基于微腔光频梳的精密测距技术研究进展综述
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Research progress review on precision ranging technology based on microcombs
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    摘要:

    介绍了基于孤子微腔光梳的精密测距技术基本原理及其在芯片级集成、高精度与高速度等方面的优势。阐述了微腔单光梳线性调频连续波、混沌测距、色散干涉与合成波长法,以及双光梳测距的原理与实现方法。探讨了重复频率锁定、频率扫描和并行成像等发展路径。指出该领域研究已从原理性验证迈向性能优化与实用化探索的新阶段。提出未来技术演进将趋向系统级光电全集成、多功能可重构与跨领域深度融合,推动芯片级精密激光雷达在车载感知、工业计量、空间探测等场景的规模化应用。

    Abstract:

    The basic principles of precision ranging based on soliton microcombs and their advantages in chip-level integration, high precision, and high speed are introduced. The principles and implementations of single-microcomb frequency-modulated continuous wave, chaotic ranging, dispersive interferometry, synthetic-wavelength metrology, and dual-comb ranging are elaborated. The development paths such as repetition frequency locking, frequency scanning, and parallel imaging are discussed. It is pointed out that the research in this field has progressed from proof-of-concept demonstrations to a new stage focused on performance optimization and practical exploration. It is further proposed that the future development will be characterized by system-level full optoelectronic integration, multifunctional reconfigurability, and deep cross-disciplinary convergence, through which a large-scale deployment of chip-scale precision LiDAR in automotive perception, industrial metrology, space exploration, and related applications is expected to be enabled.

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黄博航, 姜廷皓, 赵春播, 武腾飞, 何广强.基于微腔光频梳的精密测距技术研究进展综述[J].计测技术,2025,(6):10~28:
10.11823/j. issn.1674-5795.2025.06.01.

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  • 在线发布日期: 2026-01-05
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