1) obstacle diffraction loss
障碍绕射损耗
2) obstacle diffraction
障碍绕射
3) Diffraction loss
绕射损耗
1.
Application research on diffraction loss of passive radar based on uniform geometrical theory of diffraction
一致性劈绕射理论在无源雷达绕射损耗中的应用研究
4) spherical diffraction loss
球面绕射损耗
6) winding loss
绕组损耗
1.
To achieve the optimized design,we should get the best geometry model of the core and make the loss of transformer at minimum level on the basis of the mathematic model of core loss and winding loss.
得出了变压器PCB板绕组的最优布置方式;在绕组损耗和磁芯损耗的数学模型基础上,找出最适当的磁芯几何形状,使变压器的损耗为最小,达到优化设计的目的。
2.
As is known that a magnetic component generally consists of a core and a winding, therefore, there are two kinds of losses in magnetic components: core loss and winding loss.
磁性元件一般由磁芯和绕组组成,其损耗包括磁芯损耗和绕组损耗。
3.
Based on Dowll model for transformer, ID analytical procedure for calculate PCB winding loss has been developed, which solved the problem of PCB winding connection in parallel, with .
Dowell的一维变压器模型出发,建立了计算平面变压器绕组损耗的一维理论公式,从并联绕组两端电压平衡出发,解决了平面变压器绕组的并联损耗计算问题,并实现通用系统的计算机算法。
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