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首页> 外文期刊>IEEE Transactions on Signal Processing >Omnidirectional Precoding for Massive MIMO With Uniform Rectangular Array—Part I: Complementary Codes-Based Schemes
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Omnidirectional Precoding for Massive MIMO With Uniform Rectangular Array—Part I: Complementary Codes-Based Schemes

机译:具有均匀矩形阵列的大规模MIMO的全向预编码-第一部分:基于互补码的方案

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摘要

In the public channels, it is desirable to transmit the common signals omnidirectionally to ensure cell-wide coverage. In Part I of this two-part paper, we develop low-cost closed-form omnidirectional precoding designs for a massive multiple-input multiple-output (MIMO) system equipped with a uniform rectangular array (URA). By formulating the omnidirectional transmission design for a general URA as a feasibility optimization problem, we derive an optimal solution based on the complementary set (CS) or the complete complementary codes (CCC). We prove that the precoding vectors based on the CS or CCC sequences can generate a perfectly omnidirectional power radiation pattern. Since both CS and CCC sequences are binary and constant-modulus, the proposed schemes are well suited to be implemented in the radio frequency analog domain with low hardware cost and suppressed peak-to-average power ratio. The numerical results validate the superior performance of the proposed schemes over the existing alternatives.
机译:在公共信道中,期望全向发送公共信号以确保小区范围的覆盖。在这个由两部分组成的论文的第一部分中,我们为配备了统一矩形阵列(URA)的大规模多输入多输出(MIMO)系统开发了低成本的闭式全向预编码设计。通过将通用URA的全向传输设计公式化为可行性优化问题,我们基于互补集(CS)或完整互补码(CCC)得出了最优解决方案。我们证明了基于CS或CCC序列的预编码向量可以生成完美的全向功率辐射图。由于CS和CCC序列均为二进制且具有恒定模数,因此所提出的方案非常适合在射频模拟域中以较低的硬件成本实现,并且峰均功率比得到抑制。数值结果验证了所提出的方案优于现有方案的性能。

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