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首页> 外文期刊>Journal of Real-Time Image Processing >Efficient FPGA implementation of homodyne-based time-of-flight range imaging
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Efficient FPGA implementation of homodyne-based time-of-flight range imaging

机译:基于零差的飞行时间范围成像的高效FPGA实现

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摘要

Time-of-flight range imaging systems illuminate a scene with an amplitude-modulated light source, the light is reflected from objects in the scene, and measurement of the phase of the modulation envelope is performed to determine the object's distance. As the image sensor is capable of performing this task for every pixel simultaneously, acquisition of the entire scene can be performed at rapid (video) update rates, making the technology ideal for real-time applications. In this paper we present an efficient real-time FPGA algorithm for determining phase, and hence distance, from the raw image sensor output. The algorithm has been implemented on a range imaging system based on the PMD19k-2 image sensor, with range processing performed in real time by a Stratix III FPGA. The scarcest resource in this implementation is RAM, and an analysis is presented to maximise the efficiency of this resource whilst maintaining acceptable processing accuracy. The algorithm can be extended for processing multiple simultaneous modulation frequencies. An efficient method for combining these results to determine unambiguous range, based on the Chinese remainder theorem, is also presented.
机译:飞行时间范围成像系统使用调幅光源照亮场景,光线从场景中的对象反射,然后执行调制包络的相位测量以确定对象的距离。由于图像传感器能够同时对每个像素执行此任务,因此可以以快速(视频)更新速率执行整个场景的采集,从而使该技术成为实时应用的理想选择。在本文中,我们提出了一种有效的实时FPGA算法,用于确定与原始图像传感器输出的相位以及距离。该算法已在基于PMD19k-2图像传感器的测距成像系统上实现,并由Stratix III FPGA实时执行了测距处理。此实现中最稀缺的资源是RAM,并且进行了分析以最大程度地利用此资源,同时保持可接受的处理精度。该算法可以扩展为处理多个同时的调制频率。还提出了一种有效的方法,将这些结果结合起来,根据中国余数定理确定明确的范围。

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