Design & Implementation of Fuzzy Parallel Distributed Compensation Controller for Magnetic Levitation System
Journal Title: IOSR Journals (IOSR Journal of Electrical and Electronics Engineering) - Year 2017, Vol 12, Issue 4
Abstract
This study applies technique parallel distributed compensation (PDC) for position control of a Magnetic levitation system. PDC method is based on nonlinear Takagi-Sugeno (T-S) fuzzy model. It is shown that this technique can be successfully used to stabilize any chosen operating point of the system. All derived results are validated by experimental and computer simulation of a nonlinear mathematical model of the system. The controllers which introduced have big range for control the system.
Authors and Affiliations
Milad Gholami, Zohreh Alzahra Sanai Dashti, Masoud Hajimani
Brain Emotional Learning Based Intelligent Controller for Velocity Control of an Electro Hydraulic Servo System
In this paper, a biologically motivated controller based on mammalian limbic system called Brain Emotional Learning Based Intelligent Controller (BELBIC) is used for velocity control of an Electro Hydraulic Servo System...
Analysis and comparison of different PV technologies for determining the optimal PV panels- A case study in Mohammedia , Morocco.
This study focuses on the analysis and comparison of three different photovoltaic technologies of silicon module: Amorphous silicon (a-Si), polycrystalline silicon (pc-Si) and monocrystalline silicon (mc-si) with 2 KWp f...
Optimal location of capacitors and capacitor sizing in a radial distribution system using Stud krill herd Algorithm
his paper presents a new meta-heuristic technique, Stud Krill Herd Algorithm (SKHA) for solving capacitor placement problem in radial distribution system (RDS). The algorithm predicted the optimal size of the capacitors...
The Main Preparation Methods of Gan Films
Wide band-gap semiconductor materials have many properties such as the big forbidden band width, high thermal conductivity, high dielectric strength, low dielectric constant, high electron velocity (saturated speed). In...
Ant Lion Optimization for Dynamic Economic Dispatch
In this paper, Ant Lion Optimization (ALO) is presented to solve the dynamic economic dispatch (DED) problem considering valve-point effects, the ramp rate limits and transmission losses. The practical DED problems have...