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Wavelet OFDM with Overlap FDE for non-Gaussian channels in precoded NOMA based systems

机译:预编码基于NOMA的系统中的非高斯信道的具有重叠FDE的小波OFDM

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Non-orthogonal multiple access (NOMA) is considered as a prominent multiple access technique for fifth generation (5G) systems mainly because of its high spectral efficiency (SE). NOMA based system employs superposition coding (SC) and successive interference cancellation (SIC) at the transmitter and receiver side respectively. Classical multi-carrier NOMA adopts orthogonal frequency division multiplexing (OFDM) as a multi-carrier modulation (MCM) technique; however, high peak to average power ratio (PAPR) and cyclic prefix (CP) inclusion makes OFDM an inadequate choice for NOMA. To improve SE of the OFDM-NOMA, wavelet transform (WT) has been proposed for NOMA. This article proposes new physical layer techniques based on OFDM-NOMA and Wavelet OFDM (WOFDM) -NOMA for tactile internet and investigates their performance in the presence of Gaussian and non-Gaussian channels. Overlap frequency domain equalization (OFDE) is proposed as a robust equalization technique to improve the performance of SIC in the presence of Gaussian and non-Gaussian channels for OFDM-NOMA and WOFDM-NOMA. Moreover, to enhance the equalization efficiency of the OFDE, linear precoding (LP) in the form of Walsh Hadamard transform (WHT) is also recommended for OFDM and WOFDM based NOMA transceivers which improves the reliability of the network. Performance of the proposed precoded OFDM-NOMA and precoded WOFDM-NOMA with OFDE is analyzed in the presence of additive white Gaussian noise (AWGN) and impulse noise for Rayleigh fading channel. Link level performance of the presented structures for downlink NOMA is evaluated in terms of bit error rate (BER), PAPR, SE and computational complexity (CC). Furthermore, performance of the proposed architectures is also compared in the presence of impulse noise having different intensities. Simulation results via computer show that the proposed precoded WOFDM-NOMA with OFDE transceiver incorporates low latency through waveform shaping and enhanced reliability through precoding and efficient equalization. Thus, proposed advanced physical layer not only performs better than its counterparts but presence of OFDE enhances SIC performance even in the presence of impulse noise at the expense of slight elevation in CC. (C) 2019 Published by Elsevier B.V.
机译:非正交多址(NOMA)被认为是第五代(5G)系统的一种重要的多址技术,主要是因为其频谱效率(SE)高。基于NOMA的系统分别在发射机和接收机侧采用叠加编码(SC)和连续干扰消除(SIC)。传统的多载波NOMA采用正交频分复用(OFDM)作为多载波调制(MCM)技术;但是,高峰均功率比(PAPR)和循环前缀(CP)包含在内使OFDM成为NOMA的不适当选择。为了改善OFDM-NOMA的SE,已经提出了用于NOMA的小波变换(WT)。本文针对触觉互联网提出了一种基于OFDM-NOMA和小波OFDM(WOFDM)-NOMA的新物理层技术,并研究了它们在高斯和非高斯信道存在下的性能。提出了重叠频域均衡(OFDE)作为一种鲁棒的均衡技术,以在存在高斯信道和非高斯信道的情况下提高OFDM-NOMA和WOFDM-NOMA的SIC性能。此外,为了提高OFDE的均衡效率,还建议将Walsh Hadamard变换(WHT)形式的线性预编码(LP)用于基于OFDM和WOFDM的NOMA收发器,从而提高网络的可靠性。在存在加性高斯白噪声(AWGN)和瑞利衰落信道脉冲噪声的情况下,分析了所提出的预编码OFDM-NOMA和带ODE的预编码WOFDM-NOMA的性能。根据比特错误率(BER),PAPR,SE和计算复杂度(CC)评估了所提出的下行链路NOMA结构的链路级性能。此外,在存在具有不同强度的脉冲噪声的情况下,还比较了所提出的体系结构的性能。通过计算机进行的仿真结果表明,所提出的带有OFDE收发器的预编码WOFDM-NOMA通过波形整形实现了低延迟,并通过预编码和有效的均衡增强了可靠性。因此,提出的高级物理层不仅性能优于同类物理层,而且即使存在脉冲噪声,OFDE的存在也会提高SIC性能,但会以CC的轻微升高为代价。 (C)2019由Elsevier B.V.发布

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