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Decentralized sliding mode control for load frequency problem in three - Area power systems

机译:三区电力系统负载频率问题的分散滑模控制。

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Frequency issues exist in generation, transmission and load sectors. From the load point of view, frequency sensitive devices like engines or clocks require quasi constant frequency to work properly. Whereas in the transmission system, power losses like hysteresis and eddy currents in transformers are frequency dependent. At the generation side, it is essential to prevent rotor angle from exceeding maximal threshold value; thus avoiding generators becoming out-of-step. Many techniques and model predictive control were published to solve the load frequency control (LFC) problem. Moreover, current optimization methods and high performance computers allow engineers to optimize complicated linear and nonlinear problems within reasonable time. Among optimization techniques, genetic algorithm (GA) optimization is utilized by control designers. It is also supported by Optimtool - MATLAB toolbox. This paper presented a comparative study of conventional and sliding mode control (SMC) designs for LFC. Optimized conventional controllers (PI and PID) were applied into a three - area system. Generated responses from conventional controllers were compared to responses from systems equipped with decentralized SMC.
机译:频率问题存在于发电,输电和负荷部门。从负载的角度来看,诸如发动机或时钟之类的对频率敏感的设备需要准恒定频率才能正常工作。而在传输系统中,变压器中的功率损耗(如磁滞和涡流)与频率有关。在发电侧,必须防止转子角度超过最大阈值。因此避免了发电机失调。为了解决负载频率控制(LFC)问题,已发布了许多技术和模型预测控制。此外,当前的优化方法和高性能计算机使工程师能够在合理的时间内优化复杂的线性和非线性问题。在优化技术中,控制设计人员利用遗传算法(GA)优化。 Optimtool-MATLAB工具箱也支持它。本文对LFC的常规和滑模控制(SMC)设计进行了比较研究。优化的常规控制器(PI和PID)被应用于三区域系统。将常规控制器产生的响应与配备分散式SMC的系统的响应进行比较。

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