Title :
Algebraic distributed differential space-time codes with low decoding complexity
Author :
Rajan, G. Susinder ; Rajan, B. Sundar
Author_Institution :
Dept. of Electr. Commun. Eng., Indian Inst. of Sci., Bangalore
fDate :
10/1/2008 12:00:00 AM
Abstract :
The differential encoding/decoding setup introduced by Kiran et al, Oggier-Hassibi and Jing-Jafarkhani for wireless relay networks that use codebooks consisting of unitary matrices is extended to allow codebooks consisting of scaled unitary matrices. For such codebooks to be usable in the Jing-Hassibi protocol for cooperative diversity, the conditions involving the relay matrices and the codebook that need to be satisfied are identified. Using the algebraic framework of extended Clifford algebras, a new class of Distributed Differential Space-Time Codes satisfying these conditions for power of two number of relays and also achieving full cooperative diversity with a low complexity sub-optimal receiver is proposed. Simulation results indicate that the proposed codes outperform both the cyclic codes as well as the circulant codes. Furthermore, these codes can also be applied as Differential Space-Time codes for noncoherent communication in classical point to point multiple antenna systems.
Keywords :
algebraic codes; diversity reception; radio networks; space-time codes; Jing-Hassibi protocol; algebraic distributed differential space-time codes; algebraic framework; circulant codes; codebooks; cooperative diversity; cyclic codes; decoding complexity; differential encoding/decoding setup; extended Clifford algebras; low complexity sub-optimal receiver; noncoherent communication; point to point multiple antenna systems; relay matrices; unitary matrices; wireless relay networks; Algebra; Councils; Decoding; Encoding; Fading; Frame relay; MIMO; Protocols; Signal processing; Space time codes; Algebra, cooperative diversity, low decoding complexity, space-time coding;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/T-WC.2008.070530