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Reduced Complexity Decoding of n x n Algebraic Space-Time Codes

Published 27 Jan 2015 in cs.IT and math.IT | (1501.06686v1)

Abstract: Algebraic space-time coding allows for reliable data exchange across fading multiple-input multiple-output channels. A powerful technique for decoding space-time codes in Maximum-Likelihood (ML) decoding, but well-performing and widely-used codes such as the Golden code often suffer from high ML-decoding complexity. In this article, a recursive algorithm for decoding general algebraic space-time codes of arbitrary dimension is proposed, which reduces the worst-case decoding complexity from O(∣S∣<sup>n<sup>2)O(|S|<sup>{n<sup>2}) to O(∣S∣<sup>n)O(|S|<sup>n).

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