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Application of Linear Active Disturbance Rejection Control to Power System Load Frequency Control

机译:线性有功干扰抑制控制在电力系统负荷频率控制中的应用

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In this paper, linear active disturbance rejection control (LADRC) is employed to deal with the load frequency control (LFC) problem in power systems with a single generator supplying power to a single service area. First, the general (n+1)th order LADRC is given, and then the parameter tuning procedures are presented. It is followed by the description of an LFC problem, in which the case of a single generator supplying power to a single service area is discussed and three different types of turbines, including non-reheated, reheated, and hydro turbine, employed for generation are considered. The LADRC is designed for the three types of turbines, and simulation results are compared to the traditional PID control strategy. With the proposed LADRC approach, the system performance is much better than that of the traditional PID controller. The LADRC demonstrates strong robustness against varying parameters, which is also validated by the computed performance indices
机译:在本文中,采用线性有源干扰抑制控制(LADRC)来解决具有单个发电机向单个服务区域供电的电力系统中的负载频率控制(LFC)问题。首先,给出了一般的(n + 1)阶LADRC,然后给出了参数调整过程。接下来是LFC问题的描述,其中讨论了单个发电机向单个服务区域供电的情况,并讨论了三种不同类型的涡轮机,包括非再热,再热和水力涡轮机,用于发电考虑过的。 LADRC专为三种类型的涡轮机而设计,并将仿真结果与传统的PID控制策略进行了比较。使用建议的LADRC方法,系统性能比传统PID控制器好得多。 LADRC展示了针对各种参数的强大鲁棒性,这也得到了计算性能指标的验证

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