首页> 外文会议>2019 IEEE International Conference on Computational Photography >SNLOS: Non-line-of-sight Scanning through Temporal Focusing
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SNLOS: Non-line-of-sight Scanning through Temporal Focusing

机译:SNLOS:通过时间聚焦进行非视线扫描

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Over the last decade, several techniques have been developed for looking around the corner by exploiting the round-trip travel time of photons. Typically, these techniques necessitate the collection of a large number of measurements with varying virtual source and virtual detector locations. This data is then processed by a reconstruction algorithm to estimate the hidden scene. As a consequence, even when the region of interest in the hidden volume is small and limited, the acquisition time needed is large as the entire dataset has to be acquired and then processed.In this paper, we present the first example of scanning based non-line-of-sight imaging technique. The key idea is that if the virtual sources (pulsed sources) on the wall are delayed using a quadratic delay profile (much like the quadratic phase of a focusing lens), then these pulses arrive at the same instant at a single point in the hidden volume – the point being scanned. On the imaging side, applying quadratic delays to the virtual detectors before integration on a single gated detector allows us to ‘focus’ and scan each point in the hidden volume. By changing the quadratic delay profiles, we can focus light at different points in the hidden volume. This provides the first example of scanning based non-line-of-sight imaging, allowing us to focus our measurements only in the region of interest. We derive the theoretical underpinnings of ‘temporal focusing’, show compelling simulations of performance analysis, build a hardware prototype system and demonstrate real results.
机译:在过去的十年中,已经开发出了几种技术,可以利用光子的往返行程时间在拐角处看。通常,这些技术需要使用变化的虚拟源和虚拟检测器位置来收集大量测量值。然后,通过重建算法对该数据进行处理,以估计隐藏场景。因此,即使隐藏体积中的目标区域很小且有限,由于必须先采集整个数据集然后进行处理,因此所需的采集时间也很大。视距成像技术。关键思想是,如果使用二次延迟曲线(非常类似于聚焦透镜的二次相位)来延迟壁上的虚拟源(脉冲源),则这些脉冲会在同一时刻到达隐藏点的单个点体积–被扫描的点。在成像方面,在集成到单个门控检测器上之前,对虚拟检测器施加二次延迟可以使我们“聚焦”并扫描隐藏体积中的每个点。通过更改二次延迟曲线,我们可以将光聚焦在隐藏体积的不同点上。这提供了基于扫描的非视距成像的第一个示例,从而使我们可以仅将测量聚焦在感兴趣的区域。我们得出了“时间聚焦”的理论基础,展示了性能分析的引人注目的模拟,构建了硬件原型系统并演示了实际结果。

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