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NanEye-An Endoscopy Sensor With 3-D Image Synchronization

机译:NanEye-An具有3D图像同步的内窥镜传感器

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In this paper, an innovative camera synchronization technique is presented, enabling the combination of two 1 mm × 1 mm sized cameras to produce a real-time 3-D image. The technique developed and implemented on an FPGA platform with an USB3 interface, allows minimal error synchronization of up to an eight individual self-timed cameras. Typically, a small self-timed camera modules do not allow external synchronization, but for stereo vision, 3-D reconstruction with multiple cameras, and applications requiring pulsed illumination, camera synchronization is required. The developed solution uses the power supply control to dynamically adapt their frame rate and frame phase. The control core overviews the operating frequency of each camera by measuring the line period in each frame based on a well-defined sampling signal. The frequency is then adjusted by varying the voltage level applied to the sensor using as a reference the error between the measured and desired line period. This allows for average synchronization errors below 0.02% at temperatures ranging from 0 °C to 60 °C. This paper will allow the implementation of smaller than 3-mm-diameter 3-D stereo vision equipment for medical endoscopy, such as disposable robotic or micro invasive surgery applications.
机译:在本文中,提出了一种创新的相机同步技术,该技术可以将两个1 mm×1 mm尺寸的相机组合在一起以生成实时3-D图像。该技术是在具有USB3接口的FPGA平台上开发和实现的,允许最多八个独立的自定时摄像机进行最小的错误同步。通常,小型自定时摄像头模块不允许外部同步,但是对于立体视觉,使用多个摄像头的3D重建以及需要脉冲照明的应用,需要进行摄像头同步。开发的解决方案使用电源控制来动态调整其帧速率和帧相位。控制核心通过基于定义明确的采样信号测量每帧中的行周期来概述每个摄像机的工作频率。然后,通过改变施加到传感器的电压电平来调节频率,并以测量到的和期望的线路周期之间的误差为参考。在0°C至60°C的温度范围内,这允许平均同步误差低于0.02%。本文将允许实现用于医学内窥镜的直径小于3毫米的3-D立体视觉设备,例如一次性机器人或微创手术应用。

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