DocumentCode :
1885890
Title :
An efficient speed control method for two mass drive systems using ADALINE
Author :
Nandana, J. ; Anas, A.S.
Author_Institution :
Dept. of Electron. & Commun. Eng., TKM Inst. of Technol., Kollam, India
fYear :
2015
fDate :
6-8 May 2015
Firstpage :
418
Lastpage :
423
Abstract :
An industrial two mass system is composed of a motor which is connected to the load machine through a shaft. Sometimes the shaft may be stiff, but in applications such as rolling mill drives, robotic arms, conveyor belts etc., the shaft is elastic. These elastic joints are susceptible to angular vibrations called torsional vibrations that limit the performance of industrial drives. Due to this the motor speed may be different from the load speed. To solve this problem speed controllers are used which will adjust the load speed and the motor speed with that of the reference speed. Fuzzy logic controllers and PI controllers were used earlier. The limitation of these controllers is the lack of analytical tuning. In recent years, neural network have been applied for the control of two mass systems. Adaptive Linear Neuron (ADALINE) based speed controller with an efficient adaptation algorithm can be used to stabilize the two mass drive systems. The control signal to be applied to the two mass system is generated by the ADALINE controller which updates its weight value on demand. The design of modules can be done in Xilinx System Generator. System generator enables the use of MATLAB/Simulink for simulating the designed modules. It also enables the user to create user defined blocks. The modules that are designed in System Generator can be implemented in FPGA. The work is further extended by modifying the linear activation function present in the ADALINE module by non linear activation function.
Keywords :
PI control; adaptive control; belts; conveyors; drives; field programmable gate arrays; fuzzy control; linear systems; machine control; neurocontrollers; transfer functions; velocity control; ADALINE based speed controller; ADALINE controller; ADALINE module; FPGA; PI controller; Xilinx system generator; adaptation algorithm; adaptive linear neuron based speed controller; analytical tuning; angular vibration; control signal; conveyor belt; fuzzy logic controller; industrial drive; industrial two mass system; load machine; load speed; motor speed; neural network; nonlinear activation function; reference speed; robotic arm; rolling mill drive; speed control method; torsional vibration; two mass drive system; Algorithm design and analysis; Generators; Neurons; Oscillators; Shafts; Software packages; Vibrations; ADALINE; Matlab/Simulink; Xilinx system generator; activation function; adaptation algorithm; two mass systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Smart Technologies and Management for Computing, Communication, Controls, Energy and Materials (ICSTM), 2015 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4799-9854-8
Type :
conf
DOI :
10.1109/ICSTM.2015.7225453
Filename :
7225453
Link To Document :
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