Statistical Analysis of 5G Channel Propagation using MIMO and Massive MIMO Technologies

被引:0
|
作者
Shamsan, Zaid Ahmed [1 ]
机构
[1] Imam Mohammad Ibn Saud Islamic Univ IMSIU, Coll Engn, Elect Engn Dept, Riyadh, Saudi Arabia
关键词
MIMO; massive MIMO; millimeter-waves; channel propagation; path loss exponent; RMS delay spread; received power;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Multiple Input Multiple Output (MIMO) and massive MIMO technologies play a significant role in mitigating five generation (5G) channel propagation impairments. These impairments increase as frequency increases, and they become worse at millimeter-waves (mmWaves). They include difficulties of material penetration, Line-of-Sight (LoS) inflexibility, small cell coverage, weather circumstances, etc. This paper simulates the 5G channel at the E-band frequency using the Monte Carlo approach-based NYUSIM tool. The urban microcell (UMi) is the communication environment of this simulation. Both MIMO and massive MIMO use uniformly spaced rectangular antenna arrays (URA). This study investigates the effects of MIMO and massive MIMO on LoS and Non-LoS (NLoS) environments. The simulations considered directional and omnidirectional antennas, the Power Delay Profile (PDP), Root Mean Square (RMS) delay spread, and small-scale PDP for both LoS and NLoS environments. As expected, the wide variety of the results showed that the massive MIMO antenna outperforms the MIMO antenna, especially in terms of the signal power received at the end-user and for longer path lengths.
引用
收藏
页码:7417 / 7423
页数:7
相关论文
共 50 条
  • [41] 3D Beamforming Technologies and Field Trials in 5G Massive MIMO Systems
    Wang, Jiangzhou
    Deng, Wei
    Li, Xin
    Zhu, Huiling
    Nair, Manish
    Chen, Tao
    Yi, Na
    Gomes, Nathan J.
    IEEE OPEN JOURNAL OF VEHICULAR TECHNOLOGY, 2020, 1 : 362 - 371
  • [42] 5G Massive MIMO高层区域覆盖研究
    鲁佑嗣
    信息通信, 2020, (10) : 158 - 160
  • [43] Massive MIMO助力5G网络性能提升
    刁兆坤
    杨丽
    通信世界, 2019, (16) : 44 - 45
  • [44] Green Massive MIMO Scheduling for 5G Traffic with Fairness
    Torabzadeh, Masoomeh
    PROCEEDINGS OF 2017 2ND INTERNATIONAL CONFERENCE ON COMMUNICATION AND INFORMATION SYSTEMS (ICCIS 2017), 2015, : 37 - 42
  • [45] Massive MIMO Wireless Solutions in Backhaul for the 5G Networks
    Biradar, Arun
    Murthy, Nimmagadda Sathyanarayana
    Awasthi, Parul
    Srivastava, Ajeet Kumar
    Akram, Patan Saleem
    Lakshminarayana, M.
    Abidin, Shafiqul
    Vadi, Vikas Rao
    Sisay, Asefa
    Wireless Communications and Mobile Computing, 2022, 2022
  • [46] 5G Massive MIMO系统波束管理分析
    吴俊华
    中国新通信, 2019, 21 (15) : 88 - 89
  • [47] 5G Base Station Prototyping: Massive MIMO Approaches
    Timoshenko, Alexander
    Omelyanchuk, Elena
    Semenova, Anastasia
    Mikhailov, Victor
    PROCEEDINGS OF THE 2019 IEEE CONFERENCE OF RUSSIAN YOUNG RESEARCHERS IN ELECTRICAL AND ELECTRONIC ENGINEERING (EICONRUS), 2019, : 1569 - 1574
  • [48] Challenges on Wireless Performance Testing for 5G Massive MIMO
    Liu, Guangyi
    Zheng, Yi
    Li, Yan
    2017 IEEE SIXTH ASIA-PACIFIC CONFERENCE ON ANTENNAS AND PROPAGATION (APCAP), 2017,
  • [49] Massive MIMO对5G组网影响分析
    黄智瀛
    中国新通信, 2020, 22 (07) : 49 - 54
  • [50] Performance of Cooperative Massive MIMO 5G Cellular System
    Rithe, Jayashree P.
    Khairnar, Dilip
    Sharma, Manish
    2017 IEEE INTERNATIONAL CONFERENCE ON INFORMATION, COMMUNICATION, INSTRUMENTATION AND CONTROL (ICICIC), 2017,