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Matrix inversion-less direct decoding for efficient channel estimation in fifth-generation massive MIMO systems

机译:第五代大型MIMO系统中有效信道估计的矩阵反转直接解码

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Massive multiple-input-multiple-output (MIMO) is a fifth-generation wireless technology that equips the cellular base stations (BSs) with a very large number of antenna and is a communication technique of serving several users. Aiming at the problem of the high computational complexity of linear channel estimation and linear decoding in massive MIMO systems, this study proposes two low-complexity decoding algorithms according to the characteristics of the system. The fast decoding algorithm is designed by using the asymptotic orthogonality of the channel in the system to avoid solving the inverse of the channel matrix. In combination with increasing the number of base BS antennas to optimise user channel characteristics, a simple operator decoding algorithm is designed to realise direct decoding without estimating the channel. Simulation results show that the proposed algorithms can effectively reduce the computational complexity while ensuring system performance.
机译:巨大的多输入 - 多输出(MIMO)是第五代无线技术,其具有大量天线的蜂窝基站(BSS),是服务多个用户的通信技术。针对大规模MIMO系统中线性信道估计和线性解码的高计算复杂性的问题,本研究提出了根据系统特性的两个低复杂性解码算法。通过使用系统中的信道的渐近正交性来设计快速解码算法,以避免求解信道矩阵的逆。结合增加基础BS天线的数量以优化用户信道特性,设计简单的操作员解码算法旨在实现直接解码而不估计信道。仿真结果表明,该算法可以有效地降低计算复杂性,同时确保系统性能。

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