本文分析设计了基于模糊逻辑的可控串补变结构控制器。
A variable structure controller based on fuzzy logic for Thyristor Controlled Series Capacitor (TCSC) has been analyzed and designed.
它对串补站控制和保护的设计、设备选型和运行具有意义。
It has given actual significance to design equipment selection and operation of control and protection technology in series compensation station.
随着电力系统传输容量的扩大,串补技术将得到广泛的应用。
With augmenting power grid transmission capacity, the series compensation technology will be adopted in general use.
针对可控串补非线性系统,设计了一种直接自适应模糊控制器。
Based on the nonlinear system of TCSC (Thyristor Controlled Series Capacitor), a direct self-adaptive fuzzy controller is designed.
基波阻抗和触发角的关系是可控串补(TCSC)触发控制的关键所在。
The relation of the impedance of fundamental frequency and the firing angle is the key factor in firing control of TCSC.
文章介绍了可控串补控制器(TCSC)的设计和基本特性的试验结果。
The design and some basic analog experiments results of TCSC controller are presented.
可控串补(TCSC)动态建模是暂态特性分析和控制策略研究的基础。
Dynamic modeling for Thyristor Controlled Series Compensation (TCSC) is the base to study the transient characteristic and control strategies.
文中对带串补的特高压线路采用负序方向高频保护作为主保护方式进行了研究。
This paper studies the negative sequence directional protection (NSDP) as the primary protection of series compensated UHV transmission line.
经功率调节计算,变耦电抗式可控串补较之于TCSC所需主设备容量大幅度减少。
By power adjusting calculation, thyristor controlled reactance series compensation by adjustable coupling comparing with TCSC, the needed capability of main facilities can be dramatically reduced.
串补装置平台安装工作是串补站建设中最为重要的工序,也是制约整个工程的关键。
The installation of series compensation platform is the most important procedure which restricts the whole construction of series compensation station.
通过对固定串补不同模型的分析,说明采用AT P - EMTP进行暂态稳定计算的必要性。
An analysis of the model of a different fixed series compensator shows the necessity of using ATP-EMTP in transient stability simulation.
作者基于传输线的节点导纳方程考虑了故障时串补装置的状态,提出了一种适用于串补线路的故障定位算法。
On the basis of nodal admittance equation and the state of compensating device while fault occurs, a fault location algorithm suited to series compensation transmission lines is proposed.
并通过静止无功补偿器(SVC)和可控串补(TCSC)动态相量模型仿真验证了TCR模型的有效性。
Then based on the TCR dynamic phasor model, static VAR compensator (SVC) and thyristor-controlled series capacitor (TCSC) dynamic phasor models are implemented to valuate the TCR model.
并通过静止无功补偿器(SVC)和可控串补(TCSC)动态相量模型仿真验证了TCR模型的有效性。
Then based on the TCR dynamic phasor model, static VAR compensator (SVC) and thyristor-controlled series capacitor (TCSC) dynamic phasor models are implemented to valuate the TCR model.
应用推荐