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Design of a Load Torque Based Control Strategy for Improving Electric Tractor Motor Energy Conversion Efficiency

机译:基于负载扭矩控制策略的设计改善电动拖拉机电机能量转换效率

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摘要

In order to improve the electrical conversion efficiency of an electric tractor motor, a load torque based control strategy (LTCS) is designed in this paper by using a particle swarm optimization algorithm (PSO). By mathematically modeling electric-mechanical performance and theoretical energy waste of the electric motor, as well as the transmission characteristics of the drivetrain, the objective function, control relationship, and analytical platform are established. Torque and rotation speed of the motor’s output shaft are defined as manipulated variables. LTCS searches the working points corresponding to the best energy conversion efficiency via PSO to control the running status of the electric motor and uses logic and fuzzy rules to fit the search initialization for load torque fluctuation. After using different plowing forces to imitate all the common tillage forces, the simulation of traction experiment is conducted, which proves that LTCS can make the tractor use electrical power efficiently and maintain agricultural applicability on farmland conditions. It provides a novel method of fabricating a more efficient electric motor used in the traction of an off-road vehicle.
机译:为了提高电拖拉机电动机的电转换效率,通过使用粒子群优化算法(PSO),在本文中设计了一种基于负载扭矩的控制策略(LTC)。通过数学建模电动机的电力性能和理论能量浪费,以及传动系统的传动特性,目标函数,控制关系和分析平台。电机输出轴的扭矩和转速被定义为操纵变量。 LTCS搜索对应于通过PSO的最佳能量转换效率对应的工作点来控制电动机的运行状态,并使用逻辑和模糊规则来适应负载扭矩波动的搜索初始化。在使用不同的耕作以模仿所有共同的耕种力之后,进行了牵引实验的模拟,证明了LTC可以使拖拉机能够有效地使用电力并保持农业适用性对农田条件。它提供了一种制造一种在越野车辆牵引中使用的更有效的电动机的新方法。

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