Planning 5G Networks for Rural Fixed Wireless Access

被引:2
|
作者
Lappalainen, Andrew [1 ,2 ]
Zhang, Yuhao [1 ]
Rosenberg, Catherine [1 ]
机构
[1] Univ Waterloo, Dept Elect & Comp Engn, Waterloo, ON N2L 3G1, Canada
[2] Nokia, Murray Hill, NJ 07974 USA
关键词
5G mobile communication; Millimeter wave communication; Planning; Wireless communication; Precoding; Broadband communication; Bandwidth; 5G; network planning; network provisioning; fixed wireless access; rural; RESOURCE-ALLOCATION; MASSIVE MIMO; SYSTEMS; ALGORITHMS; DESIGN; POWER;
D O I
10.1109/TNSM.2022.3202200
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
We study the planning of a rural 5G multi-user massive MIMO fixed wireless access system to offer fixed broadband service to homes. Specifically, we aim to determine the user limit, i.e., the maximum number of homes that can simultaneously receive target minimum bit rates (MBRs) on the downlink (DL) and on the uplink (UL) given a set of network resources and a cell radius. To compute that limit, we must understand how resources should be shared between the DL and UL and how user and stream selection, precoding and combining, and power distribution should be performed. We use block diagonalization and propose a static grouping strategy that organizes homes into fixed groups (of possibly different sizes) in the DL and UL; then we develop a simple approach to compute the user limit that we validate numerically. We study the impact of group size and show that smaller groups yield larger user limits in a 3.5 GHz band. We show how the user limit at different cell radii is impacted by the system bandwidth, the number of antennas at the base station and homes, the transmit power, and the MBRs. Lastly, we offer insights into how the network could be operated.
引用
收藏
页码:441 / 455
页数:15
相关论文
共 50 条
  • [1] Fixed wireless access: On a massive scale with 5G
    [J]. 1600, Telefonaktiebolaget L.M. Ericsson (94):
  • [2] Performance Analysis of 5G Fixed Wireless Access Networks with Antenna Diversity Techniques
    Alimi, Isiaka A.
    Patel, Romilkumar Kantibhai
    Muga, Nelson Jesus
    Monteiro, Paulo P.
    [J]. WIRELESS PERSONAL COMMUNICATIONS, 2020, 113 (03) : 1541 - 1565
  • [3] Performance Analysis of 5G Fixed Wireless Access Networks with Antenna Diversity Techniques
    Isiaka A. Alimi
    Romilkumar Kantibhai Patel
    Nelson Jesus Muga
    Paulo P. Monteiro
    [J]. Wireless Personal Communications, 2020, 113 : 1541 - 1565
  • [4] Rural Macrocell Path Loss Measurements for 5G Fixed Wireless Access at 26 GHz
    Saba, Norshahida
    Mela, Lauri
    Sheikh, Muhammad Usman
    Salo, Jari
    Ruttik, Kalle
    Jantti, Riku
    [J]. 2021 IEEE 4TH 5G WORLD FORUM (5GWF 2021), 2021, : 328 - 333
  • [5] 5G Fixed Wireless Access -Mobile Operator Perspective
    Oproiu, Elena-Madalina
    Gimiga, Iulian
    Marghescu, Ion
    [J]. 2018 12TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS (COMM), 2018, : 357 - 360
  • [6] User Cooperation for 5G Wireless Access Networks
    Maaref, Amine
    Cao, Yu
    [J]. INTERNATIONAL JOURNAL OF WIRELESS INFORMATION NETWORKS, 2015, 22 (04) : 298 - 311
  • [7] 5G Wireless Access
    Dahlman, Erik
    Parkvall, Stefan
    Peisa, Janne
    [J]. IEICE TRANSACTIONS ON COMMUNICATIONS, 2015, E98B (08): : 1407 - 1414
  • [8] IncrEase: A Tool for Incremental Planning of Rural Fixed Broadband Wireless Access Networks
    Bernardi, Giacomo
    Marina, Mahesh K.
    Talamona, Francesco
    Rykovanov, Dmitry
    [J]. 2011 IEEE GLOBECOM WORKSHOPS (GC WKSHPS), 2011, : 1013 - 1018
  • [9] Optical Transport Solutions for 5G Fixed Wireless Access [Invited]
    Skubic, Bjorn
    Fiorani, Matteo
    Tombaz, Sibel
    Furuskar, Anders
    Martensson, Jonas
    Monti, Paolo
    [J]. JOURNAL OF OPTICAL COMMUNICATIONS AND NETWORKING, 2017, 9 (09) : D10 - D18
  • [10] Optical Transport Network Design for 5G Fixed Wireless Access
    Ranaweera, Chathurika
    Monti, Paolo
    Skubic, Bjorn
    Wong, Elaine
    Furdek, Marija
    Wosinska, Lena
    Machuca, Carmen Mas
    Nirmalathas, Ampalavanapillai
    Lim, Christina
    [J]. JOURNAL OF LIGHTWAVE TECHNOLOGY, 2019, 37 (16) : 3893 - 3901