DocumentCode :
59861
Title :
Tuning of Synchronous-Frame PI Current Controllers in Grid-Connected Converters Operating at a Low Sampling Rate by MIMO Root Locus
Author :
Freijedo, Francisco D. ; Vidal, Ana ; Yepes, Alejandro G. ; Guerrero, Josep M. ; Lopez, Oscar ; Malvar, Jano ; Doval-Gandoy, Jesus
Author_Institution :
Dept. of Energy Technol., Aalborg Univ., Aalborg, Denmark
Volume :
62
Issue :
8
fYear :
2015
fDate :
Aug. 2015
Firstpage :
5006
Lastpage :
5017
Abstract :
Current controller performance is key in grid-connected power converters for renewable energy applications. In this context, a challenging scenario is arising in multi-megawatt wind turbines, where sampling and switching frequencies tend to be lower and lower as power ratings increase. This strongly affects achievable control time constant. With this perspective, this paper presents a systematic procedure for accurate dynamics assessment and tuning of synchronous-frame proportional-integral current controllers, which is based on linear control for multiple-input-multiple-output (MIMO) systems. The dominant eigenvalues of the system are calculated with explicit consideration of time-delay and cross-coupling terms, two factors which clearly impair the system dynamics when considering a low sampling frequency. The proposed methodology is summarized as follows. First, the plant and controller matrices are modeled in state space. Subsequently, the characteristic polynomial of the closed-loop system is obtained and a computer-aided parametric analysis is performed to calculate the MIMO root locus as a function of the control gain. By its inspection, it is possible to identify the gain, which minimizes the current closed-loop time constant. This tuning is suitable for wind turbine applications, taking into consideration cascaded-control structures and grid-code requirements. The validity and accuracy of the analysis is fully supported by experimental verification.
Keywords :
PI control; closed loop systems; eigenvalues and eigenfunctions; electric current control; polynomials; power convertors; power grids; wind turbines; MIMO root locus; cascaded-control structures; characteristic polynomial; closed-loop system; computer-aided parametric analysis; control time constant; current closed-loop time constant; eigenvalues; grid-code requirements; grid-connected power converters; linear control; multimegawatt wind turbines; multiple-input-multiple-output systems; power ratings; renewable energy applications; sampling frequencies; state space; switching frequencies; synchronous-frame PI current controllers; synchronous-frame proportional-integral current controllers; Approximation methods; Bandwidth; Couplings; Delays; Eigenvalues and eigenfunctions; MIMO; Tuning; AC/DC power conversion; Ac/dc power conversion; current control; pulse width modulation converters; pulsewidth modulation (PWM) converters; wind power generation; wind power generation.;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2015.2402114
Filename :
7036121
Link To Document :
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