Using the sliding-mode control approach for analysis and design of the boost inverter

被引:43
作者
Flores-Bahamonde, Freddy [1 ]
Valderrama-Blavi, Hugo [2 ]
Maria Bosque-Moncusi, Josep [2 ]
Garcia, Germain [3 ]
Martinez-Salamero, Luis [2 ]
机构
[1] Univ Tecn Federico Santa Maria, AC3E, Valparaiso, Chile
[2] Rovira & Virgili Univ, Dept Elect Elect & Automat Control Engn, Tarragona, Spain
[3] CNRS, LAAS, Methods & Algorithms Control, Toulouse, France
关键词
invertors; control system synthesis; variable structure systems; cascade control; root loci; PI control; compensation; sliding-mode control approach; boost inverter; cascade control strategy; power; 500; W; analytical predictions; PI compensator; transfer function; grid frequency; sinusoidal variations; zero reference; loop reference; equilibrium point; capacitor voltages; root locus; equivalent control method; external sinusoidal signal; power stage; internal loop; PHOTOVOLTAIC SYSTEMS; CONVERTER; STRATEGY;
D O I
10.1049/iet-pel.2015.0608
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A cascade control strategy is employed in the boost inverter to generate a sinusoidal signal at grid frequency with very low distortion. The internal loop of the cascade employs a switching surface based on the difference of the inductor currents to induce sliding motions in the power stage. The outer loop in turn establishes the reference of the internal loop and ensures the tracking of an external sinusoidal signal at 50 Hz. The reported approach is analytical and is based on the equivalent control method. The root locus of the capacitor voltages at the equilibrium point of the inner loop is obtained assuming a constant value of the loop reference. In the particular case of a zero reference, sinusoidal variations at grid frequency are superposed to the corresponding equilibrium point and the resulting ideal dynamics are linearised yielding the control to output transfer function of the system. A proportional-integral (PI) compensator is designed for both large bandwidth and small phase error. Experimental results in a 500 W prototype are in perfect agreement with the analytical predictions.
引用
收藏
页码:1625 / 1634
页数:10
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