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从视觉生态学汲取灵感,推进多功能机器人视觉系统:生物启发的电子眼和神经形态图像传感器。

Inspiration from Visual Ecology for Advancing Multifunctional Robotic Vision Systems: Bio-inspired Electronic Eyes and Neuromorphic Image Sensors.

机构信息

Center for Quantum Technology, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.

School of Electrical and Electronics Engineering, Pusan National University, Busan, 46241, Republic of Korea.

出版信息

Adv Mater. 2024 Nov;36(48):e2412252. doi: 10.1002/adma.202412252. Epub 2024 Oct 14.

Abstract

In robotics, particularly for autonomous navigation and human-robot collaboration, the significance of unconventional imaging techniques and efficient data processing capabilities is paramount. The unstructured environments encountered by robots, coupled with complex missions assigned to them, present numerous challenges necessitating diverse visual functionalities, and consequently, the development of multifunctional robotic vision systems has become indispensable. Meanwhile, rich diversity inherent in animal vision systems, honed over evolutionary epochs to meet their survival demands across varied habitats, serves as a profound source of inspirations. Here, recent advancements in multifunctional robotic vision systems drawing inspiration from natural ocular structures and their visual perception mechanisms are delineated. First, unique imaging functionalities of natural eyes across terrestrial, aerial, and aquatic habitats and visual signal processing mechanism of humans are explored. Then, designs and functionalities of bio-inspired electronic eyes are explored, engineered to mimic key components and underlying optical principles of natural eyes. Furthermore, neuromorphic image sensors are discussed, emulating functional properties of synapses, neurons, and retinas and thereby enhancing accuracy and efficiency of robotic vision tasks. Next, integration examples of electronic eyes with mobile robotic/biological systems are introduced. Finally, a forward-looking outlook on the development of bio-inspired electronic eyes and neuromorphic image sensors is provided.

摘要

在机器人技术中,特别是对于自主导航和人机协作,非传统成像技术和高效数据处理能力的重要性至关重要。机器人所遇到的非结构化环境,以及分配给它们的复杂任务,带来了许多需要各种视觉功能的挑战,因此,多功能机器人视觉系统的发展变得不可或缺。同时,动物视觉系统内在的丰富多样性,经过进化时代的磨练,以满足它们在各种栖息地的生存需求,为我们提供了深刻的灵感源泉。在这里,我们阐述了从自然眼部结构及其视觉感知机制中汲取灵感的多功能机器人视觉系统的最新进展。首先,我们探索了陆地、空中和水生栖息地中自然眼睛的独特成像功能以及人类的视觉信号处理机制。然后,我们探索了仿生电子眼的设计和功能,这些仿生电子眼旨在模仿自然眼睛的关键组件和基础光学原理。此外,我们还讨论了神经形态图像传感器,它模拟了突触、神经元和视网膜的功能特性,从而提高了机器人视觉任务的准确性和效率。接下来,我们介绍了电子眼与移动机器人/生物系统的集成示例。最后,我们对仿生电子眼和神经形态图像传感器的发展进行了前瞻性展望。

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