School of Mechanical Engineering, Beijing Institute of Technology, Beijing, China.
Low Emission Vehicle Research Beijing Key Laboratory, Beijing Institute of Technology, Beijing, China.
PLoS One. 2023 Nov 20;18(11):e0292510. doi: 10.1371/journal.pone.0292510. eCollection 2023.
Hybrid tractors (HT) are regarded as the efficient agricultural machine due to their energy conservation performance and faster torque response to deal with load fluctuations. However, the strategy to allocate the battery and fuel energy for demand power should be discussed. In this paper, an on-line management strategy of the HT is proposed to optimize the energy consumption of engine and motor and to reduce torque ripple for power units. A new architecture for replacing power shift and continuously variable transmission technology is proposed. Then, the modified equivalent consumption minimization strategy (ECMS) is used to optimize the torque distribution in which the equivalent factor is further calculated for the real-time process. Besides, the modification of ECMS in variable working conditions can effectively analyse the torque distribution between the motor and engine. The numerical test is implemented that the effectiveness of the proposed energy strategy is validated in plowing conditions. The consequences indicated that the proposed power distribution strategy can adaptively allocate the torque demand according to the fluctuation load. Comparing with the traditional rule-based strategy, the proposed strategy can reduce 6.2% of the energy, and decrease torque ripple with the proposed tractor architecture.
混合动力拖拉机(HT)因其节能性能和更快的扭矩响应能力,可快速应对负载波动,被认为是高效的农业机械。然而,仍需探讨用于分配电池和燃料能量以满足需求功率的策略。本文提出了一种 HT 的在线管理策略,以优化发动机和电机的能耗,并降低动力单元的扭矩纹波。提出了一种替代动力换挡和无级变速器技术的新型架构。然后,使用改进的等效消耗最小化策略(ECMS)来优化扭矩分配,其中等效因子进一步针对实时过程进行计算。此外,ECMS 在变工况下的修改可以有效地分析电机和发动机之间的扭矩分配。在犁地条件下进行了数值测试,验证了所提出的能量策略的有效性。结果表明,所提出的功率分配策略可以根据波动的负载自适应地分配扭矩需求。与传统的基于规则的策略相比,所提出的策略可以减少 6.2%的能量,并且减小了所提出的拖拉机架构的扭矩纹波。