A Multi-Object Optimal Control Strategy for a Parallel Hybrid Power System in Hydraulic Excavators[J]. 2016, 50(6): 116-121.
DOI:
A Multi-Object Optimal Control Strategy for a Parallel Hybrid Power System in Hydraulic Excavators[J]. 2016, 50(6): 116-121.DOI: 10.7652/xjtuxb201606018.
A Multi-Object Optimal Control Strategy for a Parallel Hybrid Power System in Hydraulic Excavators
A novel optimal torque control allocation strategy for the control of the power system that consists of the DC motor/generator and the diesel engine is proposed to improve the energy efficiency and to decrease the torque amplitude of variation for a parallel hybrid power system with an energy regenerator by capacitor for hydraulic excavator. Two work areas with different rotate speeds are built based on load forces. Curve fitting is used to model the character between the torque and the energy efficiency
and a penalty function is built to decrease torque range
then multi-object optimal cost functions are put forward. Experiments are performed by simulation program on a simulated experiment platform. The results and a comparison with the constant torque strategy show that the proposed strategy decreases the torque amplitude of variation by 37.9%
the whole energy by 8.74%
and the fuel consumption by 8.9%. It can be concluded that the new strategy improves the energy consumption
the fuel consumption and the impact on mechanics system caused by torque range.
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references
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