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A neuromorphic approach for tracking using dynamic neural fields on a programmable vision-chip

机译:在可编程视觉芯片上使用动态神经场进行跟踪的一种神经形态方法

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摘要

In artificial vision applications, such as tracking, a large amount of data captured by sensors is transferred to processors to extract information relevant for the task at hand. Smart vision sensors offer a means to reduce the computational burden of visual processing pipelines by placing more processing capabilities next to the sensor. In this work, we use a vision-chip in which a small processor with memory is located next to each photosensitive element. The architecture of this device is optimized to perform local operations. To perform a task like tracking, we implement a neuromorphic approach using a Dynamic Neural Field, which allows to segregate, memorize, and track objects. Our system, consisting of the vision-chip running the DNF, outputs only the activity that corresponds to the tracked objects. These outputs reduce the bandwidth needed to transfer information as well as further post-processing, since computation happens at the pixel level.
机译:在诸如跟踪之类的人工视觉应用中,传感器捕获的大量数据被传输到处理器,以提取与手头任务相关的信息。智能视觉传感器提供了一种通过在传感器旁边放置更多处理功能来减轻视觉处理管道的计算负担的方法。在这项工作中,我们使用视觉芯片,其中带有存储器的小型处理器位于每个感光元件旁边。该设备的架构经过优化,可以执行本地操作。为了执行类似跟踪的任务,我们使用动态神经场实现了神经形态方法,该方法可以隔离,记忆和跟踪对​​象。我们的系统由运行DNF的视觉芯片组成,仅输出与被跟踪对象相对应的活动。由于计算发生在像素级别,因此这些输出减少了传输信息以及进一步后处理所需的带宽。

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