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Mitigation of Imperfect Successive Interference Cancellation and Wavelet-Based Nonorthogonal Multiple Access in the 5G Multiuser Downlink Network

机译:在5G多用户下行链路网络中减轻不完美的连续干扰消除和基于小波的非正交多访问

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The fourth Industrial Revolution is expected to lead to an era of technological innovation and digitization that would require connectivity by the users, anywhere and anytime. The fifth generation of wireless communication systems and the technologies therein are being explored to cater to high connectivity needs that encompass high data rates, very low latencies, energy-efficient systems, etc. A multiuser environment is anticipated that would require multiple access techniques, such as Nonorthogonal Multiple Access (NOMA). The user data in the power domain NOMA is superimposed, at the transmitter base station, which is in turn subjected to Successive Interference Cancellation at the user end. In the multiuser downlink, the desired user’s signal is subjected to imperfect SIC due to incomplete cancellation of the undesired user’s signal. Pulse-shaping of NOMA symbols using wavelet transform is proposed to mitigate the multiuser interference due to imperfect SIC. Closed-form symbol error rate (SER) expression is derived for the wavelet NOMA system for a three-user scenario. Analytical results show that wavelet transform pulse-shaped NOMA performs better compared to Fourier transform pulse-shaped NOMA symbols in mitigating SIC and thereby minimize the residual error due to imperfect SIC.
机译:第四次工业革命预计将导致技术创新和数字化的时代,这些数字将需要用户,任何地方和随时随地连接。正在探索第五代无线通信系统和其中的技术,以满足涵盖高数据速率,非常低的延迟,节能系统等的高连接需求。预计将需要多种访问技术,例如多种访问技术作为非正交多址(NOMA)。功率域NOMA中的用户数据叠加在发射机基站,该发射器基站又在用户端的连续干扰消除中逆转录。在多用户下行链路中,由于不完全取消了不期望的用户信号,所需的用户的信号受到不完美的SIC。建议使用小波变换的NOMA符号的脉冲整形,以减轻由于不完美的SIC引起的多用户干扰。为三用户场景的小波NOMM系统导出闭合符号错误率(SER)表达式。分析结果表明,与缓解SiC中的傅里叶变换脉冲形状符号相比,小波变换脉冲形状NOMA更好地执行,从而最小化由于不完美SiC而导致的残余误差。

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