Paper Title :Analysis Of Speed Estimation Of Two Mass Drive Systems Using PID Controller By Matlab And Model SIM
Author :Mukesh Kumar Tripathi, Pankaj Agarwal
Article Citation :Mukesh Kumar Tripathi ,Pankaj Agarwal ,
(2016 ) " Analysis Of Speed Estimation Of Two Mass Drive Systems Using PID Controller By Matlab And Model SIM " ,
International Journal of Electrical, Electronics and Data Communication (IJEEDC) ,
pp. 7-12,
Volume-4,Issue-5
Abstract : This paper is a research work summary on two mass drive system speed estimation using different types of
controllers readily available in software as well as in hardware. The complete analysis begins with a basic idea behind the
block diagram modeling presented in early papers related to two mass modeling. After the closed loop diagram
implementation, another novelty has been proposed identified with controllers in the complete demonstrating. Two different
error reduction controllers namely PI and PID in discrete form as a controller are taken for speed synchronization of two
drives. The time constant taken for drive 2 is 203e-3 and 406e-3, similarly for drive 1 the time constant 203e-3. After
repeated experiment in MATLAB and SIMULINK by taking one additional parameters namely resonance frequency as wr=
30s-1 and wr = 40s-1. Another imperative point is the complete experiment is partially taken on verilog HDL using MATLAB
HDL verifier. The discrete controllers are converted to HDL block and then these blocks replaces actual simulation block of
PI and PID controller. The experiments done MATLAB/SIMULINK and then a hybrid experiment using
MATLAB/SIMULINK with modelsim shows a good level of accuracy of speed estimation between two drives. Thus
conclusion of this research paper is that PID controller is performing better than PI controller. Error achieved with PI is
approximately -24.29 similarly with PID is -.00545 and modelsim PID is -.0025.
Keywords- PI Controller , PID Controller, Drive System.
Type : Research paper
Published : Volume-4,Issue-5
DOIONLINE NO - IJEEDC-IRAJ-DOIONLINE-4507
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Published on 2016-05-25 |
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