講演名 2016-11-24
Ground Based Synthetic Aperture Radar (GBSAR) for Land Deformation Monitoring: Development and Preliminary Result
Yee-Kit Chan(iRadar), Voon-Chet Koo(iRadar), Chih-Yuen Chu(G-Ave),
PDFダウンロードページ PDFダウンロードページへ
抄録(和) Every year, over one million people are exposed to weather-related land deformation hazards around the world. Due to the recent climate change, it is likely that the decrease of permafrost areas, changes in precipitation patterns and increase of extreme weather events will influence the weather-related mass movement activities. In Malaysia, landslide is the most commonly seen land deformation issues for the past few years. This paper reports the recent development of a ground-based synthetic aperture radar (GBSAR) for continuous monitoring of landslide-prone areas in Malaysia. It is an ultra-wideband system operating at K-band with spatial resolution of 0.5 m in range and 5.8 mrad in cross range. The system is mounted on a rail which travels along a linear guide to achieve SAR imaging. The GBSAR has been installed at a test site to provide timely information for land deformation monitoring and early warning system. The paper discusses the design, development and preliminary field experiments using the new GBSAR system.
抄録(英) Every year, over one million people are exposed to weather-related land deformation hazards around the world. Due to the recent climate change, it is likely that the decrease of permafrost areas, changes in precipitation patterns and increase of extreme weather events will influence the weather-related mass movement activities. In Malaysia, landslide is the most commonly seen land deformation issues for the past few years. This paper reports the recent development of a ground-based synthetic aperture radar (GBSAR) for continuous monitoring of landslide-prone areas in Malaysia. It is an ultra-wideband system operating at K-band with spatial resolution of 0.5 m in range and 5.8 mrad in cross range. The system is mounted on a rail which travels along a linear guide to achieve SAR imaging. The GBSAR has been installed at a test site to provide timely information for land deformation monitoring and early warning system. The paper discusses the design, development and preliminary field experiments using the new GBSAR system.
キーワード(和) Synthetic Aperture Radar / Interferometry / land deformation / Landslides / Millimeter-wave / Millimeter-wave
キーワード(英) Synthetic Aperture Radar / Interferometry / land deformation / Landslides / Millimeter-wave / Millimeter-wave
資料番号 SANE2016-69
発行日 2016-11-17 (SANE)

研究会情報
研究会 SANE
開催期間 2016/11/24(から2日開催)
開催地(和) 国立台北科技大学
開催地(英) National Taipei University of Technology (NTUT)
テーマ(和) ICSANE2016
テーマ(英) ICSANE2016
委員長氏名(和) 小林 弘一(阪工大)
委員長氏名(英) Hirokazu Kobayashi(Osaka Inst. of Tech.)
副委員長氏名(和) 水野 貴秀(JAXA) / 森山 敏文(長崎大)
副委員長氏名(英) Takahide Mizuno(JAXA) / Toshifumi Moriyama(Nagasaki Univ.)
幹事氏名(和) 牧 謙一郎(JAXA) / 小幡 康(三菱電機)
幹事氏名(英) Kenichiro Maki(JAXA) / Yasushi Obata(Mitsubishi Electric)
幹事補佐氏名(和) 毛塚 敦(電子航法研) / 秋田 学(電通大)
幹事補佐氏名(英) Atsushi Kezuka(ENRI) / Manabu Akita(Univ. of Electro-Comm.)

講演論文情報詳細
申込み研究会 Technical Committee on Space, Aeronautical and Navigational Electronics
本文の言語 ENG
タイトル(和)
サブタイトル(和)
タイトル(英) Ground Based Synthetic Aperture Radar (GBSAR) for Land Deformation Monitoring: Development and Preliminary Result
サブタイトル(和)
キーワード(1)(和/英) Synthetic Aperture Radar / Synthetic Aperture Radar
キーワード(2)(和/英) Interferometry / Interferometry
キーワード(3)(和/英) land deformation / land deformation
キーワード(4)(和/英) Landslides / Landslides
キーワード(5)(和/英) Millimeter-wave / Millimeter-wave
キーワード(6)(和/英) Millimeter-wave / Millimeter-wave
第 1 著者 氏名(和/英) Yee-Kit Chan / Yee-Kit Chan
第 1 著者 所属(和/英) iRadar Sdn. Bhd(略称:iRadar)
iRadar Sdn. Bhd(略称:iRadar)
第 2 著者 氏名(和/英) Voon-Chet Koo / Voon-Chet Koo
第 2 著者 所属(和/英) iRadar Sdn. Bhd(略称:iRadar)
iRadar Sdn. Bhd(略称:iRadar)
第 3 著者 氏名(和/英) Chih-Yuen Chu / Chih-Yuen Chu
第 3 著者 所属(和/英) G-AVE Technology Ltd(略称:G-Ave)
G-AVE Technology Ltd(略称:G-Ave)
発表年月日 2016-11-24
資料番号 SANE2016-69
巻番号(vol) vol.116
号番号(no) SANE-319
ページ範囲 pp.91-94(SANE),
ページ数 4
発行日 2016-11-17 (SANE)