Title :
Development of a high-performance general purpose neuro-computer composed of 512 digital neurons
Author :
Sato, Yuji ; Shibata, Katsunari ; Asai, Mitsuo ; Ohki, Masaru ; Sugie, Mamoru ; Sakaguchi, Takahiro ; Hashimoto, Masashi ; Kuwabara, Yoshihiro
Author_Institution :
Central Res. Lab., Hitachi Ltd., Tokyo, Japan
Abstract :
A high-performance, general-purpose neuro-computer composed of 512 digital neurons is developed. Each neuron has an execution unit which is optimized for traditional neural functions, but the use of a micro-programming architecture makes it general enough to implement any neural function. Horizontal micro-instruction formats and massively parallel-pipelined computation allows high-speed on-chip learning. The theoretical maximum learning speed for the backpropagation algorithm is 1.25 GCUPS (giga connection updates per second). Eight digital neurons are integrated on each neuron chip by using 1.0-μm CMOS technology, and 64 neuron chips are packaged in this hardware. This hardware can be connected to a host workstation by a SCSI network. We applied this neuro-computer to handwritten numerals recognition. The learning speed by using the neuro-computer is over 1000 times faster than by using the workstation.
Keywords :
CMOS digital integrated circuits; backpropagation; character recognition; general purpose computers; neural nets; peripheral interfaces; 1.0 micron; CMOS technology; SCSI network; backpropagation algorithm; digital neurons; handwritten numerals recognition; high-performance general-purpose neurocomputer; high-speed on-chip learning; horizontal microinstruction formats; host workstation; learning speed; massively parallel-pipelined computation; microprogramming architecture; optimized execution unit; CMOS technology; Circuits; Computer architecture; Concurrent computing; Hardware; Neural networks; Neurons; Packaging; Programmable control; Workstations;
Conference_Titel :
Neural Networks, 1993. IJCNN '93-Nagoya. Proceedings of 1993 International Joint Conference on
Print_ISBN :
0-7803-1421-2
DOI :
10.1109/IJCNN.1993.717042