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Improved measurement linearity and precision for AMCW time-of-flight range imaging cameras

机译:AMCW飞行时间范围成像摄像机的改进的测量线性度和精度

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摘要

Time-of-flight range imaging systems utilizing the amplitude modulated continuous wave (AMCW) technique often suffer from measurement nonlinearity due to the presence of aliased harmonics within the amplitude modulation signals. Typically a calibration is performed to correct these errors. We demonstrate an alternative phase encoding approach that attenuates the harmonics during the sampling process, thereby improving measurement linearity in the raw measurements. This mitigates the need to measure the system’s response or calibrate for environmental changes. In conjunction with improved linearity, we demonstrate that measurement precision can also be increased by reducing the duty cycle of the amplitude modulated illumination source (while maintaining overall illumination power).
机译:由于振幅调制信号内存在混叠谐波,利用振幅调制连续波(AMCW)技术的飞行时间范围成像系统通常会出现测量非线性。通常,执行校准以纠正这些错误。我们演示了另一种相位编码方法,该方法可以在采样过程中衰减谐波,从而改善原始测量中的测量线性度。这样就无需测量系统的响应或针对环境变化进行校准。结合改善的线性度,我们证明了通过降低调幅照明源的占空比(同时保持总照明功率),也可以提高测量精度。

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