Title :
Homogeneous multicomputer type DSP system NOVI for parallel signal processing
Author :
Ohta, Naohisa ; Fujii, Tetsurou ; Kanayama, Yukiharu ; Ono, Sadayasu
Author_Institution :
Transmission Syst. Lab., NTT, Yokosuka, Japan
Abstract :
The architecture and performance of a multicomputer-type digital signal processing (DSP) system are discussed. The DSP system, called NOVI, has been created to examine methods for organizing parallel DSP systems and developing parallel programs for a wide range of digital signal processing applications. NOVI presently consists of 36 processing elements (PEs), each using an Inmos Transputer as a CPU. Its parallel-program-development assistant (PDA) system facilitates powerful debugging functions to observe all PE state without any interference to parallel program execution. A parallel-program-development technique using the PDA is discussed. A load-balancing technique on a multicomputer-type DSP is also discussed, focusing on low-bit-rate motion-picture coding. The balancing technique is based on interframe prediction and layered large-grain data flow. The expected performance of the NOVI system is discussed.<>
Keywords :
computerised signal processing; parallel machines; parallel programming; program debugging; signal processing equipment; software tools; Inmos Transputer; NOVI; debugging functions; expected performance; homogeneous multiprocessor systems; interframe prediction; layered large-grain data flow; load-balancing; low-bit-rate motion-picture coding; multicomputer-type digital signal processing; parallel DSP systems; parallel signal processing; parallel-program-development assistant; Computer architecture; Debugging; Digital signal processing; Load management; Motion pictures; Parallel processing; Personal digital assistants; Signal processing; Signal processing algorithms; Very large scale integration;
Conference_Titel :
Systolic Arrays, 1988., Proceedings of the International Conference on
Conference_Location :
San Diego, CA, USA
Print_ISBN :
0-8186-8860-2
DOI :
10.1109/ARRAYS.1988.18097