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磁道钉的磁感应强度实验研究
引用本文:曹辉,吴超仲,白智慧.磁道钉的磁感应强度实验研究[J].交通与计算机,2007,25(2):23-26,31.
作者姓名:曹辉  吴超仲  白智慧
作者单位:武汉理工大学,武汉,430063
基金项目:湖北省武汉市青年科技晨光计划
摘    要:磁道钉是基于磁信号导航的自动公路系统最重要的道路引导标志.文章介绍了用作磁道钉的永磁材料的主要性能,如剩磁、矫顽力和磁能积及稳定性,并以此为主要内容研究磁道钉的永磁特性;利用三通道高斯计测试不同型号的磁道钉的磁感应强度,包括X、Y、Z方向分量,得到其磁场分布数据及分布曲面图.提出了针对测试区域中任一位置的磁感应强度X、Z分量值,利用整个测试区域的磁感应强度X、Z方向分量数据,得到横向偏差的确定方法.

关 键 词:磁道钉  磁感应强度  横向偏差  三通道高斯计  磁道钉  磁感应  强度实验  研究  Flux  Density  Marker  Magnetic  方法  横向偏差  分布数据  量值  位置  区域  计测试  曲面图  磁场  方向分量  同型  高斯  三通道
修稿时间:2007-01-042007-03-02

Experimentation Analysis of Magnetic Marker Flux Density
CAO Hui,WU Chaozhong,BAI Zhihui.Experimentation Analysis of Magnetic Marker Flux Density[J].Computer and Communications,2007,25(2):23-26,31.
Authors:CAO Hui  WU Chaozhong  BAI Zhihui
Institution:Wuhan University of Technology, Wuhan 430063
Abstract:Magnetic marker is one of the most important guiding signals of the Automatic Highway System based on magnetic signals. The primary performance of the permanent magnet was depicted, such as remanence, coercive force, magnetic energy accumulation and stability. Three-channel Gaussmeter were used for detecting the flux density of different type of magnetic markers, including X, Y, and Z Axis with Vector Magnitude, to gain the data of the magnet field, and X, Y, Z direction distribution chart of magnetic field by utilized Matlab. Finally, a lateral positioning algorithm was put forward, which used the X, Z direction distribution data of the whole testing range to gain the lateral deflection value for giving either X, Z components in testing range.
Keywords:magnetic marker  flux density  lateral deflection  three-channel Gaussmeter
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