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TLBO Based CC-PID-TID Controller for Load Frequency Control of Multi Area Power System

机译:基于TLBO的CC-PID TID控制器,用于多区域电力系统负载频率控制

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This study discloses the design of a cascade controller to control the frequency and power interchange among control areas. Teaching learning based optimization (TLBO) algorithm is functional in three area thermal-hydro system to attain the constraints of cascaded-tilt integral derivative (CC-TID) controller. The recommended controller is the synchronization of both conventional and fractional-order calculus to minimize the error. Here, TID controller applied in primary loop to retain steadiness between generation and demand whereas proportional-integral-derivative (PID) controller applied as supplementary loop to control the frequency and tie-line power deviations. Routines of CC-PID-TID controller are achieved by using an objective function as integral of time multiplied absolute error (ITAE). Preeminence of this controller is verified by concerning the outcomes with lately available methodology such as cascade PI-TID controller for three area system employing same objective function. Furthermore, the performance of TLBO is assessed and related with differential evolution particle swarm optimization in terms of dynamic behaviours.
机译:本研究公开了级联控制器的设计,以控制控制区域之间的频率和功率交换。基于教学的基于学习优化(TLBO)算法在三个区域热水系统中的功能,以获得级联 - 倾斜整数衍生物(CC-TID)控制器的约束。推荐的控制器是常规和分数阶微积分的同步,以最小化误差。这里,在主循环中应用的TID控制器以保持生成和需求之间的稳定性,而应用作为补充回路的比例积分衍生(PID)控制器以控制频率和扎线功率偏差。通过使用目标函数作为时间乘以绝对误差(ITAE)的积分来实现CC-PID-TID控制器的例程。通过关于具有相同目标函数的三个区域系统的级联PI-TID控制器,验证该控制器的优势是通过最近可用的方法来验证的。此外,在动态行为方面评估了TLBO的性能和与差分演进粒子群优化相关。

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