Presentation 2007-12-21
Improvement of Detection Probability and Velocity Measurement Accuracy with Coherent Pulse Integration Using Velocity Compensation by Range Shifts of Chirp Pulse Compression
Satoshi KAGEME, Teruyuki HARA, Takashi SEKIGUCHI,
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Abstract(in English) In the radar system, detecting moving target and measuring target velocity are important. Conventional LPRF radar system uses non-coherent integration between pulses to improve detection performance of the accelerative targets. If it is possible to use coherent integration, detection performance will be improved. However, for the LPRF radar, the true target relative velocity cannot be measured due to velocity ambiguity. If it is possible to remove ambiguity, accuracy of velocity measurement will be improved. In this paper, we propose an algorithm to improvement of detection probability and accuracy of velocity measurement with coherent pulse integration using velocity compensation by range shifts of chirp pulse compression for the LPRF radar.
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Keyword(in English) Signal Detection / Range Shift / Velocity Compensation / Coherent Integration / Velocity Measurement
Paper # SANE2007-100
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Committee SANE
Conference Date 2007/12/14(1days)
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Paper Information
Registration To Space, Aeronautical and Navigational Electronics (SANE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Improvement of Detection Probability and Velocity Measurement Accuracy with Coherent Pulse Integration Using Velocity Compensation by Range Shifts of Chirp Pulse Compression
Sub Title (in English)
Keyword(1) Signal Detection
Keyword(2) Range Shift
Keyword(3) Velocity Compensation
Keyword(4) Coherent Integration
Keyword(5) Velocity Measurement
1st Author's Name Satoshi KAGEME
1st Author's Affiliation Information Technology R & D Center Mitsubishi Electric Corporation()
2nd Author's Name Teruyuki HARA
2nd Author's Affiliation Information Technology R & D Center Mitsubishi Electric Corporation
3rd Author's Name Takashi SEKIGUCHI
3rd Author's Affiliation Information Technology R & D Center Mitsubishi Electric Corporation
Date 2007-12-21
Paper # SANE2007-100
Volume (vol) vol.107
Number (no) 407
Page pp.pp.-
#Pages 6
Date of Issue