高压输电

  • 网络high voltage transmission
高压输电高压输电
  1. 高压输电线路OPGW的选型与设计

    Discussion on the Type Selection and Design of OPGW High Voltage Transmission Line

  2. 基于Hilbert-Huang变换和神经网络的带串补高压输电线路故障测距

    Fault Location for High Voltage Transmission Lines With the Series Compensation Capacitor Based on Hilbert-Huang Transform and Neural Network

  3. 我国特高压输电工程的GIS技术

    GIS Technology of UHV Transmission Engineering in China

  4. SVC对限制超高压输电系统工频过电压的影响

    Effect of SVC on restricting the temporary overvoltage of EHV transmission system

  5. 高压输电线路OPGW设计和探讨

    Desing and Discussion of OPGW on HV Power Transmission Line

  6. 高压输电铁塔上架设ADSS光缆位置的研究

    Study of the position of locating all-dielectric self-supporting fiber-optic cable on high-voltage power tower

  7. 该系统采用电力电磁场与力场的耦合计算方法仿真高压输电线路与自承式通信光缆(ADSS)同塔并架工程。

    We use calculation of Electric Magnetic Field Coupling in Force Field to emulate the system .

  8. 500kV超高压输电线路导线翻转问题浅析

    Study on Conductors Turn Over Problem in 500 kV EHV Power Transmission Lines

  9. 220kV高压输电线路的工频电磁场和无线电干扰污染

    Pollution of electro-magnetical fields and radio disturbed fields of 50 Hz-220 kV high tension line

  10. 1000kV特高压输电线路配套金具研制

    R & D of Complete Fittings for 1000 kV UHV Transmission Line

  11. 因此,过电压是750kV及特高压输电技术的关键问题,也是750kV及特高压输电线设计的决定性因素。

    Therefore , over-voltage is the key and decisive factor of insulation in 750 KV & UHV power network .

  12. 而且特高压输电线路两端断路器切除故障的时间差应该尽量短,一般要小于0.04~0.05s,避免过电压造成设备绝缘损坏。

    The difference of tipping time between two terminal breakers should be limited within 0.04 ~ 0.05s so as to avoid equipment insulation damages caused by the over-voltage .

  13. 根据短时傅里叶变换的滤波器组实现原理,研究了不同窗函数实现的50Hz带通滤波器,分析比较了它们用于提取电力系统高压输电线路故障信号基频分量的能力。

    According to the principle of filter banks of short time Fourier transform , various 50 Hz band pass filters modulated with different windows are studied , and their performances in extracting fundamental components among corrupted fault signals in HV transmission lines are compared .

  14. 介绍了国外1000kV特高压输电继电保护与监控技术的研发情况,提出了我国在这方面需要研究的有关技术问题。

    The research and development of protection and monitoring technology for 1000 kV EHV power transmission abroad was introduced , and the technical problems that need to study in the aspects of protection and monitoring for 1000 kV EHV power transmission were put forward .

  15. 混合式超高压输电方案在阳江核电厂的应用

    Use of Integrated EHV Transmission Project in Yangjiang Nuclear Power Plant

  16. 高压输电线路转弯处的工频电场

    Power Frequency Electric Fields around Corner of High Voltage Transmission Lines

  17. 为了便于仿真,对超高压输电线路进行了一些必要的假设和简化处理。

    To more easily simulate assumption about transmission lines are made .

  18. 提出了实施特高压输电需研究的重点技术问题。

    The key technical subjects for implement UHV transmission are given .

  19. 高压输电系统串联电容器补偿的应用与仿真研究

    Application and Simulating Study on Series Capacitor Compensated High-voltage Transmission Network

  20. 高压输电线路串联电容器的邦-邦控制

    The bang-bang control of series capacitors on high voltage transmission lines

  21. 特高压输电技术在南方电网的发展与应用

    Development of Ultra-high Voltage Transmission Technology in China Southern Power Grid

  22. 特高压输电塔线体系的气动弹性模型设计

    An aeroelastic model design of ultra-high voltage power transmission line systems

  23. 发展我国交流特高压输电的建议

    Recommendation for the Development of AC UHV Power Transmission in China

  24. 特高压输电技术及设备应用于工程的分析研究

    Study on Engineering Application of EHV Power Transmission Technology and Equipments

  25. 特高压输电线路铁塔组立抱杆的方案选择

    Scheme Selection of Holding Poles Erection for EHV Transmission Towers

  26. 可控串补在超高压输电系统上的应用

    Application of Controlled Series Compensation in AC Transmission System of Extrahigh Voltage

  27. 特高压输电线路保护的方案研究&纵联差动保护

    Research on UHV transmission line protection & pilot differential protection

  28. 高压输电线路复合绝缘子发热机理的研究

    Research on heating mechanism of composite insulator of high voltage transmission line

  29. 带串联电容补偿装置的高压输电线路双端故障测距新算法

    A new accurate two-terminal locating algorithm for series compensated line

  30. 高压输电线路空气放电机理及其对策

    Mechanism and solution of air discharge on HV transmission lines