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Published March 2011 | Accepted Version
Journal Article Open

Optimum Power and Rate Allocation for Coded V-BLAST: Average Optimization

Abstract

An analytical framework for performance analysis and optimization of coded V-BLAST is developed. Average power and/or rate allocations to minimize the outage probability as well as their robustness and dual problems are investigated. Compact, closed-form expressions for the optimum allocations and corresponding system performance are given. The uniform power allocation is shown to be near optimum in the low outage regime in combination with the optimum rate allocation. The average rate allocation provides the largest performance improvement (extra diversity gain), and the average power allocation offers a modest SNR gain limited by the number of transmit antennas but does not increase the diversity gain. The dual problems are shown to have the same solutions as the primal ones. All these allocation strategies are shown to be robust. The reported results also apply to coded multiuser detection and channel equalization systems relying on successive interference cancellation.

Additional Information

© 2011 IEEE. Paper approved by N. Al-Dhahir, the Editor for Space-Time, OFDM and Equalization of the IEEE Communications Society. Manuscript received September 15, 2009; revised February 11, 2010 and July 30, 2010. This paper was presented in part at the IEEE International Conference on Communications (ICC-09), Dresden, Germany, June 2009.

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August 19, 2023
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October 17, 2023