世界科技研究与发展 ›› 2025, Vol. 47 ›› Issue (S2): 23-29.doi: 10.16507/j.issn.1006-6055.2025.10.103 cstr: 32308.14.1006-6055.2025.10.103

• 科技前沿与态势 • 上一篇    下一篇

激光飞行时间测距误差优化技术演进研究

吕玉婷1 金丽宏2   

  1. 1.国家知识产权局专利局专利审查协作四川中心;2.武汉纺织大学数理与统计学院
  • 出版日期:2025-12-23 发布日期:2025-12-23

Researches on Evolution of Laser TOF Ranging Error Optimization Technology

LYU Yuting1 JIN Lihong2   

  1. 1.Patent Examination Cooperation Sichuan Center, China National Intellectual Property Administration;2.School of Mathematics and statistics, Wuhan Textile University
  • Online:2025-12-23 Published:2025-12-23

摘要: 飞行时间(TOF)测量精度是脉冲激光测距仪性能的核心支撑,其技术突破对高端制造业、自动驾驶与无人机、航空航天与国防、智慧城市与基建等领域的高精度补偿及智能化抗干扰能力升级具有关键意义。本文聚焦飞行时间测量这一核心维度,通过专利情报分析,揭示专利布局与产业竞争格局的关联规律,明确TOF测距误差解决的产业现状、技术动态及竞争格局,剖析该领域“卡脖子”技术瓶颈,为TOF测量技术迭代、测距误差破解提供方向指引。从专利数据库检索TOF测距误差相关技术文献,将解决方案解构为三大分支:信号处理维度(聚焦飞行时间的精准解算逻辑)、测距装置维度(支撑飞行时间测量的硬件载体设计)、测距信号维度(关联飞行时间测量的信号源头创新)。通过量化分析专利申请量演化、分支技术演进路径、申请国分布特征及核心技术集群,系统拆解TOF测量的技术攻关脉络。研究发现,当前领域研究集中于TOF解算相关的信号处理技术,而对测量的硬件底座(测距装置)、信号源头(测距信号)等环节投入不足。若要突破激光测距技术的性能瓶颈与竞争壁垒,需强化测距装置、测距信号领域的研究投入,挖掘其在技术原理、设计方法、制造工艺等层面的创新潜力,推动TOF测量全链条技术的系统性突破。

关键词: 激光测距;测量误差;专利;飞行时间;TOF

Abstract: Time of flight (TOF) measurement accuracy is the core support of the performance of pulsed laser rangefinder, and its technical breakthrough is of key significance for high-precision compensation and intelligent anti-jamming capability upgrade in high-end manufacturing, autonomous driving and unmanned aerial vehicles, aerospace and national defense, smart cities and infrastructure. Focusing on the core dimension of time-of-flight measurement, this paper, through the analysis of patent information, reveals the correlation law between patent layout and industrial competition pattern, clarifies the industrial status, technical trends and competition pattern of TOF ranging error resolution, and analyzes the technical bottleneck in this field, which provides direction guidance for the iteration of time-of-flight TOF measurement technology and the cracking of ranging error. The related technical literature of TOF ranging error of time of flight was retrieved from patent database, and the solution was decomposed into three branches: signal processing dimension (focusing on the precise calculation logic of time of flight),ranging device dimension (supporting the hardware carrier design of time of flight measurement), and ranging signal dimension (signal source innovation related to time of flight measurement).By quantitatively analyzing the evolution of patent applications, the evolution path of branch technology, the distribution characteristics of applicant countries and the core technology clusters, the technical research thread of TOF measurement of flight time is systematically dismantled. It is found that the current research focuses on the signal processing technology related to TOF calculation, but the hardware base (ranging device) and signal source (ranging signal) of TOF measurement are not invested enough. In order to break through the performance bottleneck and competition barrier of laser ranging technology, it is necessary to strengthen the research investment in the field of ranging devices and ranging signals, tap its innovative potential in technical principles, design methods and manufacturing processes, and promote the systematic breakthrough of the whole chain technology of measurement of time of flight.

Key words: Laser Ranging; Measurement Error; Patent; Time of Flight; TOF