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A Signal Normalization Technique for Illumination-Based Synchronization of 1,000-fps Real-Time Vision Sensors in Dynamic Scenes

机译:动态场景中基于fps的1,000 fps实时视觉传感器的同步化信号标准化技术

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摘要

To acquire images of dynamic scenes from multiple points of view simultaneously, the acquisition time of vision sensors should be synchronized. In this paper, an illumination-based synchronization derived from the phase-locked loop (PLL) mechanism based on the signal normalization method is proposed and evaluated. To eliminate the system dependency due to the amplitude fluctuation of the reference illumination, which may be caused by the moving objects or relative positional distance change between the light source and the observed objects, the fluctuant amplitude of the reference signal is normalized framely by the estimated maximum amplitude between the reference signal and its quadrature counterpart to generate a stable synchronization in highly dynamic scenes. Both simulated results and real world experimental results demonstrated successful synchronization result that 1,000-Hz frame rate vision sensors can be successfully synchronized to a LED illumination or its reflected light with satisfactory stability and only 28-μs jitters.
机译:要同时从多个角度获取动态场景的图像,应同步视觉传感器的获取时间。本文提出并评估了基于信号归一化方法从锁相环(PLL)机制派生的基于照明的同步。为了消除由于参考照明的幅度波动而引起的系统依赖性,这可能是由于运动物体或光源与被观察物体之间的相对位置距离变化而引起的,因此参考信号的波动幅度通过估算参考信号与其正交对应信号之间的最大幅度,以在高动态场景中产生稳定的同步。仿真结果和现实世界的实验结果均显示出成功的同步结果:1,000 Hz帧频视觉传感器可以成功地同步到LED照明或其反射光,具有令人满意的稳定性,并且抖动仅为28μs。

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