New Recursive Space-Time Trellis Codes From General Differential Encoding

Shengli Fu, Haiquan Wang, X. Xia
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引用次数: 4

Abstract

In this paper, a recursive space-time trellis coding (RSTTC) from general differential encoding is proposed for multiple antenna systems, where general differential encoding is implemented separately from the space-time matrix modulation. The general differential encoding is achieved by introducing a new multiplication on a set of symbols (called trellis codewords) such that the corresponding RSTTC has its minimum error event length 3 or above and in the meantime it has the minimum number of states. The space-time matrix modulation is the mapping of the differentially encoded symbols to a set of space-time matrices (called modulation codewords). Due to the separation of differential encoding and space-time matrix modulation, more freedom on the design of modulation codewords (or a space-time code) exists, which may result in a larger diversity product (or determinant distance or product distance or coding advantage) than that the existing combined differential encoding and space-time matrix modulation can achieve in the concatenation with an outer binary channel encoder proposed by Schlegel and Grant. A new design of modulation codewords is then proposed for the RSTTC with larger diversity products than the existing schemes. Simulation results are finally presented to show that our new design significantly outperforms the existing schemes
基于通用差分编码的新型递归空时格码
本文提出了一种基于一般差分编码的递推空时栅格编码(RSTTC),该方法将一般差分编码与空时矩阵调制分开实现。通用差分编码是通过在一组符号(称为格子码字)上引入新的乘法来实现的,使得相应的RSTTC具有最小错误事件长度3或以上,同时具有最小状态数。时空矩阵调制是将差分编码符号映射到一组时空矩阵(称为调制码字)。由于差分编码与空时矩阵调制的分离,在调制码字(或空时码)的设计上有了更大的自由度,与现有的差分编码与空时矩阵调制组合使用Schlegel和Grant提出的外部二进制信道编码器进行串接相比,可以获得更大的分集积(或行列式距离或乘积距离或编码优势)。在此基础上,提出了一种新的调制码字设计方案,使RSTTC具有比现有方案更大的分集积。最后给出的仿真结果表明,我们的新设计明显优于现有的方案
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