论文标题

密集的小细胞网络的非合并关节传输边界:全球最优性,有效的解决方案和分布式实现

Noncoherent Joint Transmission Beamforming for Dense Small Cell Networks: Global Optimality, Efficient Solution and Distributed Implementation

论文作者

Vu, Quang-Doanh, Tran, Le-Nam, Juntti, Markku

论文摘要

我们研究了密集的小细胞网络中协调的多点非合并关节传输(JT)。目的是为宏单元和小单元基站(BSS)设计波束成形向量,以使系统的加权总和速率最大化,但要在单个BSS处的总发射功率。优化问题本质上是非概念且棘手的,因此很难探索该方案的全部潜在性能。为此,我们首先提出了一种算法,以根据通用单调分支减少和结合优化框架找到全球最佳解决方案。然后,对于更有效的计算方法,我们采用内部近似(INAP)技术来有效地得出局部最佳解决方案,该解决方案在数值上显示以实现近乎最佳的性能。此外,对于分散的网络,例如由多访问边缘计算服务器组成的网络,我们基于乘数的交替方向方法开发了一种算法,该方法分布了基于INAP的解决方案。我们的主要结论是,非合并的JT是致密的小细胞网络的有前途的传输方案,因为它可以利用密度增长增益,胜过协调的光束成立,并且可以符合分布式实现。

We investigate the coordinated multi-point noncoherent joint transmission (JT) in dense small cell networks. The goal is to design beamforming vectors for macro cell and small cell base stations (BSs) such that the weighted sum rate of the system is maximized, subject to a total transmit power at individual BSs. The optimization problem is inherently nonconvex and intractable, making it difficult to explore the full potential performance of the scheme. To this end, we first propose an algorithm to find a globally optimal solution based on the generic monotonic branch reduce and bound optimization framework. Then, for a more computationally efficient method, we adopt the inner approximation (InAp) technique to efficiently derive a locally optimal solution, which is numerically shown to achieve near-optimal performance. In addition, for decentralized networks such as those comprising of multi-access edge computing servers, we develop an algorithm based on the alternating direction method of multipliers, which distributively implements the InAp-based solution. Our main conclusion is that the noncoherent JT is a promising transmission scheme for dense small cell networks, since it can exploit the densitification gain, outperforms the coordinated beamforming, and is amenable to distributed implementation.

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