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Scaling the claw pole machine for drive train optimization

机译:缩放爪极机以优化传动系

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Reducing the fuel consumption of vehicles leads often to an optimization task of the complete drive train. A significant influence to the fuel consumption is caused by the energy consumption of electric loads. An oversized generator, to supply the loads, leads to additional weight of the vehicle and additional costs, which should be avoided. To obtain the right size of the generator an analytical scaling approach is derived in this paper that enables to calculate the generator's parameters for different sizes in a short time, in contrast to FEM (Finite Element Method) simulations. Compared to other scaling approaches several constraints are taken into account, for example a constant operating voltage level of 13.5 Volt. To fulfill this constraint the stator turns must be adapted when the machine size is increased or decreased. The number of turns must be integer which allows only discrete sizes of machines. This reduces the search space of the optimization task significantly. Finally, this paper presents a method for scaling the parameters of the equivalent circuit and it enables to draw phasor diagrams for different scaling factors, too.
机译:减少车辆的燃油消耗通常会导致整个传动系统的优化任务。电负载的能量消耗对燃料消耗产生重大影响。为了提供负载的超大型发电机导致车辆的额外重量和额外成本,应避免这种情况。为了获得合适的发电机尺寸,本文提出了一种解析缩放方法,与FEM(有限元方法)模拟相比,该方法可以在短时间内计算出不同尺寸的发电机参数。与其他缩放方法相比,考虑了几个约束,例如13.5伏的恒定工作电压电平。为了满足这一限制,必须在增加或减小电机尺寸时调整定子匝数。匝数必须为整数,这仅允许离散尺寸的机器。这大大减少了优化任务的搜索空间。最后,本文提出了一种用于缩放等效电路参数的方法,它还可以绘制用于不同缩放因子的相量图。

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