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Cyclic delay diversity with linear precoding technique adopted in OFDM systems

机译:OFDM系统中采用线性预编码技术的循环延迟分集

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Cyclic delay diversity (CDD) is considered a simple approach to exploit the frequency diversity, to improve the system performance in orthogonal frequency division multiplexing (OFDM) systems. Also, the linear precoding technique can significantly improve the performance of communication systems by exploiting the channel state information (CSI). In order to achieve enhanced performance, we propose applying linear precoding to the conventional CDD-OFDM transmit diversity schemes over Rayleigh fading channels. The proposed scheme works effectively with the accurate CSI in time-division-duplex (TDD) OFDM systems with CDD, where the reciprocity is assumed instead of channel state feedback. For a bit error rate (BER) of 10−4 and the mobility of 3 km/h, simulation results show that a gain of 6 dB is achieved by the proposed scheme over both flat fading and Pedestrian A (Ped A) channels, compared to the conventional CDD-OFDM system. On the other hand, for a mobility of 120 km/h, a gain of 2.7 dB and 3.8 dB is achieved in flat fading and Vehicular A (Veh A) channels, respectively.
机译:循环延迟分集(CDD)被认为是利用频率分集的简单方法,提高正交频分复用(OFDM)系统中的系统性能。而且,线性预编码技术可以通过利用信道状态信息(CSI)来显着提高通信系统的性能。为了实现增强的性能,我们建议将线性预编码应用于Rayleigh衰落通道的传统CDD-OFDM发射分集方案。所提出的方案有效地与CDD的时间分割 - 双工(TDD)OFDM系统中的准确CSI有效地工作,其中假设互易性而不是信道状态反馈。对于误码率(BER)为10 -4 和3km / h的移动性,仿真结果表明,通过扁平衰落和行人A的提出方案实现了6 dB的增益(PED A)通道,与传统的CDD-OFDM系统相比。另一方面,对于120 km / h的迁移率,分别在平坦的衰落和车辆A(VATHA)通道中实现2.7dB和3.8dB的增益。

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