2022
DOI: 10.3390/electronics11142135
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Semantic Depth Data Transmission Reduction Techniques Based on Interpolated 3D Plane Reconstruction for Light-Weighted LiDAR Signal Processing Platform

Abstract: In vehicles for autonomous driving, light detection and ranging (LiDAR) is one of the most used sensors, along with cameras. LiDAR sensors that produce a large amount of data in one scan make it difficult to transmit and calculate data in real-time in the vehicle’s embedded system. In this paper, we propose a platform based on semantic depth data-based data reduction and reconstruction algorithms that reduce the amount of data transmission and minimize the errors between original and restored data in a vehicle… Show more

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“…This creates difficulty in systems that receive and process data in real time in lightweight embedded systems. We perform a study assessing a platform based on semantic depth data based data reduction and reconstruction algorithms that reduce the amount of data transmission and minimize the errors between original and restored data on a lightweight embedded board [13]. In the part that transmits LiDAR sensor data, the newly generated frame is compared with the immediately preceding frame in order to update an area in which a change amount exists to generate a transmission frame.…”
Section: Lidar Data Transmission Reduction For Light-weighted Signal ...mentioning
confidence: 99%
“…This creates difficulty in systems that receive and process data in real time in lightweight embedded systems. We perform a study assessing a platform based on semantic depth data based data reduction and reconstruction algorithms that reduce the amount of data transmission and minimize the errors between original and restored data on a lightweight embedded board [13]. In the part that transmits LiDAR sensor data, the newly generated frame is compared with the immediately preceding frame in order to update an area in which a change amount exists to generate a transmission frame.…”
Section: Lidar Data Transmission Reduction For Light-weighted Signal ...mentioning
confidence: 99%