Title :
Measurement of ocean wave spectra using narrow-beam HE radar
Author :
Howell, Randy ; Walsh, John
Author_Institution :
Dept. of Electr. & Comput. Eng., Victoria Univ., BC, Canada
fDate :
7/1/1993 12:00:00 AM
Abstract :
A data interpretation algorithm is developed to extract ocean wave information from HF radar backscatter observed by a narrow-beam antenna system. The basis of this measurement is the inversion of the integral equation representing the second-order radar cross section of the ocean surface. This equation is numerically inverted by approximating it as a matrix equation and pseudoinverting the kernel matrix using a singular value decomposition. As a test of this algorithm, comparisons are made between wave spectrum estimates obtained from a WAVEC buoy and a pair of 25.4-MHz ground wave radars, using data collected during the 1986 Canadian Atlantic Storms Program (CASP). Overall, the results of this experiment have been positive and have demonstrated both the basic feasibility of the inversion algorithm and the wave sensing capability of HF radar. For example, significant wave height estimates deduced by two radars differed from the buoy, in an absolute value sense, by only 0.12 m on average. When using only one radar, the mean difference of this important parameter from the buoy was a reasonable 0.33 m
Keywords :
backscatter; electromagnetic wave scattering; integral equations; numerical analysis; ocean waves; oceanographic techniques; remote sensing by radar; signal processing; 25.4 MHz; Canadian Atlantic Storms Program; WAVEC buoy; data interpretation algorithm; ground wave radars; integral equation; kernel matrix; narrow-beam HE radar; narrow-beam antenna; ocean surface; ocean wave spectra; second-order radar cross section; singular value decomposition; Antenna measurements; Hafnium; Helium; Integral equations; Matrix decomposition; Ocean waves; Radar antennas; Radar cross section; Radar measurements; Sea measurements;
Journal_Title :
Oceanic Engineering, IEEE Journal of
DOI :
10.1109/JOE.1993.236368