Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors

This paper proposes an approach to design the length, width, and bundlewidth dimensions of rectangular ironless coils for magnetically levitated planar motors. Firstly, a model for the propulsion and levitation forces generated from a single coil in Halbach permanent magnetic field by using Lorenz f...

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Main Authors: Shengguo Zhang, Lu Niu, Lijun Zhou, Jingtao Huang, Weiwen Hu, Guoquan Zhang
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8933376/
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spelling doaj-9c87292eb5114724afd32d72f409957d2021-03-29T23:15:59ZengIEEEIEEE Access2169-35362019-01-01718530118530910.1109/ACCESS.2019.29597128933376Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar MotorsShengguo Zhang0https://orcid.org/0000-0002-3356-9418Lu Niu1Lijun Zhou2Jingtao Huang3Weiwen Hu4Guoquan Zhang5Key Laboratory of China’s Ethnic Languages and Information Technology of Ministry of Education, Northwest Minzu University, Lanzhou, ChinaKey Laboratory of China’s Ethnic Languages and Information Technology of Ministry of Education, Northwest Minzu University, Lanzhou, ChinaSchool of Electrical Engineering, Northwest Minzu University, Lanzhou, ChinaSchool of Electrical Engineering, Northwest Minzu University, Lanzhou, ChinaSchool of Electrical Engineering, Northwest Minzu University, Lanzhou, ChinaSchool of Mathematics and Computer Science, Northwest Minzu University, Lanzhou, ChinaThis paper proposes an approach to design the length, width, and bundlewidth dimensions of rectangular ironless coils for magnetically levitated planar motors. Firstly, a model for the propulsion and levitation forces generated from a single coil in Halbach permanent magnetic field by using Lorenz force volume integral method is developed. Then, a dimensionless factor named coil width dependent factor, K<sub>c</sub>, which can define the amplitudes of propulsion and levitation forces, is formulated. In order to maximize the value of K<sub>c</sub>, the optimal coils number, n, of a square forcer is derived to be m/2 + 1, where m is the multiples of coil length L<sub>c</sub> to magnetic pole pitch &#x03C4;. Thereafter, the coil width W<sub>c</sub> and bundlewidth B<sub>c</sub> are determined considering the given magnetic pole pitch &#x03C4;. The comparison between the proposed approach and other formulations verifies that if such designed coils is utilized in a forcer, the average amplitude and the quadratic sum of all coil currents are both minimal when the forcer is desired to generate the identical driving forces. The proposed approach can be used to design the dimensions of a single coil and also to configure the high power density forcers or coil arrays for magnetically levitated planar motors.https://ieeexplore.ieee.org/document/8933376/Rectangular ironless coildimensions matchingmagnetic pole pitchmaglev planar motor
collection DOAJ
language English
format Article
sources DOAJ
author Shengguo Zhang
Lu Niu
Lijun Zhou
Jingtao Huang
Weiwen Hu
Guoquan Zhang
spellingShingle Shengguo Zhang
Lu Niu
Lijun Zhou
Jingtao Huang
Weiwen Hu
Guoquan Zhang
Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors
IEEE Access
Rectangular ironless coil
dimensions matching
magnetic pole pitch
maglev planar motor
author_facet Shengguo Zhang
Lu Niu
Lijun Zhou
Jingtao Huang
Weiwen Hu
Guoquan Zhang
author_sort Shengguo Zhang
title Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors
title_short Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors
title_full Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors
title_fullStr Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors
title_full_unstemmed Optimal Matching Design of Length and Width of Rectangular Ironless Coils for Magnetically Levitated Planar Motors
title_sort optimal matching design of length and width of rectangular ironless coils for magnetically levitated planar motors
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description This paper proposes an approach to design the length, width, and bundlewidth dimensions of rectangular ironless coils for magnetically levitated planar motors. Firstly, a model for the propulsion and levitation forces generated from a single coil in Halbach permanent magnetic field by using Lorenz force volume integral method is developed. Then, a dimensionless factor named coil width dependent factor, K<sub>c</sub>, which can define the amplitudes of propulsion and levitation forces, is formulated. In order to maximize the value of K<sub>c</sub>, the optimal coils number, n, of a square forcer is derived to be m/2 + 1, where m is the multiples of coil length L<sub>c</sub> to magnetic pole pitch &#x03C4;. Thereafter, the coil width W<sub>c</sub> and bundlewidth B<sub>c</sub> are determined considering the given magnetic pole pitch &#x03C4;. The comparison between the proposed approach and other formulations verifies that if such designed coils is utilized in a forcer, the average amplitude and the quadratic sum of all coil currents are both minimal when the forcer is desired to generate the identical driving forces. The proposed approach can be used to design the dimensions of a single coil and also to configure the high power density forcers or coil arrays for magnetically levitated planar motors.
topic Rectangular ironless coil
dimensions matching
magnetic pole pitch
maglev planar motor
url https://ieeexplore.ieee.org/document/8933376/
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