Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz
Accurate propagation characteristics are essential for future indoor millimeter-wave (mmWave) small cell network planning. This paper presents propagation measurements at 26 GHz and 38 GHz which are important candidate bands for fifth generation mmWave communication. Measurements are conducted in an...
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doaj-5b03d8a92fd94c84901e9785e3184dc02021-06-22T23:00:44ZengIEEEIEEE Access2169-35362021-01-019877928780510.1109/ACCESS.2021.30818229435360Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHzYuyan Shen0https://orcid.org/0000-0003-0957-2876Yu Shao1https://orcid.org/0000-0002-8362-3259Liao Xi2https://orcid.org/0000-0003-2416-1282Heng Zhang3https://orcid.org/0000-0001-9486-6937Jie Zhang4https://orcid.org/0000-0002-3354-0690School of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing, ChinaSchool of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing, ChinaSchool of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing, ChinaSchool of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing, ChinaSchool of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing, ChinaAccurate propagation characteristics are essential for future indoor millimeter-wave (mmWave) small cell network planning. This paper presents propagation measurements at 26 GHz and 38 GHz which are important candidate bands for fifth generation mmWave communication. Measurements are conducted in an indoor corridor, as well as a stairwell whose mmWave channel is seldom investigated before. In these measurements, an omnidirectional biconical antenna is used as transmitter and a steerable directional horn antenna is used as receiver. The directional and omnidirectional path loss exponents, shadow factors, cross-polarization discrimination ratios and root-mean-square delay spreads are analyzed for both line-of-sight and non-line-of-sight scenarios in both co-polarization and cross-polarization, and these characteristics are compared for different frequencies and environments. It is found obvious depolarization phenomenon in non-line-of-sight scenario for higher frequency. Compared to the corridor, the stairwell has larger path loss exponents and root-mean-square delay spreads, and the depolarization is also more evident in stairwell. The results in this paper are beneficial to building efficient and robust indoor mmWave communication systems.https://ieeexplore.ieee.org/document/9435360/Millimeter-waveindoor propagationpath losscross-polarization discrimination ratiodelay spread |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yuyan Shen Yu Shao Liao Xi Heng Zhang Jie Zhang |
spellingShingle |
Yuyan Shen Yu Shao Liao Xi Heng Zhang Jie Zhang Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz IEEE Access Millimeter-wave indoor propagation path loss cross-polarization discrimination ratio delay spread |
author_facet |
Yuyan Shen Yu Shao Liao Xi Heng Zhang Jie Zhang |
author_sort |
Yuyan Shen |
title |
Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz |
title_short |
Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz |
title_full |
Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz |
title_fullStr |
Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz |
title_full_unstemmed |
Millimeter-Wave Propagation Measurement and Modeling in Indoor Corridor and Stairwell at 26 and 38 GHz |
title_sort |
millimeter-wave propagation measurement and modeling in indoor corridor and stairwell at 26 and 38 ghz |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2021-01-01 |
description |
Accurate propagation characteristics are essential for future indoor millimeter-wave (mmWave) small cell network planning. This paper presents propagation measurements at 26 GHz and 38 GHz which are important candidate bands for fifth generation mmWave communication. Measurements are conducted in an indoor corridor, as well as a stairwell whose mmWave channel is seldom investigated before. In these measurements, an omnidirectional biconical antenna is used as transmitter and a steerable directional horn antenna is used as receiver. The directional and omnidirectional path loss exponents, shadow factors, cross-polarization discrimination ratios and root-mean-square delay spreads are analyzed for both line-of-sight and non-line-of-sight scenarios in both co-polarization and cross-polarization, and these characteristics are compared for different frequencies and environments. It is found obvious depolarization phenomenon in non-line-of-sight scenario for higher frequency. Compared to the corridor, the stairwell has larger path loss exponents and root-mean-square delay spreads, and the depolarization is also more evident in stairwell. The results in this paper are beneficial to building efficient and robust indoor mmWave communication systems. |
topic |
Millimeter-wave indoor propagation path loss cross-polarization discrimination ratio delay spread |
url |
https://ieeexplore.ieee.org/document/9435360/ |
work_keys_str_mv |
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