• The Linear Equation Method (LEM) for evaluating induction and subduction coefficients of Hecke, Brauer, and Birman_Wenzl algebras in various algebraic chains is reviewed.

    本文总结了计算黑克、布劳伯曼温采尔代数各种工数诱导及分导系数线性方程方法LEM)。

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  • In modeling the electromagnetic induction, based on the principle of domain decomposition, a fast and effective numerical computational method is developed to deal with the volume integral equation.

    针对电磁感应测井问题,基于区域分解原理体积方程提出了一种快速有效数值计算方法

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  • According to the nodal admittance equation, the analysis of steady state performance of self excited induction generators is carried out by using the secant method.

    依据等效电路节点导纳方程采用弦截分析了自励感应发电机稳态特性

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  • Based on the two-axis theory of the induction motor and a state equation about the rotor fluxes and stator currents, a new induction motor flux observer is derived.

    本文交流电机双轴理论基础上,以异步电动机转子定子电流状态的状态方程为模型,推导出一种新型异步电动机磁通观测器。

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  • Furthermore, when the induction voltage is integrated by the rotation time, integral magnetic field (B0L) is solved by the following equation.

    此外使用转动时间感应电压进行积分时,积分磁场(B0L)可如下方程求解

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  • Based on the equivalent circuit of the linear induction motor and reasonable assumption, a design moted for the linear induction motor is obtained by derivation of equation.

    依据直线感应电动机等值电路合理假设基础上,通过公式推导得出一种设计直线感应电动机方法。

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  • The equation shows that the magnetic induction intensity is a sinusoidal oscillation signal and its amplitude is a damped exponential law.

    公式表明电磁成形时磁感应强度正弦震荡呈指数规律衰减

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  • The magnetic induction intensity at the center of elliptic current ring is derived based on the Biot-Savart law and elliptic parameter equation intensity.

    运用毕奥萨伐尔定律椭圆参数方程,计算出椭圆电流中心强度

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  • According to Faraday's Law of Electromagnetic Induction, using the reference direction of circuit variation, it can find a method of V-A Equation made by mutual inductive circle at its option.

    本文依据法拉第磁感应定律利用电路变量参考方向找出了获得任意情形下互感线圈v - A方程的一种方法

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  • The equation for electromagnetic properties of a moving medium is discussed by using electromagnetic field tensor, electromagnetic induction tensor and their dual tensor.

    文章从麦克斯韦方程组出发,利用纵向分量法,详细地推导了强引导磁场下等离子体波导电磁场分量表达式。

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  • The equation for electromagnetic properties of a moving medium is discussed by using electromagnetic field tensor, electromagnetic induction tensor and their dual tensor.

    文章从麦克斯韦方程组出发,利用纵向分量法,详细地推导了强引导磁场下等离子体波导电磁场分量表达式。

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