电力系统稳定性

  • 网络Power system stability
电力系统稳定性电力系统稳定性
  1. FACTS的最优选址提高电力系统稳定性

    The Determination of Optimal Location of FACTS Controller for the Improvement of Power System Stability

  2. 一种新的Lure型Lyapunov函数及其在电力系统稳定性分析中的应用

    An Improved Lure Lyapunov Function And Its Applications In Power System Stability Analysis

  3. SVC的模糊变结构控制对电力系统稳定性的影响

    The impact of fuzzy variable structure control of SVC on the power system stability

  4. 提高交直流电力系统稳定性的HVDC模糊逻辑控制器

    A fuzzy logic controller for the HVDC system to enhance stability of ac / dc power system

  5. 实时数字仿真(RTDS)在电力系统稳定性分析中的实效性研究

    Research on Applicability of RTDS in Stability Analysis of Power System

  6. 仿真分析结果表明:该控制方法应用于ASVG控制系统能提高控制器的综合性能,增强对电力系统稳定性的控制。

    The result of simulation shows : the method which is applied in ASVG controller can improve comprehensive ability of the controller and strengthen control effect to the power system .

  7. 柔性功率调节器(FPC)是一种用于提高电力系统稳定性的新型FACTS装置,具有储能、发电、调相等多种功能,可同时双向大范围快速调节与电网交换的有功功率和无功功率。

    Flexible Power Conditioner is a new style FACTS device , which can enhance power system stability . FPC can perform multi-functions including energy storage , active and reactive power generation . It can quickly and smoothly regulate the active and reactive power exchanging with connected power system .

  8. 传统无功补偿装置很难达到单位功率因数的补偿,STATCOM能连续发出感性或容性无功功率,是提高电力系统稳定性、提高功率因数、改善电能质量有效手段。

    It is hard to compensate reactive power thoroughly by the traditional compensator . Static Synchronous Compensator ( STATCOM ) could supply capacitive reactive power and inductive reactive power continuously , so it can enhance stability of power system and power factor as well as power quality .

  9. 统一潮流控制器的非线性控制和对电力系统稳定性的改善

    Nonlinear control for UPFC to improve transient stability of power systems

  10. 基于改进的势能界面判据实时预测电力系统稳定性

    Real time fast predict transient stability based corrected potential surface criterion

  11. 励磁系统在电力系统稳定性控制中的应用

    Application of the excitation device in the electric stability control system

  12. 微机非线性励磁控制器改善电力系统稳定性(上)&理论研究

    A microcomputer nonlinear excitation controllor in improving power system stability

  13. 励磁控制系统在改善电力系统稳定性中发挥的重要作用

    Important Function of Excitation Control System in Improving Electric Power System Stability

  14. 双向模块简化技术在电力系统稳定性仿真中的应用

    Application of Bi-Directional Module Reduction Technique in Transient Stability Simulation of Power System

  15. 协调电力系统稳定性和经济性问题的计算量非常庞大,需要有良好的数学优化算法的支持,内点法就是一种可以承担该任务的优秀算法。

    Interior point method is a main-stream method in the mathematical optimization areas .

  16. 通过同步发电机激磁控制,可以增强电力系统稳定性。

    Power system stability can be strengthened by controlling excitation of synchronous generators .

  17. 可控串联补偿在提高电力系统稳定性中的作用研究

    Enhancement of power system stability by controllable series compensation

  18. 电力系统稳定性与控制综述

    A Brief Review of Power System Stability and Control

  19. 励磁系统对于电力系统稳定性有很重要的影响。

    Excitation systems can impose significant effects on the stability of power systems .

  20. 复系数牛顿法在电力系统稳定性仿真中的应用

    Complex coefficient Newton method and its application in dynamic simulation of power system

  21. 同步发电机的调速控制对改善电力系统稳定性起着重要作用。

    Speed control of synchronous plays an important role in improving the stability .

  22. 修正的暂态能量函数及其在电力系统稳定性分析中的应用

    Corrected Transient Energy Function and Its Application to Power System Transient Stability Assessment

  23. 利用柔性功率调节器提高电力系统稳定性

    Power System Stability Enhancement by the Flexible Power Conditioner

  24. 用先进的动态电气制动提高电力系统稳定性

    Improve power system stability by advanced dynamic braking

  25. 控制和提高电力系统稳定性

    Controlling and Boosting the Stability of Power Systems

  26. 电力系统稳定性的分散输出反馈控制

    Decentralized Output Feedback Control of Power System Stability

  27. 针对中国电力系统稳定性分析中采用的部分恒阻抗、部分恒功率负荷模型,提出了一种复系数牛顿法求解非线性网络方程。

    A complex coefficient Newton method is proposed for application in power system dynamic simulation .

  28. 电力系统稳定性的研究一直都是电力科学工作者研究的重要课题。

    The electrical power system stability has always been the primary problem concerned by researchers .

  29. 功角稳定和电压稳定是电力系统稳定性问题的两个基本的方面。

    Rotor angle stability and voltage stability are the two aspects of the power system stability .

  30. 汽轮发电机组采用快关汽门,是提高电力系统稳定性的一项有效措施。

    To improve power system stability the fast valving of steam turbine generator set is an effective approach .