PID-CONTROLLER SYNTHESIS SOFTWARE FOR THE STABILIZATION SYSTEM OF THE INERTIAL CONTROL OBJECT
DOI:
https://doi.org/10.18372/1990-5548.63.14520Keywords:
Inertial object, stabilization system, step response, PID-controller, correction appliance, Python, Control Systems LibraryAbstract
Reviewed software creation method for the selection an optimum regulator for the stabilization system of the inertial control object. PID-controller synthesis software implemented by Python and it`s libraries: SciPy, NumPy and Control Systems Library. Schematic decisions of regulators and correction devices for stabilization systems may be different: P, PI, PD, PID. The first three options can be generally obtained by applying restrictions on the PID-model. The exact adjustment of the PID-controller parameters significantly reduces system fluctuations. The full use of the PID-controller advantages is only provided with the correct calculation of these parameters, taking into account the unique characteristics of the controlled objects. At the same time, it is important to have a mechanism (program) for coefficients controlling that would provide a convenient interface between the program and the user.
References
O. K. Ablesimov, E. E. Alexandrov, and I. E. Alexandrova, Automatic control of moving objects and technological processes. Kharkov: NTU “KhPI”, 2008, 443 p. (in Ukrainian).
C. Phillips and R. Harbor, Feedback Control Systems. Moskow: Laboratoriya Bazovykh Znaniy, 2001, 616 p. (in Russian).
A. K. Ablesimov and M. A. Pylypenko, “The optimum regulator for the nonlinear stabilization system of the inertial control object,” Electronics and control systems. Kyiv: NAU, no. 1(55), pp. 29–35, 2018. https://doi.org/10.18372/1990-5548.55.12747
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