Design of Discrete Constellations for Peak-Power-Limited complex Gaussian Channels
Author(s)
Huleihel, Wasim; Goldfeld, Ziv; Koch, Tobias; Madiman, Mokshay; Medard, Muriel
DownloadAccepted version (864.8Kb)
Open Access Policy
Open Access Policy
Creative Commons Attribution-Noncommercial-Share Alike
Terms of use
Metadata
Show full item recordAbstract
© 2018 IEEE. The capacity-achieving input distribution of the complex Gaussian channel with both average- and peak-power constraint is known to have a discrete amplitude and a continuous, uniformly-distributed, phase. Practical considerations, however, render the continuous phase inapplicable. This work studies the backoff from capacity induced by discretizing the phase of the input signal. A sufficient condition on the total number of quantization points that guarantees an arbitrarily small backoff is derived, and constellations that attain this guaranteed performance are proposed.
Date issued
2018-06Department
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer SciencePublisher
IEEE
Citation
Huleihel, Wasim, Goldfeld, Ziv, Koch, Tobias, Madiman, Mokshay and Medard, Muriel. 2018. "Design of Discrete Constellations for Peak-Power-Limited complex Gaussian Channels."
Version: Author's final manuscript