DocumentCode
54664
Title
Development and Investigation of a Long-Range Time-of-Flight and Color Imaging System
Author
Langmann, Benjamin ; Weihs, Wolfgang ; Hartmann, Klaus ; Loffeld, Otmar
Author_Institution
Center for Sensor Syst. (ZESS), Univ. of Siegen, Siegen, Germany
Volume
44
Issue
8
fYear
2014
fDate
Aug. 2014
Firstpage
1372
Lastpage
1382
Abstract
Time-of-flight (Tof) imaging based on the photonic mixer device (PMD) or similar ToF imaging solutions has been limited to short distances in the past, due to limited lighting devices and low sensitivity of ToF imaging chips. Long-range distance measurements are typically the domain of laser scanning systems. In this paper, PMD based medium- and long-range lighting devices working together with a 2-D/3-D camera are presented and several measurement results are discussed. The proposed imaging systems suffer from two systematic limitations in addition to problems due to wind and insufficient lighting: a low lateral resolution of the depth imaging chip and ambiguities in the distance measurements. In order to provide a robust and flexible system, we introduce algorithms to obtain unambiguous depth values (phase unwrapping) and to perform a joint motion compensation and super-resolution. Several experiments were conducted in order to evaluate the components of the multimodal imaging system.
Keywords
cameras; distance measurement; image colour analysis; image resolution; lighting; motion compensation; optical scanners; 2D camera; 3D camera; ToF imaging chips; color imaging system; depth imaging chip low lateral resolution; joint motion compensation; laser scanning systems; limited lighting devices; long-range distance measurements; long-range lighting devices; long-range time-of-flight imaging; low sensitivity; medium-range lighting devices; multimodal imaging system; photonic mixer device; super-resolution; wind; Cameras; Color; Image resolution; Light emitting diodes; Lighting; Modulation; Long-range imaging; motion compensation; photonic mixer device (PMD); super-resolution; time-of-flight (ToF);
fLanguage
English
Journal_Title
Cybernetics, IEEE Transactions on
Publisher
ieee
ISSN
2168-2267
Type
jour
DOI
10.1109/TCYB.2013.2283971
Filename
6634210
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