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Improving Error Resiliency of Sparse Code Multiple Access Using Precoding and Non-orthogonal Signaling Techniques

机译:使用预编码和非正交信号技术提高稀疏代码多访问的误差弹性

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The high data rate and seamless connectivity requirements in cellular networks make it necessary to explore key-enabling technologies for next generation (5G) wireless communication networks. Recent studies in 5G physical layer technologies consider the use of non-orthogonal multiple access and non-orthogonal signaling techniques as means to achieve better spectral efficiency at an acceptable link level performance. In this paper, a new multi-user transmission scheme is presented which combines Sparse Code Multiple Access (SCMA), a non-orthogonal multiple access technique that exploits codeword sparsity, with a non-orthogonal multicarrier signal that uses precoding and tight subcarrier packing schemes. The study assesses the impact of bandwidth compression and iterative decoding complexity on the bit error rate (BER) performance of the system. Modeling is done in simple Gaussian noise channels and channels experiencing independent frequency-flat Rayleigh fading per sample. Simulation results are provided showing that proposed transmission scheme can achieve better error resiliency while maintaining the spectral efficiency of conventional SCMA.
机译:蜂窝网络中的高数据速率和无缝连接要求使得有必要探索下一代(5G)无线通信网络的关键能够实现技术。最近在5G物理层技术中的研究考虑使用非正交多次访问和非正交信令技术作为在可接受的链路水平性能下实现更好的光谱效率的方法。在本文中,提出了一种新的多用户传输方案,其组合了稀疏代码多址(SCMA),这是一种利用码字稀疏性的非正交多址技术,具有使用预编码和紧密的子载波包装方案的非正交多载波信号。该研究评估带宽压缩和迭代解码复杂性对系统的误码率(BER)性能的影响。建模是在简单的高斯噪声通道和频道经历独立频率平瑞利衰落的频道。提供了模拟结果,示出了所提出的传输方案可以在保持传统SCMA的光谱效率的同时实现更好的误差弹性。

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