...
首页> 外文期刊>Industry Applications, IEEE Transactions on >Improved Hydroturbine Control and Future Prospects of Variable Speed Hydropower Plant
【24h】

Improved Hydroturbine Control and Future Prospects of Variable Speed Hydropower Plant

机译:改进的水力涡轮控制和变速水电站的未来前景

获取原文
获取原文并翻译 | 示例
           

摘要

Hydroturbine control system (HTCS) is a nonlinear, nonminimum phase system comprising of speed/frequency sensors, hydraulic servo motors, wicket gates, gate position feedback mechanism, and proportional integral derivative (PID) controller (governor). Governor controls the guide vane opening (GVO) corresponding to the input (speed/frequency). Nowadays, HTCS becomes more intricate insight of variable speed doubly-fed induction generator for compensating wide variation in water head. Hence, robust control techniques are necessary for the optimal utilization of hydropower potential. In this article, a brief review of HTCS is given and a complimentary sliding-mode controller (CSMC) is designed for GVO serving a 250 MW hydrogenerating unit. The CSMC control law is derived and the stability is verified through the Lyapunov function. Simulation is carried out through the MatLab Simulink environment for a 250 MW HTCS. Then, the performance of CSMC for GVO and its influence on the generator characteristics are analyzed and compared with the traditional PID controller. The simulation results demonstrate the efficacy of the controller during the startup process, subsynchronous, and super synchronous mode of operations. It is inferred that the proposed CSMC has three times faster settling time than that of the traditional PID controller. Experimental validation is carried out with a scaled-down laboratory prototype. Furthermore, future scope and design challenges associated with the hydropower control system are illustrated.
机译:Hydriturbine控制系统(HTCS)是一种非线性,非最小相位系统,包括速度/频率传感器,液压伺服电机,检色栅,栅极位置反馈机制和比例整体衍生(PID)控制器(调速器)。调速器控制对应于输入(速度/频率)的导向叶片打开(GVO)。如今,HTCS变得更复杂的变速速度升性,用于补偿水头的宽变化。因此,鲁棒的控制技术是利用水电势的最佳利用所必需的。在本文中,给出了对HTC的简要审查,并且为GVO设计了一种免费的滑模控制器(CSMC),用于提供250 MW的氢化单元。推导了CSMC控制法,通过Lyapunov函数验证了稳定性。通过Matlab Simulink环境进行模拟,用于250 MW HTC。然后,分析了CSMC对GVO的性能及其对发电机特性的影响,并与传统的PID控制器进行比较。仿真结果展示了控制器在启动过程,子同步和超级同步操作过程中的功效。推断,所提出的CSMC具有比传统PID控制器更快的稳定时间快三倍。实验验证是用缩小的实验室原型进行的。此外,说明了与水电控制系统相关的未来范围和设计挑战。

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