magnetic potential信息详情
[电磁]磁位
magnetic───adj.地磁的;有磁性的;有吸引力的
potential───n.潜能,可能性;电势;adj.潜在的,可能的;势的
magnetic train───磁力列车
magnetic field───n.磁场;[电磁]磁场
electro-magnetic───电磁的
magnetic needle───n.磁针;[电磁]磁针
electro magnetic───电磁
unmatched potential───无与伦比的潜力
tapping potential───挖掘潜力
And the physical meaning of magnetic potential is further discussed from the Angle of the canonical field theory.───并从规范场论的角度出发进一步讨论了磁势的物理意义。
A new type series active power filter based on fundamental magnetic potential self-balance and harmonic counteraction is proposed.───提出一种新型的基于基波磁势自平衡谐波抵消式串联有源电力滤波器。
balance process of the magnetic potential self-balance circuit for the single core during half cycle was discussed.───分析了磁势自平衡回路在半个周期内单铁心磁势自平衡的工作过程。
The tested results have validated the correctness of the theory of magnetic potential self-balance and feedback compensation dc sensor.───实验结果证实了磁势自平衡回馈补偿式直流传感机理和方法的正确性。
Besides displacements, electric potential and magnetic potential and some of the stress components are chosen as basic unknowns.───在这种方法中,基本未知量不仅包括机械位移、电势和磁势,还采用了某些应力分量、电位移和磁感应强度。
A semi-analytical with vector magnetic potential was applied for permanent-magnet air-gap field and caging torque of star slot.───采用矢量位半解析法分析了分数槽电机的水磁气隙磁场和定位转矩。
and cantilever beam under linear electric potential and magnetic potential.───及悬臂梁承受线性电势和磁势等。
single scalar magnetic potential finite element method; magnetostatic field;───单标量磁位;有限元法;
The Analytical Solution for Magneto-electro-elastic Beams under Linear Electric and Magnetic Potential───线性电势和磁势边条下磁电弹性梁的解析解
The paper briefly describes the theory of direct current sensor based on magnetic potential self-balance and feedback compensation and the structure of prototype machine based on this theory.
The balance process of the magnetic potential self-balance circuit for the single core during half cycle was discussed.
The detection circuit has a major influence on the accuracy and sensitivity of DC sensor based on magnetic potential self-balance and feedback compensation.
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.
Using the magnetic potential, Faraday Law of Electromagnetic Induction is expanded, represented and analyzed in the conditions of classical physics.
In the view of magnetic potential, we can get the physical circumstance of magnetic potential through element calculation, on the base of this we can calculate the Magnetic field strength.
Then, in chapter 4 of this thesis, the reliability analysis on the DC sensor based on magnetic potential self-balance and feedback compensation is processed.
The DC sensing theory and method based on magnetic potential self-balance and feedback compensation are studied in this paper.
In this paper a decoupling concept and a method of using FMMM to calculate 3D magnetostatic field are proposed. The magnetic potential jump-boundary of FMMM is solved better.
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