DocumentCode
2782280
Title
Mode-Selective OTHR: A new cost-effective sensor for maritime domain awareness
Author
Frazer, G.J. ; Meehan, D.H. ; Abramovich, Y.I. ; Johnson, Bruce A.
Author_Institution
ISR Div., DSTO, Edinburgh, SA, Australia
fYear
2010
fDate
10-14 May 2010
Firstpage
935
Lastpage
940
Abstract
This paper presents a new sensor concept designed to provide maritime domain awareness over large ocean areas. The Mode-Selective OTHR introduced herein achieves significant detection and tracking capability against maritime vessels relative to traditional OTHR designs because it is designed specifically to reject disturbed ionospheric propagation modes and operate only using low distortion propagation modes. The architecture of the radar is such that this rejection occurs for both the transmitter-to-surveillance-footprint and the footprint return-to-receiver propagation paths. This is achieved using recently discovered techniques for non-causal adaptive and range dependent transmit beamforming and two-dimensional apertures for both transmission and reception. It also includes new methods for using planar transmit arrays operating with extreme steer angle.
Keywords
array signal processing; ionospheric electromagnetic wave propagation; marine radar; object detection; search radar; transmitters; cost-effective sensor; footprint return-to-receiver propagation path; ionospheric propagation modes; low distortion propagation modes; maritime domain awareness; maritime vessel detection; maritime vessel tracking; mode-selective OTHR; noncausal adaptive beamforming; over-the-horizon radar; planar transmit arrays; range dependent transmit beamforming; transmitter-to-surveillance-footprint path; two-dimensional apertures; Airborne radar; Array signal processing; Australia; Military aircraft; Oceans; Radar detection; Radar tracking; Sea surface; Surveillance; Target tracking; E-layer; HF radar; MIMO radar; Mode-Selective OTHR; adaptive radar transmitter; ionosphere; maritime domain awareness; over-the-horizon radar; ship detection;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2010 IEEE
Conference_Location
Washington, DC
ISSN
1097-5659
Print_ISBN
978-1-4244-5811-0
Type
conf
DOI
10.1109/RADAR.2010.5494485
Filename
5494485
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