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Black hole optimised cascade proportional derivative-proportional integral derivative controller for frequency regulation in hybrid distributed power system

机译:混合分布式电源系统中用于调频的黑洞优化级联比例微分-比例积分微分控制器

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摘要

This manuscript presents a novel black hole optimised (BHO) proportional derivative-proportional integral derivative controller (PD-PID) is provided for the optimal solution of the frequency regulation of hybrid power system. At first, a two area power system is considered in which area-1 having thermal, distributed units and in area-2 includes thermal, hydel and nuclear units. Appropriate nonlinearities such boiler dynamics, governor dead band (GDB) and generation rate constraint (GRC) are considered. In the next step, PD-PID controller is considered as a secondary controller and its preeminence is shown by comparing with proportional integral derivate (PID) and proportional integral double derivate (PIDD) controllers for the same model having integral time multiplied absolute error (ITAE) as an error function. Finally, sensitivity of the proposed controller is investigated over a wide variation of system parameters and loading condition. For more examination of the proposed controller is also analysed under random step load and sinusoidal disturbances.
机译:该手稿提出了一种新颖的黑洞优化(BHO)比例微分-比例积分微分控制器(PD-PID),为混合动力系统的频率调节提供了最佳解决方案。首先,考虑一种两区域电力系统,其中具有热分布单元的区域1和区域2中包含热单元,hydel和核能单元。考虑了适当的非线性,如锅炉动力学,调速器死区(GDB)和发电率约束(GRC)。下一步,将PD-PID控制器视为辅助控制器,并通过与具有积分时间乘以绝对误差(ITAE)的同一模型的比例积分微分(PID)控制器和比例积分双微分(PIDD)控制器进行比较来显示其优越性)作为错误函数。最后,在广泛的系统参数和负载条件变化下研究了所提出控制器的灵敏度。为进一步检查所提出的控制器,还分析了随机步进负载和正弦波干扰下的情况。

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