TY - JOUR
T1 - Model Predictive Control of DC-DC Converters to Mitigate the Effects of Pulsed Power Loads in Naval DC Microgrids
AU - Mardani, Mohammad Mehdi
AU - Khooban, Mohammad Hassan
AU - Masoudian, Ali
AU - Dragicevic, Tomislav
PY - 2019/7
Y1 - 2019/7
N2 - This paper proposes the design of optimal and robust coordinated controller of hybrid energy storage system in a naval dc microgrid (MG) application. It is able to mitigate the negative effects of the pulsed power loads and meet the practical limitations of both converters input control and state variables signals based on IEEE standards. To do this, first, the dynamic model of the dc MG, which can represent in either all-electric aircraft or shipboard power systems, is developed. Second, a novel model predictive controller (MPC) for energy storage converters is proposed such that all of the mentioned hard constraints are guaranteed. Third, a linear matrix inequality approach is used to solve the MPC conditions. Finally, to evaluate the applicability and effectiveness of the proposed approach, some experimental tests are extracted. Obtained results verify better performance of the proposed approach over other state-of-the-art control techniques.
AB - This paper proposes the design of optimal and robust coordinated controller of hybrid energy storage system in a naval dc microgrid (MG) application. It is able to mitigate the negative effects of the pulsed power loads and meet the practical limitations of both converters input control and state variables signals based on IEEE standards. To do this, first, the dynamic model of the dc MG, which can represent in either all-electric aircraft or shipboard power systems, is developed. Second, a novel model predictive controller (MPC) for energy storage converters is proposed such that all of the mentioned hard constraints are guaranteed. Third, a linear matrix inequality approach is used to solve the MPC conditions. Finally, to evaluate the applicability and effectiveness of the proposed approach, some experimental tests are extracted. Obtained results verify better performance of the proposed approach over other state-of-the-art control techniques.
KW - Control of DC-DC converters
KW - Model predictive control (MPC)
KW - Naval dc microgrid (MG)
KW - Pulsed power loads (PPLs)
UR - http://www.scopus.com/inward/record.url?scp=85055691573&partnerID=8YFLogxK
U2 - 10.1109/TIE.2018.2877191
DO - 10.1109/TIE.2018.2877191
M3 - Journal article
SN - 0278-0046
VL - 66
SP - 5676
EP - 5685
JO - I E E E Transactions on Industrial Electronics
JF - I E E E Transactions on Industrial Electronics
IS - 7
M1 - 8511074
ER -