Title :
Incoherent compression of complementary code pairs for laser ranging and detection
Author :
Kravitz, Daniel ; Grodensky, Daniel ; Zadok, Avi ; Levanon, Nadav
Author_Institution :
Fac. of Eng., Bar-Ilan Univ., Ramat-Gan, Israel
Abstract :
A scheme for the incoherent compression of complementary code pairs is proposed and demonstrated in a laser range-finding experiment. The off-peak aperiodic auto-correlations of complementary bipolar codes sum up to zero, hence they are attractive for radar and laser ranging systems. In incoherent compression, the two codes are converted to unipolar representations using a pulse position modulation algorithm prior to transmission. Following incoherent detection, the two received echoes are compressed through digital filtering, and added together to obtain strong sidelobe suppression. The scheme does not require the preservation of phase information in transmission or reception, and the length of the code pairs is scalable through simple procedures. Incoherent compression is particularly attractive for photonic implementations, in which direct detection is phase insensitive. A peak-to-sidelobe ratio of 42 dB is obtained in a laser range-finding experiment using 832 bits-long codes.
Keywords :
codes; filtering theory; laser ranging; optical information processing; optical radar; pulse position modulation; complementary bipolar codes; complementary code pairs; digital filtering; incoherent compression; laser range-finding; laser ranging and detection; phase information; pulse position modulation; sidelobe suppression; Correlation; Distance measurement; Laser radar; Optical filters; Complementary code pairs; LADAR; Matched filtering; Optical signal processing; Pulse compression; Ranging measurements;
Conference_Titel :
Microwaves, Communications, Antennas and Electronics Systems (COMCAS), 2013 IEEE International Conference on
Conference_Location :
Tel Aviv
DOI :
10.1109/COMCAS.2013.6685280