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Analog metal-oxide-semiconductor integrated circuit implementation of approach detection with simple-shape recognition based on visual systems of lower animals [Review]

机译:基于小动物视觉系统的具有简单形状识别的接近检测的模拟金属氧化物半导体集成电路的实现[综述]

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摘要

We proposed an analog network for motion detection of an approaching object with simple-shape recognition based on the visual systems of lower animals. Locusts can detect an approaching object by performing a simple process in a descending contralateral motion detector (DCMD) existing in their brain, which senses the increase in size and expansion velocity of the image projected on a retina just before collision. The responses correspond to the approaching velocity and direction. Frogs can recognize a simple shape by performing a simple process in a tectum and thalamus existing in their brain based on retinal information; this is called the Ewert von Seelen model. The proposed network was constructed with simple analog metal-oxide-semiconductor (MOS) circuits. Simulation results with a simulation program with integrated circuit emphasis (SPICE) showed that the network was able to detect the approaching velocity and direction, and also recognized simple shapes such as a circle, square, triangle and rectangle. [References: 20]
机译:我们提出了一种模拟网络,该网络基于低等动物的视觉系统进行具有简单形状识别的接近物体的运动检测。蝗虫可以通过在大脑中存在的对侧降落运动检测器(DCMD)中执行简单的过程来检测接近的对象,该检测器可以感知到在碰撞之前投射在视网膜上的图像的大小和扩展速度的增加。响应对应于接近的速度和方向。青蛙可以根据视网膜信息,通过对大脑中存在的顶盖和丘脑进行简单的处理来识别简单的形状;这称为Ewert von Seelen模型。拟议的网络由简单的模拟金属氧化物半导体(MOS)电路构成。使用带有集成电路重点(SPICE)的仿真程序进行的仿真结果表明,该网络能够检测到接近的速度和方向,并且还可以识别简单的形状,例如圆形,正方形,三角形和矩形。 [参考:20]

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