Title :
“The implementation of a massively parallel RISC-based digital transmitter for multi-dimensional acoustic imaging”
Author :
Fumo, John P. ; Cushcieri, J. ; Kuntsal, Ender ; Wapner, Mike
Author_Institution :
TriSys Inc., AZ, USA
Abstract :
The design and construction of a massively parallel RISC-based digital underwater acoustic transmitter and array transducer assembly are presented. One hundred and twenty-two (122) individual RISC-based microcontrollers create the necessary channel timing and individual element transmit waveform signals to allow narrow acoustic beams to be formed at high sweep rates. This unique combination of state-of-the-art electronically reprogrammable devices provide this architecture a high degree of flexibility for selecting transmit waveforms (i.e. PN sequences, chirps, sinusoids, etc.), programmable steering angles, and beam steering sweep rates. This massively parallel design provides a scaleable architecture making it ideally suited for conformal acoustic arrays
Keywords :
acoustic transducer arrays; computerised control; computerised instrumentation; digital control; microcontrollers; parallel architectures; reduced instruction set computing; sonar arrays; sonar imaging; transmitters; PN sequences; RISC-based microcontrollers; array transducer assembly; beam steering sweep rates; channel timing; chirps; conformal acoustic arrays; construction; design; electronically reprogrammable devices; element transmit waveform signals; massively parallel RISC-based digital transmitter; multi-dimensional acoustic imaging; narrow acoustic beams; programmable steering angles; scaleable architecture; sinusoids; sweep rates; underwater acoustic transmitter; Acoustic arrays; Acoustic beams; Acoustic transducers; Assembly; Beam steering; Chirp; Microcontrollers; Timing; Transmitters; Underwater acoustics;
Conference_Titel :
OCEANS '96. MTS/IEEE. Prospects for the 21st Century. Conference Proceedings
Conference_Location :
Fort Lauderdale, FL
Print_ISBN :
0-7803-3519-8
DOI :
10.1109/OCEANS.1996.569097