• General expressions of the magnetic vector potential for multipole fields are derived.

    推导出了多极空间谐波函数表示项表达式。

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  • Electrostatic and magnetic vector potential. Properties of dielectrics and magnetic materials.

    静电学向量位、二极体和磁性材料性质

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  • To improve the efficiency of eddy field calculation with magnetic vector potential, necessary simplification is applied.

    为了实现高效计算涡流的计算引入矢量位法,进行必要、合理的化简。

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  • The fast multipole method(FMM) is introduced to solve the magnetic vector potential in 3-D electromagnetoquasistatic field.

    提出一种求解任意形状线圈位于平板导体上方时矢量位的解析方法。

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  • According to the principle of virtual-work, the formula of electromagnetic force based on magnetic vector potential is deduced.

    根据虚位移原理,推导出基于矢量的电磁力计算公式。

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  • Magnetic vector potential is regarded as variables to gain solution of excitation magnetic field and armature response magnetic field.

    矢量作为求解变量得到励磁磁场电枢反应磁场二维解。

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  • A part of results on magnetic vector potential of circular loop are expanded, so the integral function is transformed to integrable series.

    采用将电流表达式一部分展成级数使函数变成积分的函数。

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  • Through the introduction of magnetic vector potential, the mathematical model of electromagnetic field and eddy current field was established.

    其中,电磁场涡流数学模型通过引入矢量而建立

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  • The boundary value problem on the magnetic vector potential A is derived by introducing the magnetic vector potential A and using Maxwell's equations.

    通过引入矢量A利用麦克斯韦方程组推出了以矢量磁位A为求解对象的问题

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  • In this paper, the boundary value problem of the magnetic vector potential is derived by use of the character of the axisymmetrical electromagnetic field.

    利用轴对称电磁场性质得到了以矢量位为求解对象问题

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  • The magnetic induction intensity distribution B is obtained by solving its magnetic vector potential A distribution of current-carrying circular circuit in anisotropic medium.

    提出求解各向异性介质中电流磁场新方法,通过求解各向异性磁介质中电流环的磁A分布,求出磁感应强度B分布。

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  • In this paper, the calculating formulas of magnetic field for long current carrying conductor with any form of cross-section are deduced with the help of magnetic vector potential.

    本文矢量出发,导出具有任意形状截面导体磁场计算公式

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  • The vector magnetic potential is regarded as a variable to gain the two-dimension solution of excitation magnetic field and armature response magnetic field.

    矢量作为求解变量得到励磁磁场电枢反应磁场

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  • According to the vector relation and Biot-savart law the magnetic scalar potential notation is directly derived.

    根据这个关系式-沙定律,直接导出标量位的表达式。

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  • To do that, the integral definition of vector magnetic potential and the Lorentz gauge is used to expand the integral equation of the PEEC model.

    为此矢量积分表达式仑兹规范代替矢量磁位和标量电位的积分表达式,对积分方程进行展开

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  • It also shows that two four vector potential can be combined into one four vector potential in the region being free of magnetic charges.

    同时证明荷为零区域两个维矢可以合并个。

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  • The result tallies with that obtained by way of setting up vector field and leading into vector magnetic potential in electrodynamics.

    结论此方法与电动力学建立矢量引入矢量方法所得结果吻合

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  • It is exemplified that, with a credible error estimation, their performances are superior to the frequently-used one, which determine internal inductance via the vector magnetic potential.

    实例计算表明这两算法性能优于常用通过磁矢势求解电感的算法,并能得到可信的误差估计。

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  • The distribution of magnetic flux of track eddy current braking device is calculated by using vector potential method.

    采用矢量A法线性涡流制动装置磁场分布进行了有限元理论计算。

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  • The distribution of magnetic flux of track eddy current braking device is calculated by using vector potential method.

    采用矢量A法线性涡流制动装置磁场分布进行了有限元理论计算。

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