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Further Improvement on Delay-Dependent Load Frequency Control of Power Systems via Truncated B–L Inequality
80
Citations
25
References
2018
Year
Truncated B–l InequalityTime Delay SystemEngineeringSmart GridJensen InequalityPower System ControlLoad ControlGrid StabilityPower System DynamicIntegral InequalityLinear Matrix InequalitiesFrequency ControlPower SystemsStability
In this paper, a new method is put forward for the closed-loop stability analysis of PI-type load frequency control (LFC) scheme with interval time-varying delay. Improved delay-dependent conditions in terms of linear matrix inequalities for single-area and multi-area LFC systems are deduced by the proposed augmented Lyapunov-Krasovski (L-K) functional. Less conservativeness of our main results is due to an integral inequality called truncated second-order Bessel-Legendre (B-L) inequality, which can produce tighter bounds than Wirtinger-based inequality that encompasses Jensen inequality. Finally, the two-area interconnected power system based on Matlab/Simulink is provided to show the effectiveness and superiority of the obtained results.
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