线控转向车辆转向电机的节能策略

Huiyong Zhao, Zhang Guangde, Wang Baohua, He Yuping, Lin Zhao
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引用次数: 2

摘要

在转向过程中,线控转向(SBW)车辆的转向电机消耗能量。为了便于进行能源效率分析,转向电机的能源消耗分为两部分,分别对应于变化和恒定的方向盘角度操作条件。前一种情况是车辆操作操纵,其中方向盘角度连续变化,而后一种情况则是恒定半径圆曲线通过,其中方向轮角度保持恒定。分析了方向盘转角与道路曲率的关系,提出了SBW汽车转向电机的节能策略。节能策略的特点是有一个概念,一个液压机械锁定装置和一个SBW控制器用于转向电机单元。通过闭环仿真验证了节能策略的可行性和有效性。为了实现闭环仿真,我们将CarSim软件中生成的驾驶员、车辆和弯道模型与Matlab/Simulink中开发的转向电机模型和SBW控制器相结合。
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An energy-saving strategy for steering-motors of steer-by-wire vehicles
In a steering process, the steering-motor of a steer-by-wire (SBW) vehicle consumes energy. To facilitate energy efficiency analyses, the steeringmotor energy consumption is split into two parts, which correspond to varied and constant steering-wheel angle operating condition, respectively. The former condition is a vehicle operational manoeuvre, in which steering-wheel angle varies continuously, whereas the latter is a constant-radius circular-curve negotiation, in which steering-wheel angle maintains constant. Analysing the relation of steering-wheel angle with a road curvature, we propose an energysaving strategy for steering-motors of SBW vehicles. The energy-saving strategy is featured with a concept, a hydro-mechanical locking device, and an SBW controller for the steering-motor unit. The feasibility and effectiveness of the energy-saving strategy is demonstrated using closed-loop simulations. To implement the closed-loop simulation, we combine the driver, vehicle, and curved road models generated in CarSim software with the steering-motor model and the SBW controller developed in Matlab/Simulink.
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来源期刊
International Journal of Vehicle Performance
International Journal of Vehicle Performance Engineering-Safety, Risk, Reliability and Quality
CiteScore
2.20
自引率
0.00%
发文量
30
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