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Braking torque control method of IPMSM for electric vehicle using 2D look-up table

机译:基于二维查询表的电动汽车ipmsm制动力矩控制方法

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This paper presents the control methods of torque when interior mounted permanent magnet synchronous motor (IPMSM) for electric vehicle is in regenerative mode. The current control of IPMSM is generally performed by the Lockup-table to output the most suitable current order which is to make the unit torque like maximum torque per ampere (MTPA). At the electric vehicle system, the regenerative control should generate the braking torque according to the driver's brake control and save the regenerative power to the battery. It is necessary to generate the braking torque for the brake of the electric vehicle during the driving, so the spinning speed of the generator should be considered and it should be differently controlled according to the characteristics at the constant torque and flux-weakening areas. Thus, 2D Lookup-Table should be made considering the speed. This paper presents how to make the 2D Lookup-Table of IPMSM for the electric vehicle, the control methods of brake torque control, voltage, current control of the battery at the regenerative operation and verifies the validity of the regenerative control method through the simulation and experiment.
机译:本文介绍了电动汽车内装永磁同步电动机(IPMSM)处于再生模式时的转矩控制方法。 IPMSM的电流控制通常由锁定表执行,以输出最合适的电流指令,该指令将使单位转矩像每安培最大转矩(MTPA)一样。在电动汽车系统中,再生控制应根据驾驶员的制动控制产生制动扭矩,并为电池节省再生动力。在行驶期间必须产生用于电动车辆的制动的制动扭矩,因此应考虑发电机的旋转速度,并应根据恒定扭矩和弱磁通区域的特性对其进行不同的控制。因此,应考虑速度来制作2D查找表。本文介绍了如何制作电动汽车IPMSM二维查找表,再生运行时制动转矩控制,电池电压,电流控制的控制方法,并通过仿真和仿真验证了再生控制方法的有效性。实验。

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