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首页> 外文期刊>Proceedings of the IEEE >Animal Polarization Imaging and Implications for Optical Processing
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Animal Polarization Imaging and Implications for Optical Processing

机译:动物极化成像及其对光学加工的意义

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摘要

Biologically inspired solutions for modern-day sensory systems promise to deliver both higher capacity and faster, more efficient processing of information than current computational approaches. Many animals are able to perform remarkable sensing tasks despite only being able to process what would be considered modest data rates and bandwidths. The key biological innovations revolve around dedicated filter designs. By sacrificing some flexibility, specifically matched and hard-wired sensory systems, designed primarily for single roles, provide a blueprint for data and task-specific efficiency. In this paper, we examine several animal visual systems designed to use the polarization of light in spatial imaging. We investigate some implications for artificial optical processing based on models of polarization image processing in fiddler crabs, cuttlefish, octopus, and mantis shrimp.
机译:受现代生物学启发的传感系统解决方案有望提供比当前的计算方法更高的容量以及更快,更有效的信息处理能力。尽管只能处理适度的数据速率和带宽,但许多动物仍然能够执行出色的传感任务。关键的生物学创新围绕专用过滤器设计展开。通过牺牲一些灵活性,专门为单个角色设计的专门匹配的硬连线传感系统为数据和特定于任务的效率提供了蓝图。在本文中,我们研究了几种旨在在空间成像中使用偏振光的动物视觉系统。我们将基于偏振图像处理模型对提琴蟹,墨鱼,章鱼和螳螂虾的人工光学处理进行一些研究。

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