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Background light effect of a dynamically reconfigurable vision-chip architecture

机译:动态可重新配置视觉芯片架构的背景光效果

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Recently, demands for implementation of a highspeed image recognition function onto autonomous vehicles and robots, that is superior to that of the human eye, have been increasing. To date, analog-type vision chips and digital vision chips have been developed. Nevertheless, even now, realizing such high-speed real-time image recognition operation is extremely difficult because the template information transfer rate and template matching operation cycle reach the order of Petapixel/s. Therefore, to accommodate template matching operations that can be executed at rates greater than Petapixel/s, a dynamically reconfigurable vision-chip architecture has been developed in which a holographic memory technique is introduced to current VLSI technology. However, the dynamically reconfigurable vision-chip architecture must receive image information in addition to configuration context information. At such a time, a salient concern is that image information light might reduce the retention time of photodiode memories on a dynamically reconfigurable vision-chip. This paper therefore clarifies that the background light does not affect the photodiode memories on a dynamically reconfigurable vision-chip architecture.
机译:最近,对高速图像识别功能的要求在自动车辆和机器人上,其优于人眼,这一直在增加。迄今为止,已经开发了模拟类型的视觉芯片和数字视觉芯片。然而,即使现在,也实现了这种高速实时图像识别操作非常困难,因为模板信息传送速率和模板匹配操作周期到达Petapixel / s的顺序。因此,为了容纳可以以大于petapixel / s的速率执行的模板匹配操作,已经开发了一种动态可重构的视觉芯片架构,其中引入了全息内存技术到当前的VLSI技术。然而,除了配置上下文信息之外,动态可重新配置的视觉芯片架构必须接收图像信息。在这种时间,突出的问题是图像信息光可能会在动态可重构的视觉芯片上减少光电二极管存储器的保留时间。因此,本文阐明了背景光不会影响动态可重新配置的视觉芯片架构上的光电二极管存储器。

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