三维MIMO-OFDMA系统中三维波束形成的节能资源分配

Zhe Li, Yueyun Chen, Zhiyuan Mai
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引用次数: 1

摘要

本文研究了正交频分多址(OFDMA)三维MIMO系统的能量效率。在三维MIMO-OFDMA通信系统中,通过动态垂直波束形成来利用蜂窝用户的特定向下倾斜角度。我们提出的优化问题的目标是共同关注资源块分配,功率分配和向下倾斜角度调整,以最大限度地提高能源效率,以“比特每焦耳”为度量标准。证明了节能优化问题可以转化为等价形式,并可以用迭代算法求解。在每次迭代中使用拉格朗日对偶方法,我们可以得到闭型解。仿真结果表明,在不考虑用户特定下倾角的情况下,本文提出的高效资源分配算法在二维MIMO系统中优于传统算法。
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Energy-efficient resource allocation with 3D beamforming in 3D MIMO-OFDMA systems
The paper investigates the energy efficiency of the 3D MIMO systems with Orthogonal Frequency Division Multiple-Access (OFDMA). In 3D MIMO-OFDMA communication systems, cellular users' specific downtilt angles are exploited through dynamic vertical beamforming. The objective of our proposed optimization problem is jointly concerning resource block assignment, power allocation and downtilt angles adjustment to maximize the energy efficiency measured by the metric of “bits-per-Joule”. We prove that the energy-efficient optimization problem can be transformed into an equivalent form which can be solved by an iterative algorithm. With the Lagrange dual method utilized in each iteration, we can obtain the closed-form solution. Simulation results validate that our proposed energy-efficient resource allocation algorithm outperforms the traditional algorithm in two-dimensional (2D) MIMO systems without considering the user's specific downtilt angle.
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