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An Intelligent Object Detection and Measurement System Based on Trinocular Vision

机译:基于三曲视觉的智能对象检测和测量系统

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摘要

The existing size measurement systems cannot meet the requirements of non-contact measurement tasks, and the main challenge is how to detect various objects and improve measurement accuracy. In order to solve these problems, a novel measurement system was proposed in this paper. In the system, a three-camera model with variable baselines was designed based on the trinocular vision. Three binocular vision subsystems were composed of the three cameras, which were used to obtain the depth information from different shooting angles, and the baselines between the cameras could be adjusted according to the different objects. In the measurement process, the target object was detected automatically based on the visual saliency features and spatial information. Finally, the size of the target object was computed by the cooperative analysis of the three binocular vision subsystems. The experimental results demonstrated that the proposed system is accurate and stable in various objects' detection and measurement tasks.
机译:现有尺寸测量系统不能满足非接触式测量任务的要求,主要挑战是如何检测各种对象并提高测量精度。为了解决这些问题,本文提出了一种新的测量系统。在该系统中,基于三腔视觉设计了一种具有可变基线的三摄像机模型。三个双目视觉子系统由三个摄像机组成,其用于从不同的拍摄角度获得深度信息,并且可以根据不同的物体调整相机之间的基线。在测量过程中,基于视觉显着特征和空间信息自动检测目标对象。最后,通过三个双目视觉子系统的合作分析来计算目标对象的大小。实验结果表明,所提出的系统在各种物体检测和测量任务中是准确和稳定的。

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