首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Performance improvement of three-phase self-excited induction generator feeding induction motor load
【24h】

Performance improvement of three-phase self-excited induction generator feeding induction motor load

机译:三相自激感应发电机给感应电动机负载供电的性能改进

获取原文
           

摘要

In this paper, the transient and steady-state performances of an isolated self-excited induction generator driven by a wind turbine and feeding power to a dynamic load such as a three-phase induction motor are analyzed. Mathematical modeling and simulation study of the whole system, including the wind turbine, induction generator, capacitor, pulse width modulated voltage source inverter, and dynamic load, are carried out with closed-loop voltage and frequency controller. The complete system is modeled in the stationary $d-q$ frame and validated by comparing simulation and experimental results at no-load. The same mathematical model is then used to study the transient performance of the self-excited induction generator supplying to a dynamic load. When the induction motor is connected to the induction generator without any voltage and frequency controller, it causes severe transients in electrical and mechanical variables of the generator. Due to the large starting-current requirement of the induction motor, there is a collapse of the terminal voltage of the generator. A bidirectional pulse width modulated source inverter with DC link battery is connected with the generator and operated in closed-loop control mode to maintain voltage and frequency and to operate the induction motor successfully with variable wind speed and mechanical load.
机译:在本文中,分析了由风力涡轮机驱动的隔离式自励感应发电机的瞬态和稳态性能,并向诸如三相感应电动机的动态负载供电。利用闭环电压和频率控制器对整个系统进行了数学建模和仿真研究,包括风力发电机,感应发电机,电容器,脉宽调制电压源逆变器和动态负载。完整的系统在固定的$ d-q $框架中建模,并通过比较空载的仿真结果和实验结果进行验证。然后,使用相同的数学模型研究自激感应发电机向动态负载供电的瞬态性能。当感应电动机在没有任何电压和频率控制器的情况下连接到感应发电机时,会导致发电机的电气和机械变量发生严重的瞬变。由于感应电动机的大起动电流需求,发电机的端电压崩溃。具有直流链路电池的双向脉宽调制源逆变器与发电机连接,并以闭环控制模式运行,以维持电压和频率,并在可变风速和机械负载下成功运行感应电动机。

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