Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control

This article proposes a thrust equation model of two-degree-of-freedom oscillatory actuator considering its edge effect. The proposed thrust equation model clarifies that asymmetric permanent magnet flux linkage and inductance characteristics cause undesirable magnetic thrust and reluctance thrust,...

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Main Authors: Kato Masayuki, Hirata Katsuhiro, Mototsuji Tomoaki, Heya Akira
Format: Article
Language:English
Published: De Gruyter 2020-07-01
Series:Open Physics
Subjects:
Online Access:https://doi.org/10.1515/phys-2020-0169
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spelling doaj-af89f99f1e234f99a0174dcfa41bca7a2021-09-05T13:59:38ZengDe GruyterOpen Physics2391-54712020-07-0118134635110.1515/phys-2020-0169phys-2020-0169Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector controlKato Masayuki0Hirata Katsuhiro1Mototsuji Tomoaki2Heya Akira3Department of Electrical and Electronics Systems, Graduate School of Engineering, Ibaraki University, JapanDepartment of Adaptive Machine Systems, Graduate School of Engineering, Osaka University, JapanDepartment of Adaptive Machine Systems, Graduate School of Engineering, Osaka University, JapanDepartment of Adaptive Machine Systems, Graduate School of Engineering, Osaka University, JapanThis article proposes a thrust equation model of two-degree-of-freedom oscillatory actuator considering its edge effect. The proposed thrust equation model clarifies that asymmetric permanent magnet flux linkage and inductance characteristics cause undesirable magnetic thrust and reluctance thrust, respectively.https://doi.org/10.1515/phys-2020-0169linear oscillatory actuatorvector controledge effectmulti-degree-of-freedomelectromagnetic actuators
collection DOAJ
language English
format Article
sources DOAJ
author Kato Masayuki
Hirata Katsuhiro
Mototsuji Tomoaki
Heya Akira
spellingShingle Kato Masayuki
Hirata Katsuhiro
Mototsuji Tomoaki
Heya Akira
Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
Open Physics
linear oscillatory actuator
vector control
edge effect
multi-degree-of-freedom
electromagnetic actuators
author_facet Kato Masayuki
Hirata Katsuhiro
Mototsuji Tomoaki
Heya Akira
author_sort Kato Masayuki
title Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
title_short Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
title_full Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
title_fullStr Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
title_full_unstemmed Edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
title_sort edge effect of multi-degree-of-freedom oscillatory actuator driven by vector control
publisher De Gruyter
series Open Physics
issn 2391-5471
publishDate 2020-07-01
description This article proposes a thrust equation model of two-degree-of-freedom oscillatory actuator considering its edge effect. The proposed thrust equation model clarifies that asymmetric permanent magnet flux linkage and inductance characteristics cause undesirable magnetic thrust and reluctance thrust, respectively.
topic linear oscillatory actuator
vector control
edge effect
multi-degree-of-freedom
electromagnetic actuators
url https://doi.org/10.1515/phys-2020-0169
work_keys_str_mv AT katomasayuki edgeeffectofmultidegreeoffreedomoscillatoryactuatordrivenbyvectorcontrol
AT hiratakatsuhiro edgeeffectofmultidegreeoffreedomoscillatoryactuatordrivenbyvectorcontrol
AT mototsujitomoaki edgeeffectofmultidegreeoffreedomoscillatoryactuatordrivenbyvectorcontrol
AT heyaakira edgeeffectofmultidegreeoffreedomoscillatoryactuatordrivenbyvectorcontrol
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