论文标题
虹膜:图像传感器中的整合视网膜功能
IRIS: Integrated Retinal Functionality in Image Sensors
论文作者
论文摘要
神经形态图像传感器从生物视网膜中汲取灵感,以在电子硬件中实现视觉计算。在第一个视网膜突触下的光转导和时间分化的增益控制启发了第一代神经形态传感器,但是在过去十年中,在下游视网膜电路中进行的处理尚未在图像传感器技术中实现。我们提出了一种技术电路共同设计解决方案,该解决方案实现了在视网膜输出下发生的两个运动计算,该计算可能在动态环境中为基于视觉的决策提供广泛的应用。我们对GlobalFoundries 22NM技术节点的模拟表明,通过利用半导体芯片堆叠技术的最新进展,可以在现有半导体铸造厂的图像传感平台上制造拟议的视网膜启发的电路。图像传感器(IRIS)技术中的集成视网膜功能可以推动机器视觉应用中的进步,这些应用需要强大,高速,节能和低型带宽实时决策。
Neuromorphic image sensors draw inspiration from the biological retina to implement visual computations in electronic hardware. Gain control in phototransduction and temporal differentiation at the first retinal synapse inspired the first generation of neuromorphic sensors, but processing in downstream retinal circuits, much of which has been discovered in the past decade, has not been implemented in image sensor technology. We present a technology-circuit co-design solution that implements two motion computations occurring at the output of the retina that could have wide applications for vision based decision making in dynamic environments. Our simulations on Globalfoundries 22nm technology node show that, by taking advantage of the recent advances in semiconductor chip stacking technology, the proposed retina-inspired circuits can be fabricated on image sensing platforms in existing semiconductor foundries. Integrated Retinal Functionality in Image Sensors (IRIS) technology could drive advances in machine vision applications that demand robust, high-speed, energy-efficient and low-bandwidth real-time decision making.