Robust design of phase-locked loops in grid-connected power converters

被引:1
作者
Mathew, Riya [1 ]
Rueda-Escobedo, Juan G. [2 ]
Schiffer, Johannes [1 ,3 ]
机构
[1] Brandenburg Univ Technol Cottbus Senftenberg BTU C, Control Syst & Network Control Technol Grp, Siemens Halske Ring 14, D-03046 Cottbus, Germany
[2] Univ Nacl Autonoma Mexico, Fac Ingn, Div Ciencias Basicas, Av Univ 3000, Mexico City 04510, Mexico
[3] Fraunhofer Res Inst Energy Infrastruct & Geotherma, Fraunhofer IEG, Gulbener Str 23, D-03046 Cottbus, Germany
关键词
Electrical power systems; Power electronics; LMI's; BMI's; SYNCHRONIZATION STABILITY; OUTPUT-FEEDBACK; PLL; SYSTEMS; INERTIA;
D O I
10.1016/j.ejcon.2024.101055
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Phase-locked loop (PLL) algorithms are key elements for the successful integration of converter-interfaced renewable energy sources to the grid. Their main task is to estimate the phase angle of the terminal grid voltage with the aim to keep the converter output current synchronized to it. Yet, due to the increasing penetration of power-electronics-interfaced devices in power systems, the grid voltage signal becomes increasingly disturbed, making the reliable phase estimation a highly demanding task. To address this challenge, we present a robust design method based on matrix inequalities to tune the PLL gains, such that the estimation errors remain bounded in the presence of additive disturbances. Our design approach is formulated as a set of bilinear matrix inequalities (BMIs), which we then propose to solve using the P-K iteration method. This results in a convex problem to be solved at each step. Finally, the benefits of the proposed robust design are illustrated via a numerical example.
引用
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页数:6
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