Low PAPR Signal Design for CIOD Using Selected and Clipped QAM Signal

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초록

Coordinate interleaved orthogonal design (CIOD) using four transmit antennas provides full diversity, full rate (FDFR) properties with low decoding complexity. However, the constellation expansion due to the coordinate interleaving of the rotated constellation results in peak to average power ratio (PAPR) increase. In this paper, we propose two signal constellation design methods which have low PAPR. In the first method we propose a signal constellation by properly selecting the signal points among the expanded square QAM constellation points, based on the co-prime interleaving of the first coordinate signal. We design a regular interleaving pattern so that the coordinate distance product (CPD) after the interleaving becomes large to get the additional coding gain. In the other method we propose a novel constellation with low PAPR based on the clipping of the rotated square QAM constellation. Our proposed signal constellations show much lower PAPR than the ordinary rotated QAM constellations for CIOD.

키워드

quasi-orththogonal codesCIODspace-time block codes (STBSs)transmit diversityPAPR reductionSPACE-TIME CODESORTHOGONAL DESIGNSPOWER RATIOBLOCK CODESTBCS
제목
Low PAPR Signal Design for CIOD Using Selected and Clipped QAM Signal
저자
Lee, Ho KyoungKim, ChangjoongHeo, Seo Weon
DOI
10.1587/transcom.2015EBP3179
발행일
2016-05
유형
Article
저널명
IEICE Transactions on Communications
E99B
5
페이지
1143 ~ 1150