Title :
Tsunami Detection using Multi-frequency Beam-Forming HF Radar
Author :
Trizna, Dennis B.
Author_Institution :
Imaging Sci. Res., Burke
Abstract :
We discuss a new multi-frequency beam-forming HF radar design for robust detection and tracking of tsunami waves from 200 km distances, providing continuous coverage of the tsunami approach to shore. The method works by mapping ocean currents at long range using traditional HF radar method of radial Bragg line Doppler shift measurement, then continuously looking for anomalous Doppler shift patterns and extremely high values due to the large orbital wave of the tsunami wave crest sequence. We discuss issues determining coverage quality improvement achievable using a multi frequency radar (MFR) in order to assure robust long range coverage. These issues include diurnal and seasonaly changes in noise character due to ionospheric conditions, and the effect of local wind speed and sea state providing a sufficiently good sea echo signal at long range. Multiple frequency utilization assures this higher quality at no design cost compared to existing single frequency HF radars, using the ISR digital radar design.
Keywords :
Doppler radar; marine radar; ocean waves; oceanographic techniques; radar detection; radar tracking; tsunami; ISR digital radar design; anomalous Doppler shift pattern; coverage quality improvement; frequency 3 MHz to 30 MHz; ionospheric conditions; local wind speed; multifrequency beam-forming HF radar; ocean current mapping; radial Bragg line Doppler shift measurement; robust detection and tracking; sea echo signal; sea state; tsunami detection; tsunami wave crest sequence; Doppler radar; Doppler shift; Frequency; Hafnium; Oceans; Radar detection; Radar measurements; Radar tracking; Robustness; Tsunami;
Conference_Titel :
OCEANS 2006 - Asia Pacific
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-0138-3
Electronic_ISBN :
978-1-4244-0138-3
DOI :
10.1109/OCEANSAP.2006.4393896