DocumentCode :
106119
Title :
Universal Communication—Part II: Channels With Memory
Author :
Lomnitz, Yuval ; Feder, Meir
Author_Institution :
Dept. of Electr. Eng.- Syst., Tel-Aviv Univ., Ramat-Aviv, Israel
Volume :
60
Issue :
7
fYear :
2014
fDate :
Jul-14
Firstpage :
3733
Lastpage :
3747
Abstract :
Consider communication over a channel whose probabilistic model is completely unknown vector-wise and is not assumed to be stationary. Communication over such channels is challenging because knowing the past does not indicate anything about the future. The existence of reliable feedback and common randomness is assumed. In a previous paper, it was shown that the Shannon capacity cannot be attained, in general, if the channel is not known. An alternative notion of capacity was defined, as the maximum rate of reliable communication by any block-coding system used over consecutive blocks. This rate was shown to be achievable for the modulo-additive channel with an individual, unknown noise sequence, and not achievable for some channels with memory. In this paper, this capacity is shown to be achievable for general channel models possibly including memory, as long as this memory fades with time. In other words, there exists a system with feedback and common randomness that, without knowledge of the channel, asymptotically performs as well as any block code, which may be designed knowing the channel. For channels in which memory does not fade with time, a weaker type of capacity is shown to be achievable.
Keywords :
block codes; channel capacity; probability; telecommunication network reliability; Shannon capacity; block-coding system; communication reliability; feedback communication; modulo-additive channel; probabilistic model; universal communication; unknown noise sequence; Channel capacity; Decoding; Error probability; Fading; Noise; Random variables; Reliability; Unknown channels; arbitrarily varying channels; channels with memory; feedback communication; universal communication;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2014.2321744
Filename :
6810182
Link To Document :
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