grid impedance的意思|示意

美 / grɪd imˈpi:dəns / 英 / ɡrɪd ɪmˈpidns /

栅极阻抗


grid impedance的用法详解

Grid Impedance: Usage Explained

Grid impedance is an important but often overlooked aspect of electrical engineering. It refers to the total opposition to electrical current that can be caused by components such as capacitors and resistors. It is an important measure of how efficient an electrical system is, and can be used to determine how much power is being lost in the system.

Grid impedance can be measured in ohms, and is typically calculated by dividing the total circuit resistance by the total number of components in the circuit. It is usually expressed in a ratio of ohms per component, and the higher the ratio, the more efficient the circuit. High grid impedance is desirable as it indicates that there is less power wastage in the system.

Grid impedance is also an important consideration when designing electrical circuits. Due to changes in the environment, a circuit with a high impedance may not be able to cope with a certain amount of current, leading to the circuit breaking down. On the other hand, a circuit with a low impedance may be able to handle more current, but may still be inefficient in terms of power usage. A careful balance must be established between these two variables in order to achieve optimal efficiency.

Grid impedance is an important aspect of electrical engineering that should not be overlooked. It is used to measure the efficiency of electrical systems, and can be used to optimize the power use of a circuit. By carefully considering the types of components used and the operating environment, engineers can ensure that the grid impedance of a circuit is as low as possible.

grid impedance相关短语

1、 power grid impedance 电网阻抗

2、 Impedance Grid 阻抗曲线

3、 grid-circuit impedance 栅极电路阻抗

4、 grid input impedance 栅极输入阻抗英语

5、 grid grounding impedance measurement 接地阻抗测量

grid impedance相关例句

But for high frequency problem and complex structure, too dense grid of object will lead to dense impedance matrix and many unknown variables, so the computational efficiency will be very low.

但是在处理高频问题和具有精密结构的缝隙时,对目标剖分过密会导致稠密的阻抗矩阵,未知量增加,影响计算的效率。

The simulation demonstrates that even though K value is same, the power grid impedance angle and wind farm power factor may also affect the voltage variation which is caused by wind farm.

指出在K值相同时,风电场引起的电压变化还与电网阻抗角和风电场功率因数有关。

Electrochemical performances of different grid alloys, including the performances of corrosion resistance, gassing evolution and the impedance of corrosion layer, were studied systematically.

系统地研究了不同板栅合金的耐腐蚀性、析气性能、表面腐蚀层阻抗等电化学性能。