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Software Model of an Improved Bio-Inspired Sensor

机译:改进的生物启发传感器的软件模型

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Researchers at the Wyoming Information, Signal Processing, and Robotics (WISPR) Laboratories are developing a bio-inspired sensor based on the visual system of the common housefly (Musca domestica). The fly's visual system has many beneficial characteristics which we seek to replicate. Most notably, flies exhibit motion hyperacuity (i.e., they are able to detect motion much smaller than their photoreceptor spacing suggests). Recent research has shown that this is due to a pre-blurring of the image which results in overlapping Gaussian responses in the photoreceptors. Current biomimetic sensors developed at the WISPR Labs utilize this concept of pre-blurring and have been shown to exhibit hyperacuity. However, this hyperacuity comes at the expense of individual photodetector responses.rnWe have modeled a new sensor that more closely resembles the Musca domestica. It pools responses from multiple lenses rather than a single lens. This allows for increased photodetector responses, adjustable response shape and overlap, and improved motion detection. In this paper we report the results of a software model developed with Zemax optical design software. We show how the model allows us to optimize the shape, magnitude, and overlap of the photodetector responses. Finally, we describe how the optimization is beneficial in the context of hyperacuity.
机译:怀俄明州信息,信号处理和机器人技术(WISPR)实验室的研究人员正在开发一种基于普通家蝇(Musca domestica)视觉系统的生物启发型传感器。苍蝇的视觉系统具有许多有益的特征,我们试图复制它们。最值得注意的是,苍蝇表现出运动敏锐度(即,它们能够检测到比其感光器间距所建议的小得多的运动)。最近的研究表明,这是由于图像的预模糊而导致感光器中的高斯响应重叠。 WISPR实验室开发的当前仿生传感器利用了这种预模糊的概念,并已显示出超敏锐性。但是,这种超敏锐性是以牺牲单个光电探测器的响应为代价的。我们已经对一种新的传感器进行了建模,该传感器更类似于家蝇。它汇集了来自多个镜头而不是单个镜头的响应。这样可以增加光电探测器的响应,可调整的响应形状和重叠以及改进的运动检测。在本文中,我们报告了使用Zemax光学设计软件开发的软件模型的结果。我们展示了该模型如何使我们能够优化光电探测器响应的形状,大小和重叠。最后,我们描述了优化在超敏锐度下的优势。

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