1) inductor saturation effect
电感饱和效应
2) voltage saturation effect
电压饱和效应
3) saturation induction
饱和感应
4) saturation effect
饱和效应
1.
Based on the saturation effect of winding inductance,an estimation method of initial position for SPMLSM without a position sensor was presented.
利用绕组电感饱和效应,即由于磁路饱和引起的电感随动子位置角变化的规律,检测表面式永磁直线同步电机动子的初始位置。
2.
Saturation effect of fiber Bragg gratings can cause the second order diffraction and the decreasing of the first order maximum reflectivity.
光纤 Bragg光栅的饱和效应可引起二阶衍射 ,并使一阶衍射的峰值反射率下降 。
3.
But because of the saturation effect of this method it is impossible that the convergence rate can be improved with increasing smoothness assumption of solution,i.
Tikhonov正则化方法是研究不适定问题最重要的正则化方法之一,但由于这种方法的饱和效应,使得不可能随着解的光滑性假设的提高而提高收敛率,即不能使正则解与准确解的误差估计达到阶数最优。
5) saturation
[英][,sætʃə'reɪʃn] [美]['sætʃə'reʃən]
饱和效应
1.
The intensity correlation functions and power spectra for the colored saturation loss-and colored loss-and colored gain-noise models for a single-mode dye laser have been derivedby means of linear approximation.
利用线性近似推导了单模染料激光色饱和损失模型、色增益模型和色损失模型的光强关联函数及功率谱,分析了饱和效应对光强关联函改及功率谱的影响,得到:a。
2.
The energy distributions of the output beams in different degree of saturation are measured while the other conditions remain unchanged.
对TEACO2 激光器较为均匀的“平顶型”输出模式的成因进行了探讨 ,在其他条件相同的情况下 ,分别测量了不同饱和程度下激光器输出光的能量密度分布 ,通过实验证实 ,在TEACO2 激光器中 ,由于其增益较高 ,存在着较为强烈的饱和效应 ,因而引起了激光模式的展宽和均匀
6) Saturable inductor
饱和电感
1.
A full bridge ZVZCS converter using limited double-polarity control method,a saturable inductor and a capacitor is studied.
研究了一种适合宽负载条件运行的有限双极性控制方法并配合饱和电感和隔直电容实现ZVZCS PWM的全桥变换器,分析了其工作过程及主开关器件实现ZVZCS的约束条件。
2.
Compared with the traditional full-bridge(FB)zero-voltage-switched(ZVS) pulsewidth-modulated(PWM) converter, the FB-ZVS-PWM converter with a saturable inductor has a wider load range with ZVS and smaller circulating energy as well as smaller duty cycle loss.
带饱和电感的移相全桥零电压开关PWM变换器与传统的移相全桥零电压开关PWM变换器相比,具有较宽的零电压开关负载范围,较小的循环能量和较小的占空比损失。
补充资料:电感器(见电感和标准电感器)
电感器(见电感和标准电感器)
inductor
diongon印电感器(inductor)见电感和标准电感器。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条