首页> 外文会议>International work-conference on artificial neural networks;IWANN 2011 >Frequency Analysis of a 64x64 Pixel Retinomorphic System with AER Output to Estimate the Limits to Apply onto Specific Mechanical Environment*
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Frequency Analysis of a 64x64 Pixel Retinomorphic System with AER Output to Estimate the Limits to Apply onto Specific Mechanical Environment*

机译:带有AER输出的64x64像素视晶体系统的频率分析,以估计适用于特定机械环境的极限*

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The rods and cones of a human retina are constantly sensing and transmitting the light in the form of spikes to the cortex of the brain in order to reproduce an image in the brain. Delbruck's lab has designed and manufactured several generations of spike based image sensors that mimic the human retina. In this paper we present an exhaustive timing analysis of the Address-Event-Representation (AER) output of a 64x64 pixels silicon retinomorphic system. Two different scenarios are presented in order to achieve the maximum frequency of light changes for a pixel sensor and the maximum frequency of requested directions on the output AER. Results obtained are 100 Hz and 1.66 MHz in each case respectively. We have tested the upper spin limit and found it to be approximately 6000rpm (revolutions per minute) and in some cases with high light contrast lost events do not exist.
机译:人类视网膜的视锥细胞和视锥细胞不断感应并以尖峰形式将光传输到大脑皮层,以便在大脑中复制图像。 Delbruck的实验室已经设计和制造了几代基于尖峰的图像传感器,它们可以模仿人类的视网膜。在本文中,我们对64x64像素硅视晶系统的地址事件表示(AER)输出进行了详尽的时序分析。为了实现像素传感器的最大光变化频率和输出AER上要求的方向的最大频率,提出了两种不同的方案。每种情况下获得的结果分别为100 Hz和1.66 MHz。我们已经测试了旋转上限,发现它约为6000 rpm(每分钟转数),在某些情况下,在高光对比度下不存在丢失事件。

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