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The Torque Distribution Analysis for Dual Motor - Single Shaft Electric Drive

机译:双电机-单轴电传动的转矩分配分析。

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The application of multispeed gearbox in pure electric drive gives a significant benefit in electric energy consumption saving. It is visible, especially in the case of city exploitation conditions of the electric vehicle. Independent on the kind of use multispeed transmission its application in pure electric drive required its automated operation, both for vehicle acceleration and deceleration. In the case of Automated Manual Transmission the disadvantage is interrupted driving torque during gear shifting. This negative feature can be removed thanks to the proper drive train structure. One of them is proposed dual motor - single shaft drive structure. It consists of two electric motors. One of them is connected to the multispeed transmission input while the second is connected to the multispeed transmission output shaft and then to the final drive. This way of electric motor arrangement in electric drive structure puts together the benefits of multi speed gearbox application as well as the possibility of vehicles propelling during gear shifting. Additionally, compared to the classic electric drive structure with multispeed transmission, each motor rated power can be limited because the total drive power is the sum of both the motor powers. It is resulting in motors current limitation thus the same the losses are also limited and the drive efficiency increase. It seems that the effect on energy saving can be greater when both motors cooperate together in the proper way. This cooperation depends on both motor torque distribution. The motor torque distribution must be done under best efficiency motor operation condition. In the paper the analyses of the torque distribution influence on efficiency and battery power for the proposed structure of electric drive was done. There was proposed the definition of torque distribution based on the required output torque demand. The factors allowing the evaluation of quality torque distribution have been proposed.
机译:多速变速箱在纯电驱动中的应用在节省电能消耗方面具有显着优势。这是可见的,尤其是在电动汽车的城市开发条件下。与多级变速器的使用类型无关,其在纯电动驱动中的应用要求其自动运行,以实现车辆加速和减速。在自动手动变速器的情况下,缺点是在换档期间中断了驱动扭矩。适当的传动系统结构可以消除此负面特征。其中之一是提出了双电机-单轴驱动结构。它由两个电动机组成。其中一个连接至多速变速器输入,而第二个连接至多速变速器输出轴,然后连接至终传动。在电动驱动结构中的这种电动机布置方式汇集了多速变速箱应用的优势以及车辆在变速过程中推进的可能性。另外,与具有多速变速器的经典电驱动结构相比,每个电动机的额定功率都可能受到限制,因为总驱动功率是两个电动机功率之和。这导致了电动机电流的限制,因此损耗也受到了限制,驱动效率也得到了提高。如果两个电机以适当的方式配合使用,对节能的效果似乎会更大。这种配合取决于两个电动机的扭矩分配。电机扭矩分配必须在最佳效率的电机运行条件下进行。在本文中,针对所提出的电驱动结构,分析了转矩分布对效率和电池功率的影响。提出了基于所需输出扭矩需求的扭矩分配的定义。已经提出了允许评估质量扭矩分布的因素。

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