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Near Field iToF LIDAR Depth Improvement from Limited Number of Shots

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arxiv 2304.07047 v2 pith:EF3HZL2J submitted 2023-04-14 cs.RO cs.CV

Near Field iToF LIDAR Depth Improvement from Limited Number of Shots

classification cs.RO cs.CV
keywords depthlaserambiguityanglecomponentsconsumptionfrequencylidar
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Indirect Time of Flight LiDARs can indirectly calculate the scene's depth from the phase shift angle between transmitted and received laser signals with amplitudes modulated at a predefined frequency. Unfortunately, this method generates ambiguity in calculated depth when the phase shift angle value exceeds $2\pi$. Current state-of-the-art methods use raw samples generated using two distinct modulation frequencies to overcome this ambiguity problem. However, this comes at the cost of increasing laser components' stress and raising their temperature, which reduces their lifetime and increases power consumption. In our work, we study two different methods to recover the entire depth range of the LiDAR using fewer raw data sample shots from a single modulation frequency with the support of sensor's gray scale output to reduce the laser components' stress and power consumption.

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