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Adaptive Super Twisting Sliding Mode Load Frequency Control for an Interconnected Power Network with Nonlinear Coupling Between Control Areas

机译:控制区域非线性耦合的互连电网自适应超扭转滑模载荷频率控制

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The article revisits the design of sliding mode control (SMC) for load frequency problems in power systems. Unlike works reported earlier, an adaptive super twisting SMC (ST-SMC) is designed for two area interconnected power network under load disturbance. The two control areas are nonlinearly coupled to each other making the control objective more challenging. The proposed design ensures asymptotic convergence of frequency and tie line power deviations under any load disturbance. In practice, the bounds of unknown disturbances in a power network are often not known. Therefore, dynamically adapted gains are considered in the design of the ST-SMC that ensures better control efficiency without controller gains being overestimated. The proposed controller is compared with conventional SMC designed for interconnected power systems. The merit of the proposed design is observed in control input which is significantly less affected by chattering without any loss in the control accuracy. The proposed design is also validated with typical nonlinearities in power systems like generation rate constraints (GRC) and governor dead band (GDB). The effectiveness of the proposed design is shown by simulation.
机译:本文重新审视了电力系统中负载频率问题的滑模控制(SMC)的设计。与之前报告的作品不同,适应超级扭转SMC(ST-SMC)专为负载扰动的两个区域互连电网而设计。两个控制区域彼此非线性地耦合,使得控制目标更具挑战性。所提出的设计确保了在任何负载干扰下都能确保频率和系带线功率偏差的渐近收敛。实际上,电网中未知干扰的界限通常不知道。因此,在ST-SMC的设计中考虑了动态调整的增益,确保了更好的控制效率而无需长期控制的控制效率。将所提出的控制器与专为互连电力系统设计的传统SMC进行比较。在控制输入中观察到所提出的设计的优点,这通过控制精度的抗损失而显着较小。建议的设计也验证了电力系统中的典型非线性,如生成速率约束(GRC)和总监死区(GDB)。仿真显示了所提出的设计的有效性。

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