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首页> 外文期刊>International journal of electrical power and energy systems >An adaptive CGPC based anti-windup PI controller with stability constraints for the intermittent power penetrated system
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An adaptive CGPC based anti-windup PI controller with stability constraints for the intermittent power penetrated system

机译:基于自适应CGPC的抗风PI控制器,具有用于间歇性电力穿透系统的稳定约束

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With the increasing penetration of the renewable energy, the modern power system is facing greater challenges to maintain the frequency stability, which can be studied with load frequency control (LFC). Since the conventional proportional integral (PI) controller can’t necessarily satisfy the ever-growing robustness requirement, an adaptive constrained generalized predictive control (CGPC) based anti-windup PI controller with stability constraints is proposed, which is referred to as CGPC-PI in this article. Wherein, the CGPC logic in the upper hierarchy acts as a real-time optimizer for the PI parameters in the lower hierarchy. The proposed control scheme inherits the self-tuning and adaptive control characteristics from CGPC and can maintain the facilities and control logic from PI. Furthermore, simpler stability constraints and performance improvement could be gained considering that PI is the actual implementing control method. Simulation experiments are conducted to reveal the frequency regulation performances in a Generation Rate Constraint (GRC) and Governor Deadband (GDB) involved interconnected power system with intermittent power penetration. The results can testify the superiority of CGPC-PI over the comparative methods in terms of the overshoot and damping performance, which includes:(1) CGPC-PI outperforms PI and CGPC. (2) the superiority is more obvious when working with varying disturbances which is big enough can trigger the anti-windup scheme. (3) CGPC-PI can enhance the frequency regulation performance of the intermittent power penetrated systems.
机译:随着可再生能源的渗透性越来越多,现代电力系统面临着维持频率稳定性的更大挑战,可以用负载频率控制(LFC)进行研究。由于传统的比例积分(PI)控制器不一定满足不断增长的鲁棒性要求,因此提出了一种具有稳定性约束的基于自适应约束的广泛预测控制(CGPC)的抗风PI控制器,其被称为CGPC-PI在本文中。其中,上层中的CGPC逻辑充当下层中的PI参数的实时优化器。所提出的控制方案继承了CGPC的自调谐和自适应控制特征,可以维护来自PI的设施和控制逻辑。此外,考虑到PI是实际实现控制方法,可以获得更简单的稳定性约束和性能改进。进行仿真实验以揭示一代产生率约束(GRC)和调速器死区(GDB)中的频率调节性能涉及具有间歇功率渗透的互连电力系统。结果可以在过冲和阻尼性能方面通过比较方法证明CGPC-PI的优越性,包括:(1)CGPC-PI优于PI和CGPC。 (2)使用变化的扰动时,优越性更为明显,这足以触发防风方案。 (3)CGPC-PI可以增强间歇性电力穿透系统的频率调节性能。

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