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基于双目立体视觉的航天电连接器缩针检测技术OA

Pin-retraction detection for aerospace electrical connectors based on binocular stereo vision

中文摘要英文摘要

电连接器是航天电气系统中的核心功能组件,缩针会导致信号传输中断甚至系统失效,直接影响电气设备可靠性,带来不可估量的后果.本文提出一种融合双目立体视觉与多约束优化匹配算法的高精度缩针检测方法,旨在实现各型号电连接器插针的通用化识别,针对缩针实现高精度检测及复杂场景下的鲁棒性检测.提出了基于模板匹配算法实现插针区域识别,采用Delaunay三角剖分算法剔除误识别插针,结合插针点轮廓拟合定位算法,将插针识别率提升至99.75%,且大大提高插针中心定位精度.其次,通过概率极线约束结合几何约束特性实现插针双目匹配,完成插针点的三维重建,并计算插针三维点至基准平面的欧式距离作为缩针量,实现缩针量的定量测量.通过设计多组不同型号的电连接器缩针测量实验并利用K-L散度分析结果可知,系统检测精度优于0.05 mm,重复误差在0.035 mm以内,验证了所提出的缩针检测方法的有效性,并大大提高了检测效率,满足实际工业检测需求.

Electrical connectors are core functional components in aerospace electrical systems.Pin retraction may lead to signal transmission interruption and even system failure,directly affecting the reliability of electrical equipment and causing incalculable consequences.We propose a high-precision pin-retraction detection method that integrates binocular stereo vision with a multi-constrained optimization matching algorithm,aiming to achieve universal recognition of pins across different connector models and robust detection of pin retraction in complex scenarios.In this study,the Delaunay triangulation algorithm is employed to eliminate the misidentified pins from the template matching algorithm.Furthermore,the pin recognition rate is enhanced to nearly 99.75%,and the accuracy of pin center positioning is significantly improved by integrating a contour fitting and positioning algorithm for pin points.Subsequently,the binocular matching of pins is achieved by combining probabilistic epipolar constraints with geometric constraints,thereby completing the three-dimensional reconstruction of pin points.The Euclidean distance from the three-dimensional pin points to the reference plane is calculated as the pin retraction amount,enabling the quantitative measurement of pin retraction amount.Through the design of multiple experiments for measuring the pin retraction of different-type electrical connectors and the analysis of the results using the Kullback-Leibler(K-L)divergence,it is demonstrated that the system's measurement accuracy is superior to 0.05 mm,with an repeatability error of less than 0.035 mm.The effectiveness of the proposed pin-retraction detection method is thus verified,and the detection efficiency over manual operations is greatly enhanced to meet the actual industrial inspection requirements.

张晓琳;刘俊杰;宋建岭;王梅宝

哈尔滨工业大学 仪器科学与工程学院,黑龙江 哈尔滨 150001哈尔滨工业大学 仪器科学与工程学院,黑龙江 哈尔滨 150001首都航天机械有限公司,北京 100076浙江理工大学 机械工程学院,浙江 杭州 310018

双目立体视觉缩针检测图像处理电连接器机器视觉三维测量

binocular stereo visionpin-retraction detectionimage processingelectrical connectormachine vision3D measurement

《测试科学与仪器》 2026 (1)

49-60,12

This work was supported by National Natural Science Foundation of China-Youth Program(No.62303420),and thank you to all the researchers who participated in this article for their hard work and contribution.

10.62756/jmsi.1674-8042.2026004

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