This paper presents a method of designing optimal integer- and fractional-order proportional-integral-derivative (FOPID) controllers for a boost converter to gain a set of favorable characteristics at various operating points. A Pareto-based multi-objective optimization approach called strength Pareto evolutionary algorithm (SPEA) is used to obtain fast and low overshoot start-up and dynamic responses and switching stability.The proposed optimized FOPID controller provides an excellent start-up response and the desired dynamic response. This paper presents a detailed comparison of the optimum integer- and the fractional-order PID controllers. Extensive simulation and experimental results prove the superiority of the proposed design methodology to achieve a wide set of desired technical goals.
Optimum design of integer and fractional-order PID controllers for boost converter using SPEA look-up tables / A., Amirahmadi; M., Rafiei; K., Tehrani; Griva, Giovanni Battista; I., Batarseh. - In: JOURNAL OF POWER ELECTRONICS. - ISSN 1598-2092. - ELETTRONICO. - 15:1(2015), pp. 160-176. [10.6113/JPE.2015.15.1.160]
Optimum design of integer and fractional-order PID controllers for boost converter using SPEA look-up tables
GRIVA, Giovanni Battista;
2015
Abstract
This paper presents a method of designing optimal integer- and fractional-order proportional-integral-derivative (FOPID) controllers for a boost converter to gain a set of favorable characteristics at various operating points. A Pareto-based multi-objective optimization approach called strength Pareto evolutionary algorithm (SPEA) is used to obtain fast and low overshoot start-up and dynamic responses and switching stability.The proposed optimized FOPID controller provides an excellent start-up response and the desired dynamic response. This paper presents a detailed comparison of the optimum integer- and the fractional-order PID controllers. Extensive simulation and experimental results prove the superiority of the proposed design methodology to achieve a wide set of desired technical goals.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2595157