Presentation 2014-11-05
96GHz millimeter wave radar connected by Radio over Fiber
Naruto YONEMOTO, Akiko KOHMURA, Shunichi FUTATSUMORI, Kazuyuki MORIOKA, Kunio OKADA,
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Abstract(in English) Since the accident of French supersonic aircraft in 2000, the threat of Foreign Objects and Debris (FOD) is focused to prevent aircraft from such tragedy. Authors proposed optical-fiber-connected millimeter wave radar which consists of a control station and plural antenna station connected by Radio over Fiber (RoF) in order to survey vast runways to find tinny metallic objects. We report some results of preliminary field test using 96GHz radar connected by RoF in this paper. We also install a RoF with two-tone optical signal which is produced by the double side band with optical carrier suppression modulation in order to eliminate the fiber dispersion. We report the signal evaluation between fundamental mode and two-tone mode.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) FMCW radar / Millimeter-wave / Obstacle detection / Radio over Fiber / FOD
Paper # MWP2014-45
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Conference Information
Committee MWP
Conference Date 2014/10/29(1days)
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Paper Information
Registration To Microwave and Millimeter-wave Photonics (MWP)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) 96GHz millimeter wave radar connected by Radio over Fiber
Sub Title (in English)
Keyword(1) FMCW radar
Keyword(2) Millimeter-wave
Keyword(3) Obstacle detection
Keyword(4) Radio over Fiber
Keyword(5) FOD
1st Author's Name Naruto YONEMOTO
1st Author's Affiliation Electronic Navigation Research Institute()
2nd Author's Name Akiko KOHMURA
2nd Author's Affiliation Electronic Navigation Research Institute
3rd Author's Name Shunichi FUTATSUMORI
3rd Author's Affiliation Electronic Navigation Research Institute
4th Author's Name Kazuyuki MORIOKA
4th Author's Affiliation Electronic Navigation Research Institute
5th Author's Name Kunio OKADA
5th Author's Affiliation Electronic Navigation Research Institute
Date 2014-11-05
Paper # MWP2014-45
Volume (vol) vol.114
Number (no) 287
Page pp.pp.-
#Pages 5
Date of Issue