Title :
A new design criterion for spherically-shaped division algebra-based space-time codes
Author :
Luzzi, L. ; Vehkalahti, R.
Author_Institution :
Lab. ETIS, UCP, Cergy-Pontoise, France
Abstract :
This work considers normalized inverse determinant sums as a tool for analyzing the performance of division algebra based space-time codes for multiple antenna wireless systems. A general union bound based code design criterion is obtained as a main result. In our previous work, the behavior of inverse determinant sums was analyzed using point counting techniques for Lie groups; it was shown that the asymptotic growth exponents of these sums correctly describe the diversity-multiplexing gain trade-off of the space-time code for some multiplexing gain ranges. This paper focuses on the constant terms of the inverse determinant sums, which capture the coding gain behavior. Pursuing the Lie group approach, a tighter asymptotic bound is derived, allowing to compute the constant terms for several classes of space-time codes appearing in the literature. The resulting design criterion suggests that the performance of division algebra based codes depends on several fundamental algebraic invariants of the underlying algebra.
Keywords :
algebra; algebraic codes; antenna arrays; inverse problems; space-time codes; Lie group approach; asymptotic growth exponent; diversity-multiplexing gain trade-off; multiple antenna wireless system; multiplexing gain range; normalized inverse determinant sum; point counting technique; spherically-shaped division algebra-based space-time code; Algebra; Equations; Indexes; Lattices; Quaternions; Receiving antennas; Space-time codes;
Conference_Titel :
Information Theory Workshop (ITW), 2013 IEEE
Conference_Location :
Sevilla
Print_ISBN :
978-1-4799-1321-3
DOI :
10.1109/ITW.2013.6691260