Title
Performance Improvement of Space Shift Keying MIMO Systems with Orthogonal Codebook-Based Phase-Rotation Precoding.
Abstract
This paper considers codebook-based precoding for Space Shift Keying (SSK) modulation MIMO system. Codebook-based precoding avoids the necessity for full knowledge of Channel State Information (CSI) at the transmitter and alleviates the complexity of generating a CSI-optimized precoder. The receiver selects the codeword that maximizes the Minimum Euclidean Distance (MED) of the received constellation and feeds back its index to the transmitter. In this paper, we first develop a new accurate closed-form Bit Error Rate (BER) for SSK without precoding. Then, we investigate several phase-rotation codebooks with quantized set of phases and systematic structure. Namely, we investigate the Full-Combination, Walsh-Hadamard, Quasi-Orthogonal Sequences, and Orthogonal Array Testing codebooks. In addition, since the size of the Full-Combination codebook may be large, we develop an iterative search method for fast selection of its best codeword. The proposed codebooks significantly improve the BER performance in Rayleigh and Nakagami fading channels, even at high spatial correlation among transmit antennas and CSI estimation error. Moreover, we show that only four phases {+1, +j, -1, -j} are sufficient and further phase granularity does yield significant gain. This avoids hardware multiplication during searching the codebook and applying the codeword.
Year
DOI
Venue
2017
10.1155/2017/4359843
WIRELESS COMMUNICATIONS & MOBILE COMPUTING
Field
DocType
Volume
Transmitter,Telecommunications,Spatial correlation,Computer science,Euclidean distance,Algorithm,MIMO,Precoding,Channel state information,Codebook,Bit error rate,Distributed computing
Journal
2017
ISSN
Citations 
PageRank 
1530-8669
2
0.37
References 
Authors
20
3
Name
Order
Citations
PageRank
Mohammed Alansi121.38
Syed Alwee Aljunid2145.58
Essam Sourour3286.01