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Hybrid analog-digital precoding for millimeter wave MIMO systems

机译:毫米波MIMO系统的混合模拟 - 数字预编码

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Traditional all-digital precoder due to the huge hardware cost of the RF chain, making it no longer suitable for mmWave large-scale MIMO systems, hybrid analog/digital precoding is proposed to reduce the hardware cost of RF components while achieving similar performance to all-digital precoder. This paper presents a TOMP hybrid precoding algorithm. In the algorithm, the optimal all-digital precoding matrix is obtained by singular value decomposition of the channel matrix. Using the designed initial matrix as the RF precoding initial value, update the RF matrix by OMP idea, and then defining algorithm end conditions, using iterative improvements to improve the performance of hybrid precoders. In addition, the influence of different precoding schemes on energy efficiency performance is analyzed from two aspects: signal-to-noise ratio and radio frequency chain number. The simulation results show that the TOMP algorithm appears to provide high performance than the OMP algorithm and close to the optimal all-digital precoding scheme. Energy efficiency analysis results show that it is more appropriate to adopt a hybrid precoding scheme to guarantee both spectral efficiency and energy efficiency.
机译:传统的全数字预编码器由于RF链的巨大硬件成本,使其不再适用于MMWAVE大型MIMO系统,提出了混合模拟/数字预编码,以降低RF组件的硬件成本,同时实现对所有的类似性能 - 特点预编码器。本文介绍了TOMP混合预编码算法。在算法中,通过信道矩阵的奇异值分解获得最佳的全数字预编码矩阵。使用设计的初始矩阵作为RF预编码初始值,通过OMP思想更新RF矩阵,然后使用迭代改进来定义算法结束条件来提高混合预制器的性能。此外,从两个方面分析了不同预编码方案对能效性能的影响:信噪比和射频链数。仿真结果表明,TOMP算法似乎提供高​​性能而不是OMP算法,并接近最佳的全数字预编码方案。能效分析结果表明,采用混合预编码方案以保证光谱效率和能量效率更为合适。

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