study channel coding and source coding problems, where the encoder is informed with the encoder's side informa
Publikováno v:
2010 48th Annual Allerton Conference on Communication, Control, and Computing (Allerton).
A single-letter characterization is provided for the capacity region of finite-state multiple access channels, when the channel state is a Markov process, the transmitters have access to delayed state information, and channel state information is ava