TY - JOUR
T1 - Finite Control Set Model Predictive Control for Dual Active Bridge converter
AU - Tarisciotti, Luca
AU - Chen, Linglin
AU - Shao, Shuai
AU - Dragicevic, Tomislav
AU - Wheeler, Patrick
AU - Zanchetta, Pericle
N1 - Publisher Copyright:
IEEE
PY - 2021
Y1 - 2021
N2 - Dual Active Bridge is often considered in many DC/DC converter applications where high efficiency, input/output voltage ratio and power level are required. Recently a predictive control technique, named Moving Discretized Control Set - Model Predictive Control has been introduced, in order to achieve faster dynamics and stable operation throughout the power and terminal voltage ranges, considering global control parameters. However, even if this technique provides flexible multi-objective control, its large signal stability remains in questions. In this paper, the proposed control design is described in details and its large signal stability is analyzed, considering the case of a Dual Active Bridge converter operating in single phase shift. The obtained results show insights into factors that stabilize or destabilize the converter operation. The proposed control and stability analysis is validated through both simulation and experimental testing.
AB - Dual Active Bridge is often considered in many DC/DC converter applications where high efficiency, input/output voltage ratio and power level are required. Recently a predictive control technique, named Moving Discretized Control Set - Model Predictive Control has been introduced, in order to achieve faster dynamics and stable operation throughout the power and terminal voltage ranges, considering global control parameters. However, even if this technique provides flexible multi-objective control, its large signal stability remains in questions. In this paper, the proposed control design is described in details and its large signal stability is analyzed, considering the case of a Dual Active Bridge converter operating in single phase shift. The obtained results show insights into factors that stabilize or destabilize the converter operation. The proposed control and stability analysis is validated through both simulation and experimental testing.
KW - Bridge circuits
KW - Dual Active Bridge
KW - Frequency conversion
KW - Isolated DC/DC power converter
KW - Model Predictive Control (MPC)
KW - Modulation
KW - Predictive control
KW - Switches
KW - Transformers
KW - Voltage control
UR - http://www.scopus.com/inward/record.url?scp=85121805836&partnerID=8YFLogxK
U2 - 10.1109/TIA.2021.3135373
DO - 10.1109/TIA.2021.3135373
M3 - Article
AN - SCOPUS:85121805836
JO - IEEE Transactions on Applications and Industry
JF - IEEE Transactions on Applications and Industry
SN - 0093-9994
ER -