Yu Liyuan, Li Shushu, Niu Pingjuan, Shi Hao, Mao Run, Cheng Zheng
{"title":"Novel square spiral Coil for achieving uniform Distribution of magnetic Field","authors":"Yu Liyuan, Li Shushu, Niu Pingjuan, Shi Hao, Mao Run, Cheng Zheng","doi":"10.1088/1755-1315/332/4/042005","DOIUrl":null,"url":null,"abstract":"In view of the problems existing in the existing wireless charging technology, the anti-offset performance of the charging region and the system was studied. A primary transmitting coil capable of achieving uniform magnetic field distribution was proposed. The magnetic field strength at a point on the coil axis and above the coil surface was calculated, and the surface current density of the transmitting coil was analyzed to calculate the radius of each turn of the spiral winding coil. Optimized the structure of the transmitting coil, the number of turns and the arrangement of the coils, A square spiral coil having a size of 20 cm η 20 cm and a number of turns of 11 inches was determined. The optimized square spiral coil was modeled by the software comsol5.3 RF module, and the strength and uniformity of the coil surface and axial space magnetic field were simulated. The axial magnetic field on the surface of the coil was measured by a multi-dimensional visual electromagnetic measuring device, and compared with the simulation data, it was proved that the axial magnetic field of the square spiral coil surface satisfied the uniformity requirement.","PeriodicalId":14556,"journal":{"name":"IOP Conference Series: Earth and Environmental Science","volume":"19 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2019-11-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"IOP Conference Series: Earth and Environmental Science","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1088/1755-1315/332/4/042005","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3
Abstract
In view of the problems existing in the existing wireless charging technology, the anti-offset performance of the charging region and the system was studied. A primary transmitting coil capable of achieving uniform magnetic field distribution was proposed. The magnetic field strength at a point on the coil axis and above the coil surface was calculated, and the surface current density of the transmitting coil was analyzed to calculate the radius of each turn of the spiral winding coil. Optimized the structure of the transmitting coil, the number of turns and the arrangement of the coils, A square spiral coil having a size of 20 cm η 20 cm and a number of turns of 11 inches was determined. The optimized square spiral coil was modeled by the software comsol5.3 RF module, and the strength and uniformity of the coil surface and axial space magnetic field were simulated. The axial magnetic field on the surface of the coil was measured by a multi-dimensional visual electromagnetic measuring device, and compared with the simulation data, it was proved that the axial magnetic field of the square spiral coil surface satisfied the uniformity requirement.
针对现有无线充电技术存在的问题,对充电区域和系统的抗偏移性能进行了研究。提出了一种能实现均匀磁场分布的初级发射线圈。计算线圈轴线上和线圈表面上方某点处的磁场强度,分析发射线圈的表面电流密度,计算出螺旋绕组线圈每匝的半径。优化了发射线圈的结构、匝数和线圈的排列方式,确定了尺寸为20 cm η 20 cm、匝数为11英寸的方形螺旋线圈。利用comsol5.3射频模块软件对优化后的方形螺旋线圈进行建模,并对线圈表面磁场和轴向空间磁场的强度和均匀性进行了仿真。利用多维视觉电磁测量装置测量线圈表面的轴向磁场,并与仿真数据进行对比,证明方形螺旋线圈表面的轴向磁场满足均匀性要求。