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Parallel implementation and evaluation of motion estimation system algorithms on a distributed memory multiprocessor using knowledge based mappings

机译:使用基于知识的映射在分布式内存多处理器上并行执行和评估运动估计系统算法

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摘要

Several techniques to perform static and dynamic load balancing techniques for vision systems are presented. These techniques are novel in the sense that they capture the computational requirements of a task by examining the data when it is produced. Furthermore, they can be applied to many vision systems because many algorithms in different systems are either the same, or have similar computational characteristics. These techniques are evaluated by applying them on a parallel implementation of the algorithms in a motion estimation system on a hypercube multiprocessor system. The motion estimation system consists of the following steps: (1) extraction of features; (2) stereo match of images in one time instant; (3) time match of images from different time instants; (4) stereo match to compute final unambiguous points; and (5) computation of motion parameters. It is shown that the performance gains when these data decomposition and load balancing techniques are used are significant and the overhead of using these techniques is minimal.
机译:介绍了执行视觉系统静态和动态负载平衡技术的几种技术。从某种意义上说,这些技术是新颖的,它们可以通过在生成任务时检查数据来捕获任务的计算要求。此外,它们可以应用于许多视觉系统,因为不同系统中的许多算法是相同的或具有相似的计算特性。通过将这些技术应用于超立方体多处理器系统上的运动估计系统中算法的并行实现,可以对这些技术进行评估。运动估计系统包括以下步骤:(1)特征提取; (2)瞬间图像立体匹配; (3)不同时刻图像的时间匹配; (4)立体匹配以计算最终明确点; (5)运动参数的计算。结果表明,使用这些数据分解和负载平衡技术时,性能提升显着,而使用这些技术的开销却很小。

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