Home|News|Literature|Journal|Instruction|Forum|Member|Introduction

Chinese  Old version

By    In    Search 

  HomeContents of Chinese Journal of Mechanical Engineering (English Edition),2008 No.1GUIDELESS SPATIAL COORDINATE MEASUREMENT TECHNOLOGY BASED ON CODING POLE

ZHAO Min

QIU Zongming

QU Jiamin

LIU Hongzhao
School of Mechanical Instrumental
Engineering,
Xi’an University of Technology,
Xi’an 710048, China

 

 

GUIDELESS SPATIAL COORDINATE
MEASUREMENT TECHNOLOGY
BASED ON CODING POLE* 

 

Abstract: A new method of guideless spatial coordinate measurement technology based on coding pole and vision measurement is proposed. Unequal spacing of bar code is adopted to pole, so that the code combination of pole image in measuring field is unique. Holographic characteristics of numeric coding pole are adopted to obtain pole pose and pole probe position by any section of bar code on the pole. Spatial coordinates of measuring points can be obtained by coordinate transform. The contradiction between high resolution and large visual field of image sensor is resolved, thereby providing a new concept for surface shape measurement of large objects with high precision. The measurement principles of the system are expounded and mathematic model is established. The measurement equation is evaluated by simulation experiments and the measurement precision is analyzed. Theoretical analysis and simulation experiments prove that this system is characterized by simple structure and wide measurement range. Therefore it can be used in the 3-dimentional coordinate measurement of large objects.

Key words: Coding pole Guideless Coordinate measurement Vision measurement

 


* This project is supported by Natural Science Foundation of Shaanxi Province, China(No. 2007E210). Received June 5, 2007; received in revised form November 13, 2007; accepted November 20, 2007

Open or Download Full Text of this Paper (PDF File)

  About us-Contact us-Site map-Advertisement service-Cooperation-Legal statement  

Address: 22 Baiwanzhuang Dajie, Beijing 100037 China    Tel: 8610-88379907    Fax: 8610-68994557

E-mail: cjme@mail.machineinfo.gov.cn  http: //www.cjmenet.com
©2006 Editorial Office of CJME. All Right Reserved