Publication | Open Access
A High-Throughput Photon Processing Technique for Range Extension of SPAD-Based LiDAR Receivers
31
Citations
36
References
2021
Year
EngineeringPoint Cloud ProcessingOptical PropertiesRange ExtensionSystems EngineeringLight DetectionLaser-based SensorPhotonic Integrated CircuitOptical CommunicationSpad-based Lidar ReceiversTime-of-flight ImagingPhotonicsMachine VisionSynthetic 3DTime-of-flight CameraComputer EngineeringLidarRange ImagingLidar System EmulatorPhotonic DeviceComputer VisionOptoelectronics
There has recently been a keen interest in developing Light Detection and Ranging (LiDAR) systems using Single Photon Avalanche Diode (SPAD) sensors. This has led to a variety of implementations in pixel combining techniques and Time to Digital Converter (TDC) architectures for such sensors. This paper presents a comparison of these approaches and demonstrates a technique capable of extending the range of LiDAR systems with improved resilience to background conditions. A LiDAR system emulator using a reconfigurable SPAD array and FPGA interface is used to compare these different techniques. A Monte Carlo simulation model leveraging synthetic 3D data is presented to visualize the sensor performance on realistic automotive LiDAR scenes.
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