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A Hardware and Simulation-based Framework for Design of SPAD Receivers in Scanning LiDAR Systems. International Image Sensor Workshop

Authors :
Patanwala, Sarrah
Gorman, Alistair
Assmann, Andreas
Gyongy, Istvan
Dutton, Neale
Rae, Bruce R.
Henderson, Robert K.
Source :
Patanwala, S, Gorman, A, Assmann, A, Gyongy, I, Dutton, N, Rae, B R & Henderson, R K 2021, ' A Hardware and Simulation-based Framework for Design of SPAD Receivers in Scanning LiDAR Systems. International Image Sensor Workshop ', Paper presented at International Image Sensor Workshop 2021, 20/09/21-23/09/21 . < https://imagesensors.org/Past%20Workshops/2021%20Workshop/2021%20Papers/P13.pdf >
Publication Year :
2021

Abstract

There are significant overheads involved in prototyping sensors for automotive Light Detection and Ranging (LiDAR) applications. We propose a framework that validates the performance of a Single Photon Avalanche Diode (SPAD) sensor in a controlled environment using a scanning LiDAR system. The results are further extrapolated to a simulation framework utilising synthetic datasets to investigate the merits of sensor architectures at longer distances in automotive LiDAR scenarios. We also present a high-throughput photon processing technique using a continuous sampling Time to Digital Converter (TDC) together with the Synchronous Summation Technique (SST); the performance of which is compared with previously demonstrated sensors. A SPAD pixel array interfaced to a FPGA provides the platform to implement the different design approaches for direct comparison

Details

Language :
English
Database :
OpenAIRE
Journal :
Patanwala, S, Gorman, A, Assmann, A, Gyongy, I, Dutton, N, Rae, B R &amp; Henderson, R K 2021, &#39; A Hardware and Simulation-based Framework for Design of SPAD Receivers in Scanning LiDAR Systems. International Image Sensor Workshop &#39;, Paper presented at International Image Sensor Workshop 2021, 20/09/21-23/09/21 . < https://imagesensors.org/Past%20Workshops/2021%20Workshop/2021%20Papers/P13.pdf >
Accession number :
edsair.od......3094..1975947ea5ea97f3b62651d15db7a023