scholarly journals Cutting torque stabilization system synthesis of the shearer loader with a fuzzy controller

Author(s):  
Gennadii I. Babokin ◽  
◽  
Dmitrii M. Shprekher ◽  
Evgenii B. Kolesnikov ◽  
◽  
...  
2020 ◽  
Vol 21 (7) ◽  
pp. 428-438
Author(s):  
A. I. Diveev ◽  
E. Yu. Shmalko ◽  
O. Hussein

The paper presents a solution to the problem of optimal control of a quadrocopter under phase constraints by the numerical method of a network operator based on multi-point stabilization. According to this approach, the task of control system synthesis is initially solved. As a result, the quadrocopter is stabilized with respect to a certain point in the state space. At the second stage, a sequence of stabilization points is searched in the state space such that switching the stabilization points at fixed times ensures the movement of the quadrocopter from the initial state to the terminal state with an optimal value of the quality criterion taking into account phase constraints. To solve the problem of stabilization system synthesis, the network operator method is used. The method is numerical and, unlike the well-known analytical methods, allows to synthesize a control system automatically without a specific analysis of the right parts of the model. The method allows to find the structure and parameters of a mathematical expression in the encoded form using the genetic algorithm. The network operator code is an integer upper-triangular matrix. At the stage of solving the synthesis problem, the mathematical model of quadrocopter motion is decomposed into angular and spatial motions in order to separate control components for angular and spatial motions, respectively. The synthesized stabilization system consists of two subsystems connected in series for spatial and angular motion. As controls for spatial motion, moments around the axes and the total thrust of all quadcopter propellers were used. And the inputs for the angular motion stabilization system are the desired angles of inclination of the quadrocopter. The stabilization problem is considered as a general synthesis task for a control system. Using the network operator method, one control function is searched that provides stabilization of the object at a given point in the considered state space from the set of initial conditions. At the stage of the search for equilibrium points, the evolutionary particle swarm algorithm is used. A numerical example of solving the problem of optimal control of a quadrocopter with four phase constraints is given.


Author(s):  
Gérard Lachiver ◽  
◽  
Saïd Berriah

A scale model of a bicycle equipped with a stabilization system was developed in the Mechatronics laboratory of the Department of Electrical Engineering and Computer Engineering of the Universite de Sherbrooke. Firstly, a proportional integral automatic control with adjusted gain was developed to make possible the riding of a bicycle using a remote control. Secondly, an intelligent control architecture based on a fuzzy controller was developed to make the bicycle stable and duplicate a human rider.


2020 ◽  
Vol 88 ◽  
pp. 106837
Author(s):  
Ravindra Singh ◽  
Shahida Khatoon ◽  
Himanshu Chaudhary ◽  
Ashish Pandey ◽  
M. Hanmandlu

2020 ◽  
Vol 224 ◽  
pp. 01013
Author(s):  
V Lubentsov ◽  
E Shakhrai ◽  
E Lubentsova

The solution of the problem concerning the control system synthesis with a fuzzy controller on the basis of typical nonlinear analytical approximation characteristics with continuous differentiable functions like sigmoid type has been considered. A method of synthesis which is based on the fact that the rulebase and membership function are formed by the way of comparing the control or corrective impacts of the fuzzy controller (prototype) or a controller with approximating control (CAC) has been suggested for problem solving. For the CAC construction the closest coincidence of graphically installed controllers’ impacts are taken. This makes it possible to exclude subjective errors connecting with a possible non-representative ruleset for the rulebase forming. The result of the work is to obtain a new class of controllers based on the approximating continuous functions, which are simpler for constructing multi-mode control systems. The practical significance lies in the fact, that the tuning of the fuzzy controller based on the analytical continuous approximation of the typical nonlinear elements’ characteristics comes down to two basic parameters: the coefficient that determines the curvature (slope) of the characteristic in the transit mode and the parameter that determines the control impact value in the static mode. The advantage of this smooth characteristic in relation to the piecewise linear approximation is that there is no need to determine the moments (points) of switching nonlinear characteristics during the system operation.


2009 ◽  
Vol 24 (05) ◽  
pp. 1048-1056 ◽  
Author(s):  
NATALIA A. ZHABKO

Some ideas concerning the application of methods of H-optimization theory in practice are discussed in this work. The problem of plasma current and shape stabilization system synthesis in tokamak ITER is considered as an application of discussed ideas.


Sign in / Sign up

Export Citation Format

Share Document