A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage

In order to increase the accuracy of a 6-axis motorized fiber alignment stage, a geometric and kinematic error model was established. A low-order body array was introduced to describe the general topological structure of the alignment stage; a homogeneous error transformation matrix was adopted to p...

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Main Authors: Yu Zheng, Ji-an Duan
Format: Article
Language:English
Published: SAGE Publishing 2015-06-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814015589503
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spelling doaj-8ec9fe4fed654d3ea81d2a922c68b78e2020-11-25T03:06:33ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402015-06-01710.1177/168781401558950310.1177_1687814015589503A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stageYu ZhengJi-an DuanIn order to increase the accuracy of a 6-axis motorized fiber alignment stage, a geometric and kinematic error model was established. A low-order body array was introduced to describe the general topological structure of the alignment stage; a homogeneous error transformation matrix was adopted to present the combination and kinematic errors of a typical case in a multi-body system; the structure and kinematic relationship of a 6-axis motorized fiber alignment stage as well as the corresponding error equation were built via the multi-body system error theory; the error distribution state and sensitivity characteristics of the 6-axis motorized fiber alignment stage were further analyzed; and the error compensation strategy was developed. The experimental results indicated that using inline error compensation for improving the alignment accuracy of the automatic alignment system for optical waveguide devices was very effective.https://doi.org/10.1177/1687814015589503
collection DOAJ
language English
format Article
sources DOAJ
author Yu Zheng
Ji-an Duan
spellingShingle Yu Zheng
Ji-an Duan
A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
Advances in Mechanical Engineering
author_facet Yu Zheng
Ji-an Duan
author_sort Yu Zheng
title A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
title_short A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
title_full A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
title_fullStr A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
title_full_unstemmed A geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
title_sort geometric and kinematic error model and compensation of a 6-axis motorized optical fiber alignment stage
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2015-06-01
description In order to increase the accuracy of a 6-axis motorized fiber alignment stage, a geometric and kinematic error model was established. A low-order body array was introduced to describe the general topological structure of the alignment stage; a homogeneous error transformation matrix was adopted to present the combination and kinematic errors of a typical case in a multi-body system; the structure and kinematic relationship of a 6-axis motorized fiber alignment stage as well as the corresponding error equation were built via the multi-body system error theory; the error distribution state and sensitivity characteristics of the 6-axis motorized fiber alignment stage were further analyzed; and the error compensation strategy was developed. The experimental results indicated that using inline error compensation for improving the alignment accuracy of the automatic alignment system for optical waveguide devices was very effective.
url https://doi.org/10.1177/1687814015589503
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