Covariance-Based Activity Detection in Cooperative Multi-Cell Massive MIMO: Scaling Law and Efficient Algorithms

IF 2.2 3区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
Ziyue Wang;Ya-Feng Liu;Zhaorui Wang;Wei Yu
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引用次数: 0

Abstract

This paper focuses on the covariance-based activity detection problem in a multi-cell massive multiple-input multiple-output (MIMO) system. In this system, active devices transmit their signature sequences to multiple base stations (BSs), and the BSs cooperatively detect the active devices based on the received signals. While the scaling law for the covariance-based activity detection in the single-cell scenario has been extensively analyzed in the literature, this paper aims to analyze the scaling law for the covariance-based activity detection in the multi-cell massive MIMO system. Specifically, this paper demonstrates a quadratic scaling law in the multi-cell system, under the assumption that the path-loss exponent of the fading channel $\gamma \gt 2$ . This finding shows that, in the multi-cell massive MIMO system, the maximum number of active devices that can be correctly detected in each cell increases quadratically with the length of the signature sequence and decreases logarithmically with the number of cells (as the number of antennas tends to infinity). Moreover, in addition to analyzing the scaling law for the signature sequences randomly and uniformly distributed on a sphere, the paper also establishes the scaling law for signature sequences based on a finite alphabet, which are easier to generate and store. Finally, this paper proposes two efficient accelerated coordinate descent (CD) algorithms with a convergence guarantee for solving the device activity detection problem. The first algorithm reduces the complexity of CD by using an inexact coordinate update strategy. The second algorithm avoids unnecessary computations of CD by using an active set selection strategy. Simulation results show that the proposed algorithms exhibit excellent performance in terms of computational efficiency and detection error probability.
基于协方差的多蜂窝大规模 MIMO 合作活动检测:缩放定律和高效算法
本文重点研究多小区大规模多输入多输出(MIMO)系统中基于协方差的活动检测问题。在该系统中,有源设备向多个基站(BS)发送其特征序列,而基站则根据接收到的信号合作检测有源设备。文献中已广泛分析了单蜂窝场景中基于协方差的活动检测的缩放规律,本文旨在分析多蜂窝大规模 MIMO 系统中基于协方差的活动检测的缩放规律。具体来说,本文在假设衰落信道的路径损耗指数为 $\gamma \gt 2$ 的情况下,证明了多蜂窝系统中的二次缩放规律。这一发现表明,在多小区大规模 MIMO 系统中,每个小区能被正确检测到的有源设备的最大数量随签名序列长度的增加而二次方增加,随小区数量的增加而对数减少(因为天线数量趋于无穷大)。此外,除了分析随机均匀分布在球面上的签名序列的缩放规律外,本文还建立了基于有限字母表的签名序列的缩放规律,这种签名序列更容易生成和存储。最后,本文为解决设备活动检测问题提出了两种高效的加速坐标下降(CD)算法,并保证了收敛性。第一种算法通过使用非精确坐标更新策略降低了 CD 的复杂性。第二种算法通过使用活动集选择策略,避免了 CD 的不必要计算。仿真结果表明,所提出的算法在计算效率和检测错误概率方面表现出色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IEEE Transactions on Information Theory
IEEE Transactions on Information Theory 工程技术-工程:电子与电气
CiteScore
5.70
自引率
20.00%
发文量
514
审稿时长
12 months
期刊介绍: The IEEE Transactions on Information Theory is a journal that publishes theoretical and experimental papers concerned with the transmission, processing, and utilization of information. The boundaries of acceptable subject matter are intentionally not sharply delimited. Rather, it is hoped that as the focus of research activity changes, a flexible policy will permit this Transactions to follow suit. Current appropriate topics are best reflected by recent Tables of Contents; they are summarized in the titles of editorial areas that appear on the inside front cover.
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