1)  traveling wave
行波传输
2)  traveling wave
行波
1.
Application of traveling wave fault location for the small neutral earthed system;
小电流接地系统行波测距法的应用
2.
A study of earth fault detection by comparing phase of initial transient traveling wave;
暂态初始行波相位比较法接地故障选线研究
3.
Quantitative investigation on Gedeon streaming in traveling wave thermoacoustic engine;
行波热声发动机中Gedeon直流定量研究
3)  traveling waves
行波
1.
Transformation of traveling waves and formation of spiral waves during ventricular fibrillation;
室颤过程中行波的漂移和旋波的形成
2.
Characteristic analysis of fault generated traveling waves in 10kV automatic blocking and continuous power transmission lines;
铁路10kV自闭/贯通线路故障行波特征分析
3.
The Realize and Improve of Traveling Waves Testing Platform s Hardware and Software;
暂态行波保护测试仪的软硬件实现与改进
4)  travelling wave
行波
1.
Prospect and development of transmission line fault location using travelling wave;
输电线路行波故障定位技术发展及展望
2.
Study on travelling wave fault location for overhead line combined with cable in railway automatic and continuous transmission line;
铁路自闭贯通线架空线-电缆混合线路行波测距
3.
Fault location based on travelling wave for transmission line by considering the frequency impedance characteristics;
考虑输电线路阻抗频率特性的高精度行波定位方法
5)  travelling waves
行波
1.
The new fault phase selection relay is constituted with the wavelet transform modulus maxima of initial transient current travelling waves of each phase,and the criterion of fault phase selection is put forward through distinguishing the fault features of modulus maxima of wavelet transform.
在行波故障选相的基础上,引入小波变换理论,探讨一种新的行波故障选相方法。
2.
A general appraisal is given to the modern Type D double-ended and Type A single-ended transmisison line fault location principles based on travelling waves in accuracy and reliability.
对现代D型双端和A型单端输电线路行波故障测距原理的准确性和可靠性进行了综合评价。
6)  traveling-wave
行波
1.
Study on Efficient Room-temperature Traveling-wave Thermoacoustic Refrigerators Part Ⅱ: Experimental Investigation on Electro-acoustically Driven Traveling-wave Thermoacoustic Refrigerators;
高效室温行波热声制冷机的研究(第二部分:电声压缩机驱动的行波热声制冷机的实验研究)
2.
To solve the problem of the fault location in distribution networks,a fault location method is suggested for the single-phase grounding fault based on C-type traveling-wave theory.
为解决配电网故障定位问题,使配电网故障定位自动化,以减少巡线工作量和用户停电时间,提出了利用C型行波法对单相接地故障进行故障测距的方法。
3.
A method based on C-type traveling-wave scheme for fault location in distribution network is put forward.
提出了利用C型行波法在配电网中进行故障定位的方法。
参考词条
补充资料:导行电磁波
      全部或绝大部分电磁能量被约束在有限横截面内沿确定方向传输的电磁波。常用导体和介质的边界作约束手段,如金属波导管、介质线、金属线等。封闭波导管使电磁波局限在管内传输。凡截止波长大于工作波长的模式都可以是导行波;开波导的导行波又称表面波,其场随着与边界的距离的增加而衰减;介质中挖空的导管(见图)也能传输表面波。常见的导行电磁波的结构有传输线、微带线(见微带线和类微带线)、波导、波束波导和光波导等结构。导行波除了在上述结构中沿轴向传输外,还可沿径向或周向传输,如径向波导,由地球表面和电离层构成的环球波导等。导行电磁波的场分布可用模式表示(见电磁波模式),常采用单模传输,如同轴线用TEM模、矩形波导用TE10模等。单模易于控制,不存在模式间的能量变换;即使采用多模传输,其主要能量仍集中于一个需要模(但多模光纤传输却例外,因所有传输模都参与信息的传递)。导行波的传输特性取决于导行结构及其所传输的模式,后者以衰减小、易控制、便于检测为选择原则。
  
  

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