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A Low-Power Edge Detection Image Sensor Based on Parallel Digital Pulse Computation

机译:基于并行数字脉冲计算的低功耗边缘检测图像传感器

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An all-digital low-power CMOS edge detection image sensor array is presented. Each pixel contains a voltage-controlled ring oscillator to achieve low-power and cost-efficient digital-only edge detection. While conventional edge detection methods require high computing power and large chip area to process intensity maps, this work implements an all-digital parallel processing algorithm that detects differences between neighboring pixel pairs on chip, hence reducing the aforementioned power and cost overheads. In particular, a simple column-shared frequency comparator enables low-power operation by eliminating arithmetic computations with large memory requirement. Such a simple edge detection algorithm allows the processor area to be less than 16% of the entire image sensor, therefore maximizing the proportion of active optical area. The prototype image sensor presented in this work is fabricated using a four-metal 180-nm CMOS image sensor process and contains 105 92 pixels. An individual pixel size is with a fill factor of 11.69%, while the total chip area is . The image sensor exhibits a frame rate of 30 frames/s and a power consumption of 8 mW, which is 27.7 nW/pixel/frame at of 1.6 V.
机译:提出了一种全数字低功耗CMOS边缘检测图像传感器阵列。每个像素都包含一个压控环形振荡器,以实现低功耗和经济高效的仅数字边缘检测。尽管常规的边缘检测方法需要高计算能力和大芯片面积来处理强度图,但这项工作实现了全数字并行处理算法,该算法可检测芯片上相邻像素对之间的差异,从而降低了上述功耗和成本开销。特别是,一个简单的列共享频率比较器通过消除具有大内存需求的算术计算,可以实现低功耗操作。这种简单的边缘检测算法可使处理器面积小于整个图像传感器的16%,从而使有效光学面积的比例最大化。本文中介绍的原型图像传感器是使用四金属180 nm CMOS图像传感器工艺制造的,包含105 92个像素。单个像素大小的填充率为11.69%,而总芯片面积为。图像传感器的帧速率为30帧/秒,功耗为8 mW,在1.6 V时为27.7 nW /像素/帧。

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