Center for Optoelectronic Materials and Devices, Post-silicon Semiconductor Institute, Korea Institute of Science and Technology (KIST), Seoul 02792, Republic of Korea.
Department of Electronics Engineering, Pusan National University, Busan 46241, Republic of Korea.
ACS Nano. 2024 Jan 16;18(2):1241-1256. doi: 10.1021/acsnano.3c10181. Epub 2024 Jan 2.
High-performance robotic vision empowers mobile and humanoid robots to detect and identify their surrounding objects efficiently, which enables them to cooperate with humans and assist human activities. For error-free execution of these robots' tasks, efficient imaging and data processing capabilities are essential, even under diverse and complex environments. However, conventional technologies fall short of meeting the high-standard requirements of robotic vision under such circumstances. Here, we discuss recent progress in artificial vision systems with high-performance imaging and data processing capabilities enabled by distinctive electrical, optical, and mechanical characteristics of nanomaterials surpassing the limitations of traditional silicon technologies. In particular, we focus on nanomaterial-based electronic eyes and in-sensor processing devices inspired by biological eyes and animal visual recognition systems, respectively. We provide perspectives on key nanomaterials, device components, and their functionalities, as well as explain the remaining challenges and future prospects of the artificial vision systems.
高性能机器人视觉使移动机器人和人形机器人能够高效地检测和识别周围的物体,从而使它们能够与人类合作并协助人类活动。为了使这些机器人的任务能够无误地执行,高效的成像和数据处理能力是必不可少的,即使在多样化和复杂的环境下也是如此。然而,传统技术无法满足机器人视觉在这种情况下的高标准要求。在这里,我们讨论了人工视觉系统的最新进展,这些系统具有高性能的成像和数据处理能力,得益于纳米材料独特的电学、光学和机械特性,超越了传统硅技术的限制。特别是,我们关注基于纳米材料的电子眼和基于生物眼和动物视觉识别系统的传感器内处理设备。我们提供了关键纳米材料、器件组件及其功能的视角,并解释了人工视觉系统存在的挑战和未来展望。