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Paper Abstract and Keywords
Presentation 2019-10-04 10:15
[Poster Presentation] A Tensor Completion-Based Determination Method of Message Collection/Delivery Points for UAV Enabled Disaster Recovery Networks
Azusa Danjo (Osaka City Univ./DAIHEN), Shinsuke Hara (Osaka City Univ.), Takahiro Matsuda (Tokyo Metropolitan Univ.), Fumie Ono (NICT)
Abstract (in Japanese) (See Japanese page) 
(in English) When a large-scale disaster causes catastrophic damage to terrestrial information networks, it is essential
to quickly construct a temporary message collection/delivery system by means of unmanned aerial vehicles (UAVs).
When a UAV wirelessly collects/delivers messages for refugees above a shelter, it should select the point where a
higher received signal strength (RSS) is obtained, however, huge amount of time and effort would be required to
fully sense the three-dimensional (3D) RSS spatial distribution over the disaster area. In this paper, by dealing the
3D RSS spatial distribution as a 3D tensor, we propose a tensor completion-based determination method of message
collection/delivery points, and evaluate the performance of the proposed method using the RSS data obtained by
an experiment.
Keyword (in Japanese) (See Japanese page) 
(in English) Unmanned Aerial Vehicle / Received Signal Strength / Tensor Completion / / / / /  
Reference Info. IEICE Tech. Rep.
Paper #  
Date of Issue  
ISSN Print edition: ISSN 0913-5685  Online edition: ISSN 2432-6380

Conference Information
Committee MIKA  
Conference Date 2019-10-02 - 2019-10-04 
Place (in Japanese) (See Japanese page) 
Place (in English) Hokkaido Univ. 
Topics (in Japanese) (See Japanese page) 
Topics (in English) Wireless Communication System, etc. 
Paper Information
Registration To MIKA 
Conference Code 2019-10-MIKA 
Language Japanese 
Title (in Japanese) (See Japanese page) 
Sub Title (in Japanese) (See Japanese page) 
Title (in English) A Tensor Completion-Based Determination Method of Message Collection/Delivery Points for UAV Enabled Disaster Recovery Networks 
Sub Title (in English)  
Keyword(1) Unmanned Aerial Vehicle  
Keyword(2) Received Signal Strength  
Keyword(3) Tensor Completion  
1st Author's Name Azusa Danjo  
1st Author's Affiliation Osaka City University/DAIHEN Corporation (Osaka City Univ./DAIHEN)
2nd Author's Name Shinsuke Hara  
2nd Author's Affiliation Osaka City University (Osaka City Univ.)
3rd Author's Name Takahiro Matsuda  
3rd Author's Affiliation Tokyo Metropolitan University (Tokyo Metropolitan Univ.)
4th Author's Name Fumie Ono  
4th Author's Affiliation National Institute of Information and Communications Technology (NICT)
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Date Time 2019-10-04 10:15:00 
Presentation Time 50 
Registration for MIKA 
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