Title
Path Loss Model For Outdoor-To-Indoor Corridor Up To 40 Ghz Band In Microcell Environments
Abstract
This paper proposed that a path loss model for outdoor to-indoor corridor is presented to construct next generation mobile communication systems. The proposed model covers the frequency range of millimeter wave bands up to 40 GHz and provides three dimensional incident angle characteristics. Analysis of path loss characteristics is conducted by ray tracing. We clarify that the paths reflected multiple times between the external walls of buildings and then diffracted into one of the buildings are dominant. Moreover, we also clarify how the paths affect the path loss dependence on frequency and three dimensional incident angle. Therefore, by taking these dependencies into consideration, the proposed model decreases the root mean square errors of prediction results to within about 2 to 6 dB in bands up to 40 GHz.
Year
DOI
Venue
2017
10.1587/transcom.2016WSP0008
IEICE TRANSACTIONS ON COMMUNICATIONS
Keywords
DocType
Volume
propagation, 5G, outdoor-to-indoor path loss model, millimeter wave, high frequency bands, microcell environments
Journal
E100B
Issue
ISSN
Citations 
2
0916-8516
0
PageRank 
References 
Authors
0.34
0
9
Name
Order
Citations
PageRank
Minoru Inomata100.34
Motoharu Sasaki202.37
Wataru Yamada301.01
Takeshi Onizawa43911.20
Masashi Nakatsugawa502.03
Nobutaka Omaki621.25
Koshiro Kitao77316.98
Tetsuro Imai813222.72
Yukihiko Okumura913633.89