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http://dx.doi.org/10.6109/jkiice.2007.11.12.2352

Design of High Performance Hybrid Fuzzy Controller for the zero-crossing speed control of a Hydraulic System  

Han, Sang-Soo (경원대학교 정보통신공학과)
Kim, Chan-Seob (한국산업기술대학교 에너지대학원)
Son, Seong-Yong (경원대학교 정보통신공학과)
Abstract
Due to the friction characteristics of cylinders and the rail of a passenger car, in the elevator actuated with hydraulic systems, there exist dead zones, which can not be controlled by a PID controller. In this paper, the friction characteristics of a cylinder is examined, which may cause the abrupt increase of the acceleration in the zero-costing speed region. To overcome the drawbacks of a PID controlled hydraulic elevator system, a zooming fuzzy logic controller is designed and finally an improved hybrid fuzzy controller is proposed. The effectiveness of the proposed control scheme are shown by simulation and experimental results, which the proposed fuzzy hybrid control method yields good control performance not only in the zero-crossing speed region but also in the overall control region including steady-state region.
Keywords
Hydraulic elevator; Inverter; PID controller; Fuzzy controller; Hybrid fuzzy controller;
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