Title :
Optimal Control of Hybrid Electric Vehicles Based on Pontryagin´s Minimum Principle
Author :
Kim, Namwook ; Cha, Sukwon ; Peng, Huei
Author_Institution :
Sch. of Mech. & Aerosp. Eng., Seoul Nat. Univ., Seoul, South Korea
Abstract :
A number of strategies for the power management of hybrid electric vehicles (HEVs) are proposed in the literature. A key challenge is to achieve near-optimality while keeping the methodology simple. The Pontryagin´s minimum principle (PMP) is suggested as a viable real-time strategy. In this brief, the global optimality of the principle under reasonable assumptions is described from a mathematical viewpoint. Instantaneous optimal control with an appropriate equivalent parameter for battery usage is shown to be possibly a global optimal solution under the assumption that the internal resistance and open-circuit voltage of a battery are independent of the state-of-charge (SOC). This brief also demonstrates that the optimality of the equivalent consumption minimization strategy (ECMS) results from the close relation of ECMS to the optimal-control-theoretic concept of PMP. In static simulation for a power-split hybrid vehicle, the fuel economy of the vehicle using the control algorithm proposed in this brief is found to be very close-typically within 1%-to the fuel economy through global optimal control that is based on dynamic programming (DP).
Keywords :
battery powered vehicles; dynamic programming; fuel economy; hybrid electric vehicles; maximum principle; road vehicles; secondary cells; ECMS; HEV; Pontryagin minimum principle; SOC; dynamic programming; equivalent consumption minimization strategy; fuel economy; hybrid electric vehicles; instantaneous optimal control; open-circuit voltage; power management; power-split hybrid vehicle; road vehicle control; state-of-charge; Dynamic programming; Fuel economy; Hybrid electric vehicles; Optimal control; Trajectory; Cost optimal control; Pontryagin maximum principle; dynamic programming (DP); fuel optimal control; road vehicle control;
Journal_Title :
Control Systems Technology, IEEE Transactions on
DOI :
10.1109/TCST.2010.2061232