提高空时分组码速率的多调制方案研究

Le Chung Tran, T. Wysocki, J. Seberry, A. Mertins
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引用次数: 1

摘要

本文采用多调制方案(mms)来提高我们针对8个发射天线C1和C2提出的两种新的复正交设计(cod)的速率,分别对应于友好正交设计(aod)(8; 1,1,1,2,2;1,1,2,2)和(8;1,1,1,1,4;1,1,1,1,4)。此外,还研究了单调制和加性高斯白噪声(AWGN)信道下mss码间功率的最佳分配。结果表明,在某些调制方案中,每个码元时隙的传输功率相等不仅从技术角度看是最优的,而且从实现最佳码元误码概率的角度看也是最优的。本文所讨论的多调制空时分组码提高空时分组码率的原理和多调制空时分组码的最优功率分配,可以推广到其他阶的空时分组码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On multi-modulation schemes to increase the rate of space-time block codes
In this paper, multi-modulation schemes (MMSs) are employed to increase the rate of our two new Complex Orthogonal Designs (CODs) proposed for eight transmit antennas, namely C1 and C2, corresponding to the Amicable Orthogonal Designs (AODs) (8;1,1,2,2;1,1,2,2) and (8;1,1,1,4;1,1,1,4), respectively. In addition, the optimal inter-symbol power allocation in the proposed codes in single modulation as well as in MMSs in Additive White Gaussian Noise (AWGN) channels is examined. It turns out that, in some modulation schemes, equal power transmission per each symbol time slot is not only optimal from the technical point of view, but also optimal in terms of achieving the best symbol error probability. The principles examining the MMSs in order to increase the rate of space-time block codes (STBCs) and the optimal power allocation for multi-modulated STBCs mentioned here can be generalized for STBCs of other orders without any difficulty.
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