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Symbol detection algorithm and implementation results for space-frequency OFDM transmit diversity scheme

机译:空频OFDM发射分集方案的符号检测算法及实现结果

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摘要

In this paper, we propose two efficient symbol detection algorithms for space-frequency OFDM (SF-OFDM) transmit diversity scheme. When the number of sub-carriers in SF-OFDM scheme is small, the interference between adjacent sub-carriers is generated. The proposed algorithms eliminate this interference in parallel or sequential manner and obtain a considerable performance improvement over the conventional detection algorithm. The bit error rate (BER) performance of the proposed detection algorithms was evaluated by the simulation. In the case of 2 transmit and 2 receive antennas, at BER=10/sup -4/ the proposed algorithms obtain about 3 dB gain. In the results of logic synthesis using 0.35 /spl mu/m CMOS technology, the proposed SF-OFDM-PIC and SF-OFDM-SIC symbol detectors are composed of 28K and 26K logic gates, respectively. Since the proposed algorithms cancel the interference caused by the small number of sub-carriers and provide an excellent diversity advantage, SF-OFDM scheme with the proposed algorithms can be a good solution for the systems with the small number of sub-carriers such as wireless LANs.
机译:在本文中,我们针对空频OFDM(SF-OFDM)发射分集方案提出了两种有效的符号检测算法。当SF-OFDM方案中的子载波的数量少时,会产生相邻子载波之间的干扰。所提出的算法以并行或顺序的方式消除了这种干扰,并且与常规的检测算法相比获得了相当大的性能改进。通过仿真评估了所提出的检测算法的误码率(BER)性能。在2个发射天线和2个接收天线的情况下,在BER = 10 / sup -4 /的情况下,所提出的算法获得约3 dB的增益。在使用0.35 / spl mu / m CMOS技术进行逻辑综合的结果中,提出的SF-OFDM-PIC和SF-OFDM-SIC符号检测器分别由28K和26K逻辑门组成。由于所提出的算法消除了子载波数量少引起的干扰,并提供了出色的分集优势,因此,采用所提出算法的SF-OFDM方案对于无线通信等子载波数量少的系统来说可能是一个很好的解决方案。局域网。

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