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首页> 外文期刊>Fluctuation and Noise Letters: FNL: An Interdisciplinary Scientific Journal on Random Processes in Physical, Biological and Technological Systems >Performance of Multi-User Transmitter Pre-Processing Assisted Multi-Cell IDMA System for Downlink Transmission
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Performance of Multi-User Transmitter Pre-Processing Assisted Multi-Cell IDMA System for Downlink Transmission

机译:下行传输的多用户发射机预处理辅助多小区IDMA系统的性能

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In this paper, we present the performance of multi-user transmitter pre-processing (MUTP) assisted coded-interleave division multiple access (IDMA) system over correlated frequency-selective channels for downlink communication. We realize MUTP using singular value decomposition (SVD) technique, which exploits the channel state information (CSI) of all the active users that is acquired via feedback channels. We consider the MUTP technique to alleviate the effects of co-channel interference (CCI) and multiple access interference (MAI). To be specific, we estimate the CSI using least square error (LSE) algorithm at each of the mobile stations (MSs) and perform vector quantization using Lloyd's algorithm, and feedback the bits that represents the quantized magnitudes and phases to the base station (BS) through the dedicated low rate noisy channel. Finally we recover the quantized bits at the BS to formulate the pre-processing matrix. The performance of MUTP aided IDMA systems are evaluated for five types of delay spread distributions pertaining to long-term evolution (LTE) and Stanford University Interim (SUI) channel models. We also compare the performance of MUTP with minimum mean square error (MMSE) detector for the coded IDMA system. The considered TP scheme alleviates the effects of CCI with less complex signal detection at the MSs when compared to MMSE detector. Further, our simulation results reveal that SVD-based MUTP assisted coded IDMA system outperforms the MMSE detector in terms of achievable bit error rate (BER) with low signal-to-noise ratio (SNR) requirement by mitigating the effects of CCI and MAI.
机译:在本文中,我们介绍了在相关频率选择信道上进行下行链路通信的多用户发射机预处理(MUTP)辅助编码交织划分多址(IDMA)系统的性能。我们使用奇异值分解(SVD)技术实现MUTP,该技术利用了通过反馈信道获取的所有活动用户的信道状态信息(CSI)。我们考虑使用MUTP技术来减轻同频干扰(CCI)和多址干扰(MAI)的影响。具体来说,我们在每个移动台(MS)使用最小二乘误差(LSE)算法估计CSI,并使用劳埃德算法执行矢量量化,然后将代表量化幅度和相位的比特反馈给基站(BS) )通过专用的低速率噪声通道。最终,我们在BS处恢复量化比特,以制定预处理矩阵。针对与长期演进(LTE)和斯坦福大学中期(SUI)信道模型有关的五种类型的延迟扩展分布,评估了MUTP辅助的IDMA系统的性能。我们还比较了MUTP与编码IDMA系统的最小均方误差(MMSE)检测器的性能。与MMSE检测器相比,考虑到的TP方案减轻了MS处CCI的影响,并降低了复杂的信号检测。此外,我们的仿真结果表明,通过降低CCI和MAI的影响,基于SVD的MUTP辅助编码IDMA系统在可实现的误码率(BER)和低信噪比(SNR)要求方面优于MMSE检测器。

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