无级变速器中磁场扩散现象的建模

W. Sommerville, J. Gover, R. Sanchez, J. Bou
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引用次数: 2

摘要

在电流观察变压器(CVT)中,电流流经一根被环形铁芯包围的导线,环形铁芯上缠绕着次级线圈。与初级电流相关的磁场以波的形式传播,并可以耦合到次级电路中;然而,它作为扩散前沿通过核心材料。通过对磁芯中磁场扩散的建模,确定了当一次电流由电容器放电产生时,它会影响二次绕组中感应电压的幅度和时间特征。在初级电流脉冲的四分之一周期上升时间(227 ns)内,对入射磁场的阶跃响应将产生95.57%的稳态磁通量。由于CVT副级感应电压与磁通量的时间导数成正比,时间延迟会进一步扭曲CVT电流测量结果
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Modeling of magnetic field diffusion phenomena in a CVT
In a current viewing transformer (CVT), current flows through a wire that is surrounded by a toroid-shaped core on which a secondary is wound. The magnetic field associated with this primary current propagates as a wave and can couple into the secondary circuit; however, it moves as a diffusion front through the core material. Modeling of the diffusion of the magnetic field through the core determined that it affects the magnitude and time signature of the voltage induced in the secondary winding when the primary current is produced by a capacitor discharge. During the quarter cycle rise time (227 ns) of the current pulse in the primary, a step response to an incident magnetic field would yield 95.57 percent of the steady state magnetic flux. Since the voltage induced in the CVT secondary is proportional to the time derivative of the magnetic flux, time delay would further distort the CVT current measurement
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