Gaussian Interference Channel with Intermittent Feedback
We investigate how to exploit intermittent feedback for interference management by studying the two-user Gaussian interference channel (IC). We approximately characterize (within a universal constant) the capacity region for the Gaussian IC with intermittent feedback. We exactly characterize the the...
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| Published in | arXiv.org |
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| Main Authors | , , |
| Format | Paper Journal Article |
| Language | English |
| Published |
Ithaca
Cornell University Library, arXiv.org
30.08.2015
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| ISSN | 2331-8422 |
| DOI | 10.48550/arxiv.1408.4590 |
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| Abstract | We investigate how to exploit intermittent feedback for interference management by studying the two-user Gaussian interference channel (IC). We approximately characterize (within a universal constant) the capacity region for the Gaussian IC with intermittent feedback. We exactly characterize the the capacity region of the linear deterministic version of the problem, which gives us insight into the Gaussian problem. We find that the characterization only depends on the forward channel parameters and the marginal probability distribution of each feedback link. The result shows that passive and unreliable feedback can be harnessed to provide multiplicative capacity gain in Gaussian interference channels. We find that when the feedback links are active with sufficiently large probabilities, the perfect feedback sum-capacity is achieved to within a constant gap. In contrast to other schemes developed for interference channel with feedback, our achievable scheme makes use of quantize-map-and-forward to relay the information obtained through feedback, performs forward decoding, and does not use structured codes. We also develop new outer bounds enabling us to obtain the (approximate) characterization of the capacity region. |
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| AbstractList | We investigate how to exploit intermittent feedback for interference
management by studying the two-user Gaussian interference channel (IC). We
approximately characterize (within a universal constant) the capacity region
for the Gaussian IC with intermittent feedback. We exactly characterize the the
capacity region of the linear deterministic version of the problem, which gives
us insight into the Gaussian problem. We find that the characterization only
depends on the forward channel parameters and the marginal probability
distribution of each feedback link. The result shows that passive and
unreliable feedback can be harnessed to provide multiplicative capacity gain in
Gaussian interference channels. We find that when the feedback links are active
with sufficiently large probabilities, the perfect feedback sum-capacity is
achieved to within a constant gap. In contrast to other schemes developed for
interference channel with feedback, our achievable scheme makes use of
quantize-map-and-forward to relay the information obtained through feedback,
performs forward decoding, and does not use structured codes. We also develop
new outer bounds enabling us to obtain the (approximate) characterization of
the capacity region. We investigate how to exploit intermittent feedback for interference management by studying the two-user Gaussian interference channel (IC). We approximately characterize (within a universal constant) the capacity region for the Gaussian IC with intermittent feedback. We exactly characterize the the capacity region of the linear deterministic version of the problem, which gives us insight into the Gaussian problem. We find that the characterization only depends on the forward channel parameters and the marginal probability distribution of each feedback link. The result shows that passive and unreliable feedback can be harnessed to provide multiplicative capacity gain in Gaussian interference channels. We find that when the feedback links are active with sufficiently large probabilities, the perfect feedback sum-capacity is achieved to within a constant gap. In contrast to other schemes developed for interference channel with feedback, our achievable scheme makes use of quantize-map-and-forward to relay the information obtained through feedback, performs forward decoding, and does not use structured codes. We also develop new outer bounds enabling us to obtain the (approximate) characterization of the capacity region. |
| Author | I-Hsiang, Wang Diggavi, Suhas Karakus, Can |
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| BackLink | https://doi.org/10.48550/arXiv.1408.4590$$DView paper in arXiv https://doi.org/10.1109/TIT.2015.2452915$$DView published paper (Access to full text may be restricted) |
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| Snippet | We investigate how to exploit intermittent feedback for interference management by studying the two-user Gaussian interference channel (IC). We approximately... We investigate how to exploit intermittent feedback for interference management by studying the two-user Gaussian interference channel (IC). We approximately... |
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| SubjectTerms | Communication channels Computer Science - Information Theory Decoding Feedback Interference Mathematics - Information Theory |
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| Title | Gaussian Interference Channel with Intermittent Feedback |
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