E. Spano et O. Ghebrbrhan, SEQUENCES OF COMPLEMENTARY-CODES FOR THE OPTIMUM DECODING OF TRUNCATED RANGES AND HIGH SIDELOBE SUPPRESSION FACTORS FOR ST MST RADAR SYSTEMS/, IEEE transactions on geoscience and remote sensing, 34(2), 1996, pp. 330-345
A new technique of full decoding of truncated ranges applicable to com
plementary codes is presented. For code length of N, the technique use
s a set of N/2 complementary code pairs to obtain a diagonal decoding
matrix M that enables the full decoding of truncated ranges without th
e need of matrix inversion, and resulting in optimum performance with
regards to the signal-to-noise ratio degradation (SNRD) in the truncat
ed ranges. Techniques of constructing the required code sequences for
code length of 4, 8, 16, 32, etc., are given. By arranging the order o
f transmission of the code sequences systematically to increase the su
ppression of sidelobes resulting from atmospheric characteristics, and
by performing appropriate steps to reduce the effects of interference
s, it is shown that a coding system that simultaneously optimizes the
performances with regards to SNRD, sidelobe suppression, and interfere
nce rejection can be obtained. Examples are given to illustrate this.