Please use this identifier to cite or link to this item:
https://doi.org/10.3390/rs9111109
Title: | A novel de-noising method for improving the performance of full-waveform LiDAR using differential optical path | Authors: | Cheng, Y Cao, J Hao, Q Xiao, Y Zhang, F Xia, W Zhang, K Yu, H |
Keywords: | Signal to noise ratio Variable gain amplifiers Voltage regulators Background noise Denoising methods Full-waveforms Levenberg-Marquardt Levenberg-Marquardt algorithm Light detection and ranging Optical path Zero crossing points Optical radar |
Issue Date: | 2017 | Citation: | Cheng, Y, Cao, J, Hao, Q, Xiao, Y, Zhang, F, Xia, W, Zhang, K, Yu, H (2017). A novel de-noising method for improving the performance of full-waveform LiDAR using differential optical path. Remote Sensing 9 (11) : 1109. ScholarBank@NUS Repository. https://doi.org/10.3390/rs9111109 | Abstract: | A novel de-noising method for improving the performance of full-waveform light detection and ranging (LiDAR) based on differential optical path is proposed, and the mathematical models of this method are developed and verified. Backscattered full-waveform signal (BFWS) is detected by two avalanche photodiodes placed before and after the focus of the focusing lens. On the basis of the proposed method, some simulations are carried out and conclusions are achieved. (1) Background noise can be suppressed effectively and peak points of the BFWS are transformed into negative-going zero-crossing points as stop timing moments. (2) The relative increment percentage of the signal-to-noise ratio based on the proposed method first dramatically increases with the increase of the distance, and then the improvement gets smaller by increasing the distance. (3) The differential Gaussian fitting with the Levenberg-Marquardt algorithm is applied, and the results show that it can decompose the BFWS with high accuracy. (4) The differential distance should not be larger than c/2 × ?rmin, and two variable gain amplifiers can eliminate the inconsistency of two differential beams. The results are beneficial for designing a better performance full-waveform LiDAR. © 2017 by the authors. | Source Title: | Remote Sensing | URI: | https://scholarbank.nus.edu.sg/handle/10635/175196 | ISSN: | 20724292 | DOI: | 10.3390/rs9111109 |
Appears in Collections: | Elements Staff Publications |
Show full item record
Files in This Item:
File | Description | Size | Format | Access Settings | Version | |
---|---|---|---|---|---|---|
10_3390_rs9111109.pdf | 4.3 MB | Adobe PDF | OPEN | None | View/Download |
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.