Imaging ladar for 3-D surveying and CAD modeling of real-world environments

被引:33
作者
Langer, D
Mettenleiter, M
Härtl, F
Fröhlich, C
机构
[1] Z&F USA Inc, Pittsburgh, PA 15232 USA
[2] Zoller & Frolich GmbH, D-88239 Wangen Im Allgau, Germany
关键词
ladar; laser scanning; surveying; 3-D models; laser images;
D O I
10.1177/02783640022067986
中图分类号
TP24 [机器人技术];
学科分类号
080202 ; 1405 ;
摘要
To establish mobile robot operations and to realize survey and inspection tasks, robust and precise measurements of the geometry of the 3-D environment is a required basic sensor technology. For visual inspection, surface classification, and documentation purposes, however additional information concerning reflectance of measured objects is necessary. High-speed acquisition of both geometric and visual information is achieved by the described active ladar, developed by Zoller and Frohlich (Z+F). In contrast to other range-sensing devices, the Z+F system is designed for high-speed and high-performance operation in real indoor and outdoor environments, emitting a minimum of near-infrared laser energy. It integrates a single-point laser measurement system and a mechanical deflection system for 3-D environmental measurements. Experimental results are reported from surface inspections in tunnels, the generation of 3-D CAD models of a work cell in an automotive manufacturing plant, the modeling of free-form surfaces such as historic sculptures, and applications in mobile robot navigation.
引用
收藏
页码:1075 / 1088
页数:14
相关论文
共 18 条
[1]  
ALLEN PK, 2000, P IEEE INT C ROB AUT, P1435
[2]  
BESL P, 1988, GMR6090
[3]  
BROZ V, 1999, P AM NUCL SOC 8 INT
[4]  
Cameron E. S., 1991, US Patent, Patent No. [5,006,721, 5006721]
[5]  
Dalton G., 1998, Sensor Review, V18, P92, DOI 10.1108/02602289810209867
[6]  
*ENV RES I MI, 1987, P RANG REFL PROC WOR
[7]  
FROHLICH C, 1994, ISPRS COMM 2 S OTT O, P471
[8]  
FROHLICH C, 1996, THESIS TU MUNICH
[9]  
Hancock J, 1998, IEEE INT CONF ROBOT, P1465, DOI 10.1109/ROBOT.1998.677311
[10]  
HE G, 1994, ISPRS COMM 2 S OTT O, P480