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Transient Stability Improvement of Power System Using Non-Linear Controllers 被引量:1
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作者 rekha chaudhary Arun Kumar Singh 《Energy and Power Engineering》 2014年第1期10-16,共7页
This paper presents the design of a non-linear controller to prevent an electric power system losing synchronism after a large sudden fault and to achieve good post fault voltage level. By Direct Feedback Linearizatio... This paper presents the design of a non-linear controller to prevent an electric power system losing synchronism after a large sudden fault and to achieve good post fault voltage level. By Direct Feedback Linearization (DFL) technique robust non-linear excitation controller is designed which will achieve stability enhancement and voltage regulation of power system. By utilizing this technique, there is a possibility of selecting various control loops for a particular application problem. This method plays an important role in control system and power system engineering problem where all relevant variables cannot be directly measured. Simulated results carried out on a single machine infinite bus power system model which shows the enhancement of transient stability regardless of the fault and changes in network parameters. 展开更多
关键词 Single Machine INFINITE Bus (SMIB) Direct Feedback LINEARIZATION (DFL) Fuzzy Logic Controller (FLC) SLIDING Mode Control (SMC)
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