...
首页> 外文期刊>European transactions on electrical power engineering >Renewable energy source‐based multiarea AGC system with integration of EV utilizing cascade controller considering time delay
【24h】

Renewable energy source‐based multiarea AGC system with integration of EV utilizing cascade controller considering time delay

机译:基于可再生能源的多区域AGC系统,采用级联控制器并考虑到时延,集成了EV

获取原文
获取原文并翻译 | 示例
           

摘要

Automatic generation control of the unequal 3-area system with diversified sources like small hydrothermal units in area-1 and area-2 and split shaft gas turbine thermal units in area-3 with nonlinearity of generation rate constraint is explored. A cascade combination of integer order integral-derivative with filter (IDN) and fractional order proportional derivative (FOPD) is considered as a secondary controller (IDN-FOPD). The controller gains and other parameters are optimized using whale optimization algorithm. The performance of IDN-FOPD controller has an upper hand when compared with some classical controllers like integral, proportional-integral, and proportional-integral-derivative with filter (PIDN). Analyses reveal that the performance of a combination of IDN-FOPD in area-1 and PIDN controllers in other areas of system dynamics provides comparable results with IDN-FOPD controllers in all areas. Thus, this combination of controllers is carried for further analyses. Even eigenvalue analysis has been performed for analyzing system stability. The impact of time delay on system dynamics is also studied. The impact of the inclusion of renewable source like a solar thermal power plant in area-1 and electric vehicles in all areas provides better system dynamics in the presence of nonlinearity generation rate constraint and time delay. Sensitivity analysis reveals that controller gains and other parameters obtained at nominal conditions are robust to changes in variable solar insolation and demands no further reset.
机译:研究了不等式三区域系统的自动发电控制,该系统具有多种发电源,如区域1和区域2中的小型热液机组和区域3中的分裂轴燃气轮机热机组,它们具有发电速率约束的非线性。带滤波器的整数阶积分微分(IDN)和分数阶比例微分(FOPD)的级联组合被视为辅助控制器(IDN-FOPD)。使用鲸鱼优化算法优化控制器增益和其他参数。与某些经典控制器(例如积分,比例积分和带滤波器的比例积分微分(PIDN))相比,IDN-FOPD控制器的性能具有优势。分析表明,IDN-FOPD在区域1和PIDN控制器在系统动力学的其他领域的组合性能在所有领域都可与IDN-FOPD控制器相媲美。因此,将这种控制器组合用于进一步分析。甚至进行了特征值分析来分析系统稳定性。还研究了时间延​​迟对系统动力学的影响。在存在非线性发电速率约束和时间延迟的情况下,将可再生资源(如区域1中的太阳能热电厂)和所有区域中的电动汽车包括在内的影响提供了更好的系统动力学。灵敏度分析表明,在标称条件下获得的控制器增益和其他参数对于可变的日照强度具有鲁棒性,因此无需进一步复位。

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