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1)  electromagnetic transient of wind farm
风电电磁暂态
2)  electromagnetic transient
电磁暂态
1.
A new electromagnetic transient simulation approach accounting for impulsive corona and frequency-dependence line parameters;
一种考虑冲击电晕及线路参数频变的电磁暂态仿真方法
2.
To realize accurate testing of the control and protection systems,the transients in a high power electronic system are classified as electromagnetic transients,switching transients,and electro-thermal transients.
为实现大功率电力电子装置特性的全面物理测试,将装置的动态过程划分为装置级电磁暂态过程、器件级开关暂态过程和热动态过程,并对这3个动态过程进行实时交互计算。
3.
The dynamic phasor model is based on the time-varying phasor, which not only breaks the quasi-stationary assumption, but also overcomes the maximum step size constraint of regular transmission line, so it can be used to analyze the fast electromagnetic transient phenomena at a higher speed.
传统的机电暂态模型由于建立在"准稳态"假设基础之上,因此不能用来仿真变化迅速的电磁暂态过程,而电磁暂态模型,虽然能准确反映电磁暂态过程,但由于仿真步长很小,仿真速度受到限制,不适合用来仿真大型电力系统。
3)  electromagnetic transients
电磁暂态
1.
The function and significance of electromagnetic transients simulation for transmission line in modern power system are clarified and the research contents and methods are introduced.
阐述了输电线电磁暂态仿真在现代电力系统分析中的作用和意义 ,对研究内容和方法进行了介绍。
2.
On the basis of the theory of MTL (Multiconductor Transmission Line),the approach of analysis in frequency domain and the technique of Hosono s numerical inverse Laplace transform,a method for the accurate computation of long line fault electromagnetic transients is presented.
基于多传输线理论、频域分析方法和Hosono的数值拉氏反变换技术,提出了长输电线路任意短路的电磁暂态计算新方法。
3.
This paper presents a model of nonlinear elements for the simulation of electromagnetic transients in power systems.
本文介绍一种电力系统电磁暂态仿真非线性元件算法。
4)  IGBT electromagnetic transient
IGBT电磁暂态
5)  electromagnetic transient overvoltage
电磁暂态电压
6)  electromagnetic transient model
电磁暂态模型
1.
This paper proposes a unified electromagnetic transient model and control strategy for the voltage source converter(VSC) based HVDC transmission.
为了更好的应用基于电压源换流器(VSC)的新型高压直流输电系统,发挥其技术优势,提出了VSC-HVDC统一电磁暂态模型并进行了其控制策略的研究。
补充资料:风态
1.犹风姿。
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