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Design and Performance Test of Axial Halbach Brushless DC Motor with Power Density 1.5 Kw/Kg

机译:功率密度1.5 Kw / Kg的轴向Halbach无刷直流电动机的设计和性能测试

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摘要

Progress of technology on electric vehicle component sector is one reason the emergence of electric vehicles at the moment. Starting from battery which has a great current density up to the automatic control systems on electric vehicles. But there are still some shortcomings of this electric vehicle components, one of which is the low value of power density of existing electric motor in the market today.On vehicles such as electric cars when Race Car Contest, energy saving problems about power density of the driving motor is very vital. This is because the total weight of the vehicle has a huge influence on the vehicle efficiency is against it. The issue is one of the reasons of the research task. In this final task is done making the design, simulation, and architecture of the Axial Halbach Brushless DC Motor. Use of system configuration on the halbach magnet to avoid the use of iron as a material cantilever rotor. By changing the material of the cantilever rotor with lighter materials such as aluminum or even carbon fibre, the value of power density electric motors can be increased. Then using the litz wire on coil stator to reduce loss-power loss due to the barriers on the coil. Coreless stator on the system and to avoid the phenomenon of cogging at the time due to low rpm style attraction magnet with iron in the core material. While the creation process begins by determining the specifications of the Axial Halbach Brushless DC motors. Then go into the design phase of the mechanical and electrical design. Who then conducted simulations to help determine other parameters such as air gap, slot turn, and magnetic orientation. The process of making a component of stator and rotor after the simulation is completed. After all the components of the rotor and stator on assembly, mounting the hall sensor is carried out to the right to position obtained by reading the signals. After the motor can spin with good motor performance, testing can be done. This final task generates Axial Halbach Brushless DC Motor with construction of one rotor and a stator. Axial DC Brushless Halbach Motor consists of 10 pole halbach magnet system permanent and 30 slot on the stator. On the performance test of Axial Halbach Brushless DCMotor it obtained efficiency of 92.72%, power output of 807.34 Watts, torque of 2.24 Nm, moment rpm 3451. As well as the power density of 0.588 kW/kg at 50% throttle openings
机译:电动汽车零部件领域的技术进步是当前电动汽车兴起的原因之一。从具有高电流密度的电池到电动汽车的自动控制系统。但是这种电动汽车部件仍然存在一些缺点,其中之一就是当今市场上现有电动机的功率密度值较低。在诸如赛车之类的电动汽车上,关于电动汽车功率密度的节能问题驱动马达非常重要。这是因为车辆的总重量对车辆的效率有很大的影响。该问题是研究任务的原因之一。在此最终任务中,完成了轴向Halbach无刷直流电动机的设计,仿真和架构。在Halbach磁体上使用系统配置,以避免使用铁作为悬臂转子材料。通过用铝或什至碳纤维等较轻的材料来改变悬臂式转子的材料,可以提高电动机的功率密度值。然后,在线圈定子上使用绞合线以减少由于线圈上的势垒引起的损耗功率损耗。系统上要避免使用无铁芯定子,并避免由于铁芯材料中含铁的低rpm型吸引磁体而造成的齿槽现象。在创建过程中,首先确定轴向Halbach无刷直流电动机的规格。然后进入机械和电气设计的设计阶段。然后谁进行模拟以帮助确定其他参数,例如气隙,槽缝转向和磁场方向。模拟完成后,制作定子和转子组件的过程。组装好转子和定子的所有组件之后,将霍尔传感器安装到右侧(通过读取信号获得的位置)。电动机旋转良好后,即可进行测试。此最终任务将生成具有一个转子和一个定子的轴向Halbach无刷直流电动机。轴向直流无刷Halbach电动机由10极halbach永磁系统和定子上的30个槽组成。在轴向Halbach无刷DCMotor的性能测试中,它获得了92.72%的效率,807.34瓦的输出功率,2.24 Nm的扭矩,3451矩的转速。在50%的节气门开度下获得的功率密度为0.588 kW / kg。

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