首页> 外文会议>International Russian Automation Conference >Simulation of Gas Turbine Power Plants with Voltage and Speed Prognostic Regulators
【24h】

Simulation of Gas Turbine Power Plants with Voltage and Speed Prognostic Regulators

机译:具有电压和速度预后调节器的燃气轮机电厂仿真

获取原文

摘要

The article provides results of computer-based research dedicated to dynamic models development of low-power two-shaft gas turbines equipped with automatic voltage and speed regulators having prognostic links. When gas turbine plants (GTP) are used in isolated power supply systems, frequency and voltage deviations can be insignificant which adversely affects power quality indices. Regulators adjustment of GTP being commissioned requires complex design calculations. Using prognostic algorithms allowing the classical regulators perfection with minimal costs contributes to their efficient adjustment. The prognostic algorithms can be referred to ones enabling the system automatic control based on one parameter – forecast time. This is especially urgent when it is necessary to commission a GTP within tight deadlines. The models represented in the article, were implemented using Simulink package of MATLAB system. Therefore, prognostic algorithms influence on voltage and rotational speed control quality of GTP generator was studied in the modes of load connection and shedding. The computer modeling results allowed to make the following conclusions: the use of prognostic regulators when connecting an additional powerful load to GTP, allows to remove oscillability, reduce voltage dips, and transient time by 2.5 s; an abrupt load shedding allows to completely remove oscillability, reduce overshoot of rotor rotational speed and overvoltage on generator terminals due to the application of prognostic algorithms, and to significantly reduce transient time duration for speed in comparison with classical regulators; the use of prognostic algorithms allows to obtain acceptable quality factors for transients without using complicated procedures of regulators adjustment.
机译:本文提供了基于计算机的研究结果,该研究致力于开发配备了具有预后联系的自动电压和速度调节器的低功率两轴燃气轮机的动态模型。当燃气轮机设备(GTP)用于隔离的电源系统中时,频率和电压偏差可能很小,这会对电能质量指标产生不利影响。监管机构对GTP的调试调整需要进行复杂的设计计算。使用预后算法,可以以最小的成本完善经典的调节器,从而有助于其高效调节。可以将预后算法称为能够基于一个参数(预测时间)实现系统自动控制的算法。当有必要在紧迫的期限内启动GTP时,这一点尤其紧急。本文中表示的模型是使用MATLAB系统的Simulink软件包实现的。因此,研究了负荷连接和脱落方式对GTP发电机电压和转速控制质量的影响。计算机建模结果可以得出以下结论:将额外的强大负载连接到GTP时使用预后调节器,可以消除可振荡性,减少电压骤降和瞬态时间2.5 s;与传统的调节器相比,突然的甩负荷可以完全消除可振荡性,减少转子转速的超调和发电机端子上的过电压,并且可以大大降低速度的瞬态持续时间;预后算法的使用允许获得瞬变的可接受的品质因数,而无需使用复杂的调节器调节程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号