Improved Orthogonal Space-Time Block Codes with Multiple Transmit Antennas Using Hadamard Transform

Taissir Y. Elganimi, Marwan B. Elkhoja
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Abstract

In this paper, imposing the Hadamard Transform (HDT) on Orthogonal Space-Time Block Codes (OSTBC) schemes using multiple transmit antennas is proposed in order to increase the reliability and improve the error performance of wireless communications. It is referred to as joint Hadamard transform and OSTBC schemes with multiple transmit antennas. However, HDT is used to change the location of constellation points by converting the transmit symbols of OSTBC system, and hence extending the Euclidean distance between transmit symbols for a precise detection. Simulation results demonstrated that increasing the number of transmit antennas in OSTBC systems employing 8-PSK improves the Bit Error Rate (BER) performance as in the case of OSTBC 2×2 scheme where an SNR of about 13.5 dB is required to achieve a BER of 10^-6, while only about 7 dB in OSTBC 8×8 scheme is required to obtain the same error probability. It is also demonstrated that imposing the Hadamard criteria on the OSTBC 2×2, 4×4, and 8×8 schemes has showed a performance improvement of about 3 dB, 6 dB and 9 dB, respectively, as compared to the conventional OSTBC systems.
利用阿达玛变换改进的多发射天线正交空时分组码
为了提高无线通信的可靠性,改善无线通信的误差性能,提出了对多发射天线正交空时分组码(OSTBC)方案进行Hadamard变换(HDT)的方法。它被称为具有多个发射天线的Hadamard变换和OSTBC联合方案。而HDT则是通过转换OSTBC系统的发射符号来改变星座点的位置,从而延长发射符号之间的欧氏距离,实现精确探测。仿真结果表明,在采用8-PSK的OSTBC系统中,增加发射天线的数量可以提高误码率(BER)性能,在OSTBC 2×2方案中,大约需要13.5 dB的信噪比才能实现10^-6的误码率,而在OSTBC 8×8方案中,大约只需要7 dB就可以获得相同的误码率。研究还表明,将Hadamard标准应用于OSTBC 2×2、4×4和8×8方案,与传统的OSTBC系统相比,性能分别提高了约3 dB、6 dB和9 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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