对光学计量学和感知技术进行全面的审查
Shuonan Shan1, Fangyuan Zhao1, Zinan Li1
1Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China.
Sensors (Basel, Switzerland)
|November 27, 2025
概括
本次审查引入了光学计量学和感知学的新框架,统一了干扰测量和成像等多种技术. 它将技术进步映射到工业需求,帮助研究人员在这个不断扩大的领域.
科学领域:
- 光学计量学和感知技术.
- 无接触,高精度的测量方法
- 光作为一个信息载体.
背景情况:
- 现有的审查经常隔离光学模式 (干扰计,成像,光谱).
- 新兴系统显示越来越多的跨领域集成.
- 应用范围涵盖工业 (半导体) 和消费 (自动驾驶,AR/VR) 领域.
研究的目的:
- 提出光学计量学和感知系统的层次分类.
- 引入一个统一的"理论-应用-创新"框架.
- 为研究人员和工程师提供结构化的知识基础.
主要方法:
- 层次分类:干扰计,成像,光谱,混合/先进方法.
- 理论 - 应用 - 创新框架.
- 将技术进步映射到工业和社会需求中.
主要成果:
- 揭示了不同光学模式之间的协同作用.
- 识别了包括人工智能驱动优化和量子增强传感在内的趋势.
- 为导航光学计量和感知提供了综合参考.
结论:
- 拟议的框架有助于跨学科的理解.
- 它支持在光学计量学和感知方面的战略决策.
- 为快速扩展的领域提供了综合参考.
关键词:
跨领域的整合.混合光学系统是混合光学系统.影像成像技术 影像成像技术干涉测量干涉测量干涉测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰测量干扰多模式传感传感器光学计量学是指光学计量学.感知技术 感知技术精确度测量测量的精确度.这是光谱学.相关概念视频
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