Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System

The microvibration has a serious impact on science experiments on the space station and on image quality of high resolution satellites. As an important component of the active vibration isolation platform, the maglev actuator has a large stroke and exhibits excellent isolating performance benefiting...

Full description

Bibliographic Details
Main Authors: Qianqian Wu, Honghao Yue, Rongqiang Liu, Liang Ding, Zongquan Deng
Format: Article
Language:English
Published: SAGE Publishing 2014-05-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1155/2014/215358
id doaj-1c299d6c71a443a6afd040fc27c1a399
record_format Article
spelling doaj-1c299d6c71a443a6afd040fc27c1a3992020-11-25T03:32:33ZengSAGE PublishingAdvances in Mechanical Engineering1687-81322014-05-01610.1155/2014/21535810.1155_2014/215358Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation SystemQianqian WuHonghao YueRongqiang LiuLiang DingZongquan DengThe microvibration has a serious impact on science experiments on the space station and on image quality of high resolution satellites. As an important component of the active vibration isolation platform, the maglev actuator has a large stroke and exhibits excellent isolating performance benefiting from its noncontact characteristic. A maglev actuator with good linearity was designed in this paper. Fundamental features of the maglev actuator were obtained by finite element simulation. In order to minimize the coil weight and the heat dissipation of the maglev actuator, parametric design was carried out and multiobjective optimization based on the genetic algorithm was adopted. The optimized actuator has better mechanical properties than the initial one. Active vibration isolation platforms for different-scale payload were designed by changing the arrangement of the maglev actuators. The prototype to isolate vibration for small-scale payload was manufactured and the experiments for verifying the characteristics of the actuators were set up. The linearity of the actuator and the mechanical dynamic response of the vibration isolation platform were obtained. The experimental results highlight the effectiveness of the proposed design.https://doi.org/10.1155/2014/215358
collection DOAJ
language English
format Article
sources DOAJ
author Qianqian Wu
Honghao Yue
Rongqiang Liu
Liang Ding
Zongquan Deng
spellingShingle Qianqian Wu
Honghao Yue
Rongqiang Liu
Liang Ding
Zongquan Deng
Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System
Advances in Mechanical Engineering
author_facet Qianqian Wu
Honghao Yue
Rongqiang Liu
Liang Ding
Zongquan Deng
author_sort Qianqian Wu
title Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System
title_short Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System
title_full Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System
title_fullStr Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System
title_full_unstemmed Parametric Design and Multiobjective Optimization of Maglev Actuators for Active Vibration Isolation System
title_sort parametric design and multiobjective optimization of maglev actuators for active vibration isolation system
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8132
publishDate 2014-05-01
description The microvibration has a serious impact on science experiments on the space station and on image quality of high resolution satellites. As an important component of the active vibration isolation platform, the maglev actuator has a large stroke and exhibits excellent isolating performance benefiting from its noncontact characteristic. A maglev actuator with good linearity was designed in this paper. Fundamental features of the maglev actuator were obtained by finite element simulation. In order to minimize the coil weight and the heat dissipation of the maglev actuator, parametric design was carried out and multiobjective optimization based on the genetic algorithm was adopted. The optimized actuator has better mechanical properties than the initial one. Active vibration isolation platforms for different-scale payload were designed by changing the arrangement of the maglev actuators. The prototype to isolate vibration for small-scale payload was manufactured and the experiments for verifying the characteristics of the actuators were set up. The linearity of the actuator and the mechanical dynamic response of the vibration isolation platform were obtained. The experimental results highlight the effectiveness of the proposed design.
url https://doi.org/10.1155/2014/215358
work_keys_str_mv AT qianqianwu parametricdesignandmultiobjectiveoptimizationofmaglevactuatorsforactivevibrationisolationsystem
AT honghaoyue parametricdesignandmultiobjectiveoptimizationofmaglevactuatorsforactivevibrationisolationsystem
AT rongqiangliu parametricdesignandmultiobjectiveoptimizationofmaglevactuatorsforactivevibrationisolationsystem
AT liangding parametricdesignandmultiobjectiveoptimizationofmaglevactuatorsforactivevibrationisolationsystem
AT zongquandeng parametricdesignandmultiobjectiveoptimizationofmaglevactuatorsforactivevibrationisolationsystem
_version_ 1724567592807432192