| R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, vol. 48, no. 6, pp. 1250--1276, June 2002. |
....remain attractive due to its simplicity even if superior performance of high dimensional embedding techniques can be shown in future. Note also that principles of Costa s work on communication with side information have recently gained some attention within multiuser communications [20] 21] [22]. The goal of this paper is to summarize theoretical and experimental results on the performance of the practical SCS embedding and reception technique. An accurate performance analysis is based on properly derived PDFs of the transmitted and received data. Further, a comparison of the performance ....
R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Transactions on Information Theory, vol. 48, no. 6, pp. 1250--1276, June 2002.
.... the information theory community on digital watermarking and data hiding problems, and more generally problems of coding with side information, much of which builds on the foundation of [18] 19] and [20] see, e.g. 21] 22] 23] 24] 25] 26] 27] 28] 29] 30] 31] 32] 33] 34] 35] 36] [37] and the references therein. Collectively, this work provides a useful context within which to examine the topic of authentication. In this paper, we propose one possible model for the authentication problem, and examine its implications. In terms of performance limits, we assess the inherent ....
R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, June 2002, To appear.
....be some waste on redundant information. Comment 2: Though formally we con ne attention to nite alphabets and nite sets of (U; S; X;Y;V ) since the basic W Z rate distortion function and the G P channel capacity extend, under minor regularity conditions, to general alphabets and sets (see [40] and references therein) and since our proof relies essentially on the very same arguments, Theorem 1 applies to those general settings as well. 4 Symbol by Symbol Joint Source Channel Codes Even in the classical model, without side information, it is well known that the cost of keeping the ....
....: 37) We enquire, what is the maximal source rate, s , that can be conveyed subject to these constraints. Theorem 1 tells us that for the G P channel: c H 2 ( 1 H 2 (D) 38) and, for the Shannon channel: 39) 17 where we have used the facts that CGP ( H 2 ( C S ( 2 [4] [40] and R(D) 1 H 2 (D) 12] in this case. Next, consider systematic coding. Since the systematic part has an average weight 1=2, it cannot endure for more than a fraction of 2 of the channel uses as to conform with the weight constraint (37) Now, observe that in this case, still the weight ....
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R. Zamir, S. Shamai (Shitz) and U. Erez, \Nested linear/lattice codes for structured multi{terminal binning," IEEE Trans. Inform. Theory , vol. 48, no. 6, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, vol. 48, no. 6, pp. 1250--1276, June 2002.
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R.Zamir, S.Shamai, and U. Erez, "Nested linear/lattice codes for structured multi-terminal binning, " IEEE Trans. on Inf. Theory, vol. 48, no. 6, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez. Nested linear/lattice codes for structured multiterminal binning. IEEE Trans. Inform. Theory, pages 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez. Nested linear/lattice codes for structured multiterminal binning. IEEE Trans. Inform. Theory, pages 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, pp. 12501276, June 2002.
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R. Zamir, S. Shamai (Shitz), and U. Erez, "Nested Linear /Lattice Codes for Structured Multiterminal Binning," IEEE Transactions on Information Theory, vol. 48, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Info. Theory, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Transactions on Information Theory, vol. 48, no. 6, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai (Shitz), and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, vol. 48, no. 6, pp. 1250-1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, vol. 48, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Inform. Theory, vol. 48, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Information Theory 48, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai (Shitz), and U. Erez, "Nested Linear /Lattice Codes for Structured Multiterminal Binning," IEEE Trans. IT, Vol. 48, No. 6, pp. 1250---1276, June 2002.
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R. Zamir, S. Shamai (Shitz), and U. Erez, "Nested Linear /Lattice Codes for Structured Multiterminal Binning," IEEE Transactions on Information Theory, vol. 48, pp. 1250--1276, June 2002.
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R. Zamir, S. Shamai, and U. Erez. Nested Linear/Lattice Codes for Structured Multiterminal Binning. IEEE Trans. Inform. Theory, 48(6):1250--1276, 2002.
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R. Zamir, S. Shamai, and U. Erez, "Nested linear/lattice codes for structured multiterminal binning," IEEE Trans. Information Theory, vol. 48, pp. 1250--1276, June 2002. 17
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R. Zamir, S. Shamai (Shitz), and U. Erez, "Nested linear /lattice codes for structured multiterminal binning," IEEE Trans. Info. Theory, vol. 48, no. 6, pp. 1250-1276, June 2002.
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