Title :
Design and implementation of a parallel image processor chip for a SIMD array processor
Author :
Sunwoo, Myung H. ; Ong, Soohwan ; Ahn, Byungdug ; Lee, Kyungwoo
Author_Institution :
Dept. of Electron. Eng., Ajou Univ., Suwon, South Korea
Abstract :
This paper presents the design and implementation of a sliding memory plane (SliM) image processor chip to build a mesh-connected SIMD architecture called a SliM array processor. The SliM image processor chip consists of 5×5 processing elements (PEs) connected by a mesh topology. A set of SliM image processor chips can form the SliM array processor. Due to the idea of sliding, that is, overlapping inter-PE communication with computation, the SliM image processor can greatly reduce the inter-PE communication overhead, a significant disadvantage of existing SIMD array processors. In addition, using the by-passing path provides eight-way connectivity even with four physical links. This paper addresses architectures of the SliM image processor chip, the design of an instruction set, and implementation issues. The chip has 55255 gates and twenty-five 128×9-bit SRAM modules, and was simulated at 18 MHz for the worst case conditions, and will actually run at a higher clock rate. The package type is the 144 pin MQFP. We conduct the performance evaluation of the chip that shows a significant improvement
Keywords :
digital signal processing chips; image processing; parallel processing; performance evaluation; SIMD array processor; SliM; by-passing path; instruction set; mesh-connected SIMD architecture; parallel image processor chip; performance evaluation; sliding memory plane; Algorithm design and analysis; Application specific integrated circuits; Clocks; Computer architecture; Image processing; Integrated circuit interconnections; Military computing; Process design; Random access memory; Topology;
Conference_Titel :
Application Specific Array Processors, 1995. Proceedings. International Conference on
Conference_Location :
Strasbourg
Print_ISBN :
0-8186-7109-2
DOI :
10.1109/ASAP.1995.522906