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STABILIZATION OF THE QUADRUPLE INVERTED PENDULUM BY VARIABLE UNIVERSE ADAPTIVE FUZZY CONTROLLER BASED ON VARIABLE GAIN H_∞ REGULATOR 被引量:1
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作者 Yongli ZHANG Jiayin WANG Hongxing LI 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2012年第5期856-872,共17页
In this paper, the variable universe adaptive fuzzy controller based on variable gain Ha regulator (VGH∞R) is designed to stabilize a quadruple inverted pendulum. The VGH∞R is a novel robust gain-scheduling approa... In this paper, the variable universe adaptive fuzzy controller based on variable gain Ha regulator (VGH∞R) is designed to stabilize a quadruple inverted pendulum. The VGH∞R is a novel robust gain-scheduling approach. By utilizing VGH∞R technique, a more precise real-time feedback gain matrix, which is changing with states, is obtained, Via the variable gain matrix 10 state variables of quadruple inverted pendulum are transformed into a kind of synthesis error (E) and synthesis rate of change of error (EC) at sampling time. Therefore, the dimension of the multivariable system is reduced and the variable universe adaptive fuzzy controller is built. Experiments illustrate the effectiveness of the proposed control scheme. 展开更多
关键词 Quadruple inverted pendulum variable gain H∞ regulator (VGH∞R) variable universeadaptive fuzzy controller (VUAFC) algebraic Riccati equation (ARE).
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