Increasingly Intelligent Micromachines

Tianyun Huang, Hongri Gu, B. Nelson
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引用次数: 26

Abstract

Intelligent micromachines, with dimensions ranging from a few millimeters down to hundreds of nanometers, are miniature systems capable of performing specific tasks autonomously at small scales. Enhancing the intelligence of micromachines to tackle the uncertainty and variability in complex microenvironments has applications in minimally invasive medicine, bioengineering, water cleaning, analytical chemistry, and more. Over the past decade, significant progress has been made in the construction of intelligent micromachines, evolving from simple micromachines to soft, compound, reconfigurable, encodable, multifunctional, and integrated micromachines, as well as from individual to multiagent, multiscale, hierarchical, self-organizing, and swarm micromachines. The field leverages two important trends in robotics research—the miniaturization and intelligentization of machines—but a compelling combination of these two features has yet to be realized. The core technologies required to make such tiny machines intelligent include information media, transduction, processing, exchange, and energy supply, but embedding all of these functions into a system at the micro- or nanoscale is challenging. This article offers a comprehensive introduction to the state-of-the-art technologies used to create intelligence for micromachines and provides insight into the construction of next-generation intelligent micromachines that can adapt to diverse scenarios for use in emerging fields. Expected final online publication date for the Annual Review of Control, Robotics, and Autonomous Systems, Volume 5 is May 2022. Please see http://www.annualreviews.org/page/journal/pubdates for revised estimates.
日益智能化的微型机器
智能微型机器的尺寸从几毫米到数百纳米不等,是能够在小范围内自主执行特定任务的微型系统。增强微机械的智能以应对复杂微环境中的不确定性和可变性,在微创医学、生物工程、水清洗、分析化学等领域都有应用。近十年来,智能微机的建设取得了重大进展,从简单微机向软质、复合、可重构、可编码、多功能、集成微机发展,从个体微机向多智能体、多尺度、分层、自组织、群体微机发展。该领域利用了机器人研究的两个重要趋势——机器的小型化和智能化——但这两个特征的令人信服的结合尚未实现。使这种微型机器智能化所需的核心技术包括信息媒介、转导、处理、交换和能源供应,但将所有这些功能嵌入到微或纳米尺度的系统中是具有挑战性的。本文全面介绍了用于为微机械创造智能的最新技术,并提供了对下一代智能微机械的构建的见解,这些智能微机械可以适应新兴领域的各种场景。预计《控制、机器人和自主系统年度评论》第5卷的最终在线出版日期是2022年5月。修订后的估计数请参阅http://www.annualreviews.org/page/journal/pubdates。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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