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Illumination waveform optimization for time-of-flight range imaging cameras

机译:飞行时间范围成像摄像机的照明波形优化

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摘要

Time-of-flight range imaging sensors acquire an image of a scene, where in addition to standard intensity information, the range (or distance) is also measured concurrently by each pixel. Range is measured using a correlation technique, where an amplitude modulated light source illuminates the scene and the reflected light is sampled by a gain modulated image sensor. Typically the illumination source and image sensor are amplitude modulated with square waves, leading to a range measurement linearity error caused by aliased harmonic components within the correlation waveform. A simple method to improve measurement linearity by reducing the duty cycle of the illumination waveform to suppress problematic aliased harmonic components is demonstrated. If the total optical power is kept constant, the measured correlation waveform amplitude also increases at these reduced illumination duty cycles. Measurement performance is evaluated over a range of illumination duty cycles, both for a standard range imaging camera configuration, and also using a more complicated phase encoding method that is designed to cancel aliased harmonics during the sampling process. The standard configuration benefits from improved measurement linearity for illumination duty cycles around 30%, while the measured amplitude, hence range precision, is increased for both methods as the duty cycle is reduced below 50% (while maintaining constant optical power).
机译:飞行时间范围成像传感器获取场景图像,除了标准强度信息外,每个像素还同时测量距离(或距离)。使用相关技术测量距离,其中调幅光源照亮场景,反射光由增益调制图像传感器采样。通常,照明源和图像传感器使用方波进行幅度调制,从而导致由相关波形内的混叠谐波分量引起的范围测量线性误差。通过减小照明波形的占空比以抑制有问题的混叠谐波分量,改善了测量线性度的简单方法。如果总光功率保持恒定,则在这些减小的照明占空比下,测得的相关波形幅度也会增加。对于标准范围的成像相机配置,还使用更复杂的相位编码方法来评估在照明占空比范围内的测量性能,该方法旨在消除采样过程中的混叠谐波。标准配置得益于照明占空比约为30%的改进的测量线性度,而这两种方法都将占空比降低到50%以下(同时保持恒定的光功率),从而提高了测量幅度,从而提高了量程精度。

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