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Differential evolution algorithm based tilt integral derivative control for LFC problem of an interconnected hydro-thermal power system

机译:基于互联水热电力系统LFC问题的基于差分扩展算法的倾斜整体衍生物控制

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Conventional control techniques such as proportional integral (PI) control and proportional integral derivative (PID) control are widely used as the load frequency controller in power system control applications; however, the increase in complexity of the power system is degrading the performance of classical control. Therefore, in this paper a new control approach using fractional calculus has been proposed for the load frequency control problem of two-area hydro-thermal power system. The paper presents an interconnected hydro-thermal power system working under different operating conditions introduced in the form of various nonlinearities. Four case studies have been presented in this paper considering transient analysis with (i) different loading conditions, (ii) parameter variations, (iii) different nonlinearities (governor dead band nonlinearity, time delay and generation rate constraints), and (iv) superconducting magnetic energy storage (SMES) device. A tilt integral derivative (TID) control has been presented as a secondary controller to stabilize the frequency deviations occurring in the two-area power system with the above-mentioned different operating conditions. The parameters of TID controller have been optimized using a differential evolution algorithm which solves an optimization problem formulated using the integral of time-weighted absolute error (ITAE) performance index. In addition, a comparison of dynamic system response obtained using TID control and PID control has been presented, which focusses on the better performance of TID control over PID control in an interconnected power system.
机译:诸如比例积分(PI)控制和比例积分衍生(PID)控制的传统控制技术被广泛用作电力系统控制应用中的负载频率控制器;然而,电力系统的复杂性的增加降低了经典控制的性能。因此,在本文中,已经提出了一种新的控制方法,已经提出了两域水热电力系统的负载频率控制问题。本文介绍了在不同非线性形式引入的不同操作条件下工作的相互连接的水热电力系统。本文介绍了四种案例研究,考虑到(i)不同的负载条件,(ii)参数变化,(iii)不同的非线性(省长死区非线性,时间延迟和生成率约束)和(iv)超导,考虑到瞬态分析磁能存储(SMES)设备。倾斜整数衍生物(TID)控制已经呈现为辅助控制器,以稳定在双面积电力系统中发生的频率偏差,其具有上述不同的操作条件。使用差分演进算法优化了TID控制器的参数,该算法解决了使用时间加权绝对误差(ITAE)性能索引的积分制定的优化问题。此外,已经介绍了使用TID控制和PID控制获得的动态系统响应的比较,从而聚焦了在互连电力系统中对PID控制的TID控制更好的性能。

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