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Parallel computer vision on a reconfigurable multiprocessor network

机译:可重构多处理器网络上的并行计算机视觉

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摘要

A novel reconfigurable architecture based on a multiring multiprocessor network is described. The reconfigurability of the architecture is shown to result in a low network diameter and also a low degree of connectivity for each node in the network. The mathematical properties of the network topology and the hardware for the reconfiguration switch are described. Primitive parallel operations on the network topology are described and analyzed. The architecture is shown to contain 2D mesh topologies of varying sizes and also a single one factor of the Boolean hypercube in any given configuration. A large class of algorithms for the 2D mesh and the Boolean n-cube are shown to map efficiently on the proposed architecture without loss of performance. The architecture is shown to be well suited for a number of problems in low and intermediate level computer vision such as the FFT, edge detection, template matching, and the Hough transform. Timing results for typical low and intermediate level vision algorithms on a transputer based prototype are presented.
机译:描述了一种基于多环多处理器网络的新颖的可重构体系结构。架构的可重新配置性显示出导致网络直径较小以及网络中每个节点的连通性较低的情况。描述了网络拓扑的数学属性和用于重新配置交换机的硬件。描述并分析了网络拓扑上的原始并行操作。该架构显示为包含大小不同的2D网格拓扑,并且在任何给定配置中还包含布尔超立方体的一个因素。示出了用于2D网格和布尔n立方体的一大类算法,可以有效地映射到所建议的体系结构上,而不会降低性能。该体系结构非常适合中低端计算机视觉中的许多问题,例如FFT,边缘检测,模板匹配和霍夫变换。给出了基于晶片机的原型上典型的低级和中级视觉算法的时序结果。

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