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首页> 外文期刊>IEEE Transactions on Robotics and Automation >A VLSI sorting image sensor: global massively parallel intensity-to-time processing for low-latency adaptive vision
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A VLSI sorting image sensor: global massively parallel intensity-to-time processing for low-latency adaptive vision

机译:VLSI分选图像传感器:用于低延迟自适应视觉的全局大规模并行强度-时间处理

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Presents a new intensity-to-time processing paradigm suitable for very large scale integration (VLSI) computational sensor implementation of global operations over sensed images. Global image quantities usually describe images with fewer data. When computed at the point of sensing, global quantities result in a low-latency performance due to the reduced data transfer requirements between an image sensor and a processor. The global quantities also help global top-down adaptation: the quantities are continuously computed on-chip, and are readily available to sensing for adaptation. As an example, we have developed a sorting image computational sensor-a VLSI chip which senses an image and sorts all pixel by their intensities. The first sorting sensor prototype is a 21/spl times/26 array of cells. It receives an image optically, senses it, and computes the image's cumulative histogram-a global quantity which can be quickly routed off chip via one pin. In addition, the global cumulative histogram is used internally on-chip in a top-down fashion to adapt the values in individual pixel so as to reflect the index of the incoming light, thus computing an "image of indices". The image of indices never saturates and has a uniform histogram.
机译:提出了一种新的强度-时间处理范例,适用于在感知图像上进行全局操作的超大规模集成(VLSI)计算传感器实现。全局图像数量通常描述具有较少数据的图像。当在感测点进行计算时,由于减少了图像传感器和处理器之间的数据传输要求,因此全局量会导致低延迟性能。全局数量也有助于全局自上而下的适应:数量在芯片上连续计算,并且随时可用于传感以进行适应。作为示例,我们开发了一种分类图像计算传感器-一种VLSI芯片,该芯片可感测图像并按像素强度对所有像素进行分类。第一个分类传感器原型是21 / spl times / 26的细胞阵列。它以光学方式接收图像,对其进行感测并计算图像的累积直方图-可以通过一个引脚快速将其路由到芯片之外的全局数量。另外,全局累积直方图以自上而下的方式在芯片上内部使用,以适应单个像素中的值,以反映入射光的折射率,从而计算出“索引图像”。索引图像永远不会饱和,并且具有均匀的直方图。

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