Characterization of Propagation Phenomena Relevant for 300 GHz Wireless Data Center Links

被引:44
|
作者
Cheng, Chia-Lin [1 ]
Zajic, Alenka [1 ]
机构
[1] Georgia Inst Technol, Elect & Comp Engn Dept, Atlanta, GA 30308 USA
基金
美国国家科学基金会;
关键词
Data centers; Wireless communication; Servers; Metals; Communication cables; Lenses; Power cables; Channel characterization; channel sounding; terahertz (THz) propagation; wireless propagation in data centers;
D O I
10.1109/TAP.2019.2949135
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This article presents details about an extensive channel measurement campaign and subsequent statistical channel models for the characterization of 300 GHz channels for wireless rack-to-rack (R2R) and blade-to-blade (B2B) communications in a data center-like environment. Measurements were conducted in various scenarios such as R2R line-of-sight (LoS), R2R obstructed-LoS (OLoS), R2R reflected-non-LoS (RNLoS), R2R obstructed-RNLoS (ORNLoS), B2B RNLoS, B2B ORNLoS, and B2B LoS scenarios. In the aforementioned scenarios, we explored the impact of transmitter (T-x)/receiver (R-x) misalignment and obstructions such as cables, metal cabinets, and mesh structures on terahertz (THz) propagation, as well as feasibility of using existing metal objects as reflectors for NLoS links. For the R2R LoS scenario, an optical lens was used to extend the T-x-R-x separation distance. This led to a waveguide effect in the channels measured thereby resulting into a path loss exponent (PLE) of 1.48 with a shadowing gain of 0.7 dB. When obstructions of cables are present, ORNLoS link outperforms OLoS link with 2.5 dB lower shadowing gain and weaker multipath. Reflector in the RNLoS link has reflection coefficients very close to 1 for all incident angles. For the B2B scenario, a dual-reflector THz transceiver rack system is proposed to enable wireless links across vertically stacked servers and allow easy maintenance and repair of servers. The measured path loss closely follows the Friis values in the LoS link and in the RNLoS link with hollow vertical ground plane. When obstructions of cables are present, the ORNLoS link experiences 5-10 dB higher path loss and on average 0.25 GHz lower coherence bandwidth than the RNLoS link. The measured statistical channel properties show that the shadowing gain caused by cable clusters follows the log-normal distribution.
引用
收藏
页码:1074 / 1087
页数:14
相关论文
共 50 条
  • [1] 60 GHz wireless links in data center networks
    Vardhan, Hars
    Ryu, Seong-Ryong
    Banerjee, Bhaskar
    Prakash, Ravi
    COMPUTER NETWORKS, 2014, 58 : 192 - 205
  • [2] Channel Measurements at 300 GHz for Low Terahertz Links in a Data Center
    Eckhardt, Johannes M.
    Doeker, Tobias
    Kuerner, Thomas
    IEEE OPEN JOURNAL OF ANTENNAS AND PROPAGATION, 2024, 5 (03): : 759 - 777
  • [3] Load Analysis of Wireless Backhaul Links at 300 GHz
    Jung, Bo Kum
    Kuerner, Thomas
    2023 48TH INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER, AND TERAHERTZ WAVES, IRMMW-THZ, 2023,
  • [4] Propagation for On-Body Wireless Links at 60 GHz
    Petrillo, Luca
    Mavridis, Theodoros
    De Doncker, Philippe
    Sarrazin, Julien
    Lautru, David
    Benlarbi-Delai, Aziz
    2013 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM (APSURSI), 2013, : 1618 - +
  • [5] Channel Measurement and Characterization at 140 GHz in a Wireless Data Center
    Song, Guochao
    Li, Yuanbo
    Jiang, Jiamo
    Han, Chong
    Yu, Ziming
    Du, Ying
    Wang, Zhiqin
    2022 IEEE GLOBAL COMMUNICATIONS CONFERENCE (GLOBECOM 2022), 2022, : 4764 - 4769
  • [6] Demonstrating 300 GHz Wireless Backhaul Links - The ThoR Approach
    Kuerner, Thomas
    Kawanishi, Tetsuya
    2022 47TH INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER AND TERAHERTZ WAVES (IRMMW-THZ 2022), 2022,
  • [7] Automatic Planning Algorithms for 300 GHz Wireless Backhaul Links
    Jung, Bo Kum
    Kuerner, Thomas
    IEICE TRANSACTIONS ON COMMUNICATIONS, 2022, E105B (06) : 685 - 693
  • [8] Wireless digital data transmission at 300 GHz
    Jastrow, C.
    Priebe, S.
    Spitschan, B.
    Hartmann, J.
    Jacob, M.
    Kuerner, T.
    Schrader, T.
    Kleine-Ostmann, T.
    ELECTRONICS LETTERS, 2010, 46 (09) : 661 - U87
  • [9] Statistical Characterization of 300-GHz Propagation on a Desktop
    Kim, Seunghwan
    Zajie, Alenka G.
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2015, 64 (08) : 3330 - 3338
  • [10] Characterization of 300 GHz Wireless Channels for Rack-to-Rack Communications in Data Centers
    Cheng, Chia-Lin
    Zajic, Alenka
    2018 IEEE 29TH ANNUAL INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR AND MOBILE RADIO COMMUNICATIONS (PIMRC), 2018, : 194 - 198