레벨셋법과 페이즈 필드 모델을 이용한 가동코일형 리니어 액추에이터 최적설계

Design optimization of moving-coil type linear actuator using level set method and phase-field model
Citations

SCOPUS

0

초록

A moving-coil type linear actuator has been widely used in the system reciprocating short stroke because of its several advantages, such as the structural simplicity, low weight and a fast control response speed. This paper presents a design approach for improving the actuating performance with a clear expression of optimal configuration represented by a level set function. The optimization problem is formulated to minimize the variation of magnetic force at every moving displacement of the mover for fast and easy control. To consider the manufacturability of actuator, the concept of phase-field model is incorporated to control the complexity of structural boundaries. To verify the usefulness of the proposed method, the core design example of cylindrical linear actuator is performed.

키워드

가동코일형 리니어 액추에이터, 최적설계, 페이즈 필드 모델, 레벨셋법, Design optimizationLevel-Set methodMoving-Coil type linear actuatorPhase-Field modelActuatorsDrop breakupLevel measurementNumerical methodsOptimizationPhase interfacesDesign optimizationLevel set functionsLevel Set methodManufacturabilityMoving coilsOptimization problemsPhase field modelsStructural boundaryLinear actuators
제목
레벨셋법과 페이즈 필드 모델을 이용한 가동코일형 리니어 액추에이터 최적설계
제목 (타언어)
Design optimization of moving-coil type linear actuator using level set method and phase-field model
저자
Lim, S.Oh, S.Min, Seung jaeHong, J.-P.
DOI
10.3795/KSME-A.2011.35.10.1223
발행일
2011-10
유형
Article
저널명
대한기계학회논문집 A
35
10
페이지
1223 ~ 1228