补偿装置

  • 网络compensator;compensation device;SVC;SVG;SVS
补偿装置补偿装置
  1. 静止无功补偿装置的理想补偿电流

    The Ideal Compensative Current of SVC Reactive power compensation for unbalanced current

  2. 在本文的最后根据系统现场的运行情况,分析了补偿装置功能的实现,提出了该动态无功补偿装置的不足之处和改进提高的方法。

    In the end , the paper analyzes the achievement of the SVC function according to the on-the-spot running situation of the system and puts forward the deficiencies of the dynamic SVC and improving methods .

  3. 一种基于DSP的动态无功补偿装置

    Design of Dynamic Reactive Power Compensator based on DSP

  4. 触摸屏和PLC在变电站无功动态补偿装置的应用

    The Application of Touch Screen and PLC to Reactive Dynamic Compensation Equipment of Substation

  5. 本文设计并实现了基于DSP的静止型动态无功补偿装置调节器。

    Based on DSP this paper design and implement a kind of SVC controller .

  6. 设计以DSP控制为主无功补偿装置并进行MATLAB分析。

    The paper will a Static Var Compensator with DSP control and proceed MATLAB feasibility analysis .

  7. RC校正网络与SD补偿装置

    RC corrective network and SD compensative unit

  8. 基于DSP的TSC型无功补偿装置研究与设计

    The Study and Design of TSC-SVC Controller Based on DSP

  9. 作为一种新型的无功补偿装置,静止无功发生器&SVG(StaticVARGenerator)拥有广阔的发展前景。

    As a new type of reactive power compensation device , SVG ( Static Var Generator ) has broad development prospects .

  10. 柔性串联补偿装置TCSC的控制可控串联补偿装置的研究现状

    The Control of Thyristor Controlled Series Capacitor Current Researches Status on TCSC

  11. MCS-51系列单片微型计算机控制的无功功率补偿装置

    A reactive power compensating device controlled by MCS-51

  12. 静止式动态虚功补偿装置中TCR的运行分析

    Analysis of Operation of TCR Used in SVC

  13. 自动无功补偿装置中用GTO保护晶闸

    To protect the thyristors with GTOs in auto - compensation devices

  14. 本文介绍了通过安装静止无功补偿装置(简称SVC)进行解决的方法。

    The Static Var Compensator ( SVC ) is an effective measure to solve the problems .

  15. 低压配网中TSC型动态无功补偿装置的设计与应用

    Design and Application of TSC in Low Voltage Distributing Network

  16. 晶闸管控制的可控串联补偿装置(TCSC)是在常规固定串联补偿装置技术的基础上发展起来的。

    Thyristor Controlled Series Compensation ( TCSC ) is evolved from the conventional series compensation .

  17. 本文内容主要围绕有源无功功率补偿装置SVG在实际生产生活应用中所面临的一些现实问题展开。

    This paper mainly focus on active reactive power compensation devices faced by some practical problems in actual production .

  18. TCR型动态无功补偿装置中触发控制角的计算精度直接影响无功补偿的效果。

    Delay angle account precision of TCR dynamic reactive compensation device influences the effect of dynamic reactive compensation directly .

  19. 研制出一种新型电力有源滤波及无功补偿装置,给出了基于DSP微处理器的数字控制算法。

    A new active power filter and static var compensator is investigated , the digital control algorithm and its software flow chart are given in view of digital signal processor ( DSP ) .

  20. 此仿真结果,为电能质量的基础理论研究提供了依据,并为以后设计SVC补偿装置提出了新的要求。

    This simulation result provides basis for researches on basic theory of power quality , and puts forward new requirements for SVC devices .

  21. 500kV固定串联补偿装置技术特点分析

    Technical Feature Analysis of 500 kV Fixed Series Capacitive Compensation Installation

  22. 10kV柱上无功自动补偿装置的研制

    Development of 10 kV pole-mounted automatic reactive compensation equipment

  23. 动态电压恢复器(DVR)是目前针对电压凹陷问题的最经济、最有效的补偿装置。

    To solve this problem , Dynamic Voltage Restorer ( DVR ) is the most efficient and economic device at present .

  24. 随着电网互联的发展和负荷密度的增加,提高电力系统运行稳定性和电压质量的要求日益迫切。电力电子技术的发展使得静止无功补偿装置(SVC)在该领域发挥了巨大的作用。

    To promote power system operational stability and voltage quality , the development of power electronic technology has played important role on Static Var Compensator .

  25. 500kV变电站的无功补偿装置

    Reactive Power Compensation Device of 500 kV Substation

  26. ATSC型快速动态无功补偿装置

    ATSC type fast dynamic var compensation device

  27. 660V低压线路无功功率自动补偿装置研究

    Research on Reactive Power Automatic Compensation Device for 660V Low-voltage Lines

  28. YTD型球磨机起动补偿装置的设计

    Design of Starting Compensator for YTD & Ball Mill

  29. 相控电抗型无功功率补偿装置(SVS)已为高压、超高压输变电广为采用。SVS工作原理决定了它在运行中不可免地会产生特征和非特征谐波。

    According to the principle of SVS , the characteristic and Non-characteristic harmonics will be generated in operation .

  30. 利用非线性控制的道系统方法,将静止无功补偿装置(SVC)非线性控制问题变换为相应的线性化控制问题。

    An inverse system method which is developed to design nonlinear control system has been used to convert a SVC nonlinear control problem to a linear optimal control problem .