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Performance analysis of three area thermal power systems with different steam system configurations considering non linearity and boiler dynamics using conventional controller

机译:使用传统控制器考虑非线性和锅炉动力学的不同蒸汽系统配置的三个区域热电系统性能分析

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This paper highlights the performance of Load Frequency Control (LFC) or Automatic Generation Control (AGC) of an interconnected three area thermal power system. In the thermal power system steam turbine having different steam stages. Tandem compound type steam turbine is considered with different steam stages. Based on the steam system configurations, steam turbines are named as non-reheat, single stage reheat and double stage reheat turbine. The effect of different steam stages are investigated with and without considering the effects of non linearity and boiler dynamics effects. The performance comparison is made with help of conventional PI controller. The conventional P and I controller gain values are optimized by using ITAE technique. One percent step load disturbance is considered in either area of the system. Non-reheat turbine yields improved performance when non linearity and boiler dynamic effects are not taken into an account. Finally, simulation results reveals that double stage reheat turbine grant superior controlled performance with and without considering the effects of non linearity and boiler dynamics.
机译:本文突出了互连三个区域热电系统的负载频率控制(LFC)或自动生成控制(AGC)的性能。在具有不同蒸汽阶段的热电系统蒸汽轮机中。用不同的蒸汽阶段考虑串联化合物型蒸汽轮机。基于蒸汽系统配置,蒸汽轮机被命名为非再加热,单级再加热和双级再热涡轮机。在不考虑非线性和锅炉动力学效应的情况下,研究了不同蒸汽阶段的效果。在传统PI控制器的帮助下进行性能比较。通过使用ITAE技术优化传统的P和I控制器增益值。在系统的任一区域中考虑了一个百分比载重障碍。当非线性和锅炉动态效应未被占据账户时,非重新加热涡轮机产生改善的性能。最后,仿真结果表明,双级再热涡轮机在不考虑非线性和锅炉动力学的影响而不考虑效果的双级再热涡轮机。

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