A Model Predictive Control Method for Bidirectional Interfacing Converters in Hybrid AC/DC Microgrids[J]. 2018, 52(12): 38-43+105.
DOI:
A Model Predictive Control Method for Bidirectional Interfacing Converters in Hybrid AC/DC Microgrids[J]. 2018, 52(12): 38-43+105.DOI: 10.7652/xjtuxb201812006.
A Model Predictive Control Method for Bidirectional Interfacing Converters in Hybrid AC/DC Microgrids
A model predictive control strategy is proposed to solve the inevitable DC voltage oscillation
inaccuracy phase information of positive voltage
unclear calculation of the active and reactive power of the bidirectional interfacing converters in three-phase unbalanced condition. Firstly
an instantaneous power vector predictive model is built by using instantaneous voltage and current vector to omit the phase-lock-loop and to avoid the effect of inaccurate voltage phase detection; Secondly
power references are designed for the real and imaginary components of the power vector
respectively
to restrain the double-frequency power caused by the negative sequence component and to eliminate the DC voltage oscillation; Finally
objective functions are designed for the real and the imaginary components of power vector
respectively
to avoid the interaction between them
and a switching frequency limitation part is included in objective functions to make the switching frequency tunable. Simulation and experimental results show that the active power is not influenced by the change of reactive power. A comparison with the traditional PWM method shows that the proposed method reduces the overshoot of active power by about 74%
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