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A Nearly Interference-Free and Depth-Resolution-Configurable Time-of-Flight System Based on a Mega-Pixel Vertical Avalanche Photodiodes CMOS Image Sensor

Authors :
Shota Yamada
Motonori Ishii
Shigetaka Kasuga
Masato Takemoto
Hiromu Kitajima
Toru Okino
Yusuke Sakata
Manabu Usuda
Yugo Nose
Hiroshi Koshida
Masaki Tamaru
Akito Inoue
Yuki Sugiura
Shigeru Saito
Taiki Kunikyo
Yusuke Yuasa
Kentaro Nakanishi
Naoki Torazawa
Takashi Shirono
Tatsuya Kabe
Shinzo Koyama
Mitsuyoshi Mori
Yutaka Hirose
Masayuki Sawada
Akihiro Odagawa
Tsuyoshi Tanaka
Source :
IEEE Open Journal of Circuits and Systems, Vol 3, Pp 324-335 (2022)
Publication Year :
2022
Publisher :
IEEE, 2022.

Abstract

We present a long range (~250 m) time-of flight (TOF) system with suppressed (nearly-free) mutual-interference. The system is based on a $1296\times960$ pixels vertical avalanche photodiodes (VAPD) CMOS image sensor (CIS). Real-time long-range 3D-imaging with 30 fps speed (450 fps for 2D imaging) is demonstrated. Designs and operation principles of the core circuits, i.e., a photon counting circuit and a global shutter driver, are fully described. The ranging method is based on a sub-range synthesis (SRS) where a range is set by the phase of exposure pulses with respect to that of the light source of the system. The depth resolution is configurable in that the minimum sub-range width limited by the light source pulse width of 10 ns or 1.5 m can be reduced to a 10 cm by introducing an indirect-TOF operation. Furthermore, by employing a random flight timing (RFT), mutual-interference in raw signal level is suppressed by 35 dB when 2 cameras are simultaneously operated. By simulation, the present system is estimated to be tolerant up to a case of 27 cameras operation.

Details

Language :
English
ISSN :
26441225
Volume :
3
Database :
Directory of Open Access Journals
Journal :
IEEE Open Journal of Circuits and Systems
Publication Type :
Academic Journal
Accession number :
edsdoj.bf10f66fcdca4628aef7bdd53db89764
Document Type :
article
Full Text :
https://doi.org/10.1109/OJCAS.2022.3216928