Zhu Zhen, Zhang Yihan, Zhang Hongwei, Wang Dehai, Chen Long
Automotive Engineering Research Institute, Jiangsu University, Zhenjiang, 212013, Jiangsu, China.
National Key Laboratory of Special Vehicle Design and Manufacturing Integration Technology, Baotou, 014030, Inner Mongolia, China.
Sci Rep. 2024 Jun 5;14(1):12911. doi: 10.1038/s41598-024-63770-w.
Due to the increase in emission requirements for non-road vehicles in many countries and the reduction of agricultural personnel, tractors are developing towards high horsepower and electrification. According to the working conditions of high-horsepower tractors, a hydromechanical continuously variable transmission (HMCVT) is designed for hybrid tractors. Taking a tractor equipped with this transmission as the research object, an equivalent factor global optimization model was established and a genetic algorithm was used to optimize the equivalent factor S offline to obtain the optimal equivalent factor of the tractor under different operating mileage and the initial state of charge (SOC) of battery. By using the optimized equivalent factor, the tractor can be in the charge depleting (CD) mode for a longer time on the premise of making full use of the energy in the battery, so as to improve the auxiliary ability of the motor in the whole operation cycle to reduce the fuel consumption of the tractor. The effectiveness of the control strategy is verified by MATLAB/Simulink and hardware in the loop (HIL) tests, and the fuel economy of tractors is improved by 2.939% and 3.909% respectively in the two tests.
由于许多国家对非道路车辆排放要求的提高以及农业人员的减少,拖拉机正朝着高马力和电动化方向发展。根据高马力拖拉机的工况,为混合动力拖拉机制设计了一种液压机械无级变速器(HMCVT)。以配备这种变速器的拖拉机为研究对象,建立了等效因子全局优化模型,并采用遗传算法对等效因子S进行离线优化,以获得拖拉机在不同行驶里程和电池初始荷电状态(SOC)下的最优等效因子。通过使用优化后的等效因子,拖拉机能够在充分利用电池能量的前提下,更长时间地处于电量消耗(CD)模式,从而提高电机在整个运行周期中的辅助能力,降低拖拉机的燃油消耗。通过MATLAB/Simulink和硬件在环(HIL)测试验证了控制策略的有效性,在这两项测试中拖拉机的燃油经济性分别提高了2.939%和3.909%。