Title :
Real-Time Model Predictive Control for Shipboard Power Management Using the IPA-SQP Approach
Author :
Hyeongjun Park ; Jing Sun ; Pekarek, Steven ; Stone, Philip ; Opila, Daniel ; Meyer, Richard ; Kolmanovsky, Ilya ; DeCarlo, Raymond
Author_Institution :
Dept. of Aerosp. Eng., Univ. of Michigan, Ann Arbor, MI, USA
Abstract :
Shipboard integrated power systems, the key enablers of ship electrification, call for effective power management control (PMC) to achieve optimal and reliable operation in dynamic environments under hardware limitations and operational constraints. The design of PMC can be treated naturally in a model predictive control (MPC) framework, where a cost function is minimized over a prediction horizon subject to constraints. The real-time implementation of MPC-based PMC, however, is challenging due to computational complexity of the numerical optimization. In this paper, an MPC-based PMC for a shipboard power system is developed and its real-time implementation is investigated. To meet the requirements for real-time computation, an integrated perturbation analysis and sequential quadratic programming (IPA-SQP) algorithm is applied to solve a constrained MPC optimization problem. Several operational scenarios are considered to evaluate the performance of the proposed PMC solution. Simulations and experiments show that real-time optimization, constraint enforcement, and fast load following can be achieved with the IPA-SQP algorithm. Different performance attributes and their tradeoffs can be coordinated through proper tuning of the design parameters.
Keywords :
marine power systems; power control; predictive control; quadratic programming; IPA-SQP approach; MPC; PMC; cost function; integrated perturbation analysis; power management control; real-time model predictive control; sequential quadratic programming; ship electrification; shipboard integrated power systems; shipboard power management; Algorithm design and analysis; Marine vehicles; Optimization; Perturbation methods; Power system dynamics; Predictive control; Real-time systems; Integrated perturbation analysis and sequential quadratic programming (IPA-SQP); integrated power system (IPS); model predictive control (MPC); power management control (PMC); real-time optimization; real-time optimization.;
Journal_Title :
Control Systems Technology, IEEE Transactions on
DOI :
10.1109/TCST.2015.2402233