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Identification and Experimental Validation of an Induction Motor Thermal Model for Improved Drivetrain Design

机译:改进传动系统设计的感应电动机热模型的辨识和实验验证

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The ability of an electric powertrain to perform according to mechanical specifications is equally important as assessing its thermal protection limits, which are affected by its electrical and thermal properties. Although rated parameters (such as power, torque, etc.) are easily accessible in catalogs of equipment producers, more specific properties like mass/length of copper winding, heat dissipation factor, etc., are not available to customers. Therefore, an effective selection of drivetrain components is limited due to the lack of sufficient data and the need to consult critical design decisions with suppliers. To overcome this limitation, we propose a method to estimate the temperature rise of motor drives based on popular loadability curves, which are provided in catalogs. A simple first-order thermal model is applied to represent heating/cooling phenomenon of motor drives. The parameters' identification process is formulated as a nonlinear optimization problem and solved using commercial software products. Within the proposed approach, it becomes possible to include the effect of reduced torque availability at low speeds in self-ventilated motors during design of electric actuation systems. Contrary to using a discrete set of permissible overload conditions from the catalogs, the current methodology allows for evaluating a temperature rise of a motor drive for any overload magnitude, duty cycle, and ambient temperature. This greatly improves flexibility of the design process and facilitates communication in a supplier-customer dialog. The discussed method is verified against reference overload recommendations, yielding the same thermal protection levels, and validated using the experimental results, producing identical motor temperature rise profiles as the ones measured on the laboratory test bench.
机译:动力总成根据机械规格运行的能力与评估其热保护极限(评估受其电气和热特性影响)同样重要。尽管可以在设备生产商的目录中轻松访问额定参数(例如功率,扭矩等),但客户仍无法获得更具体的属性,例如铜绕组的质量/长度,散热系数等。因此,由于缺乏足够的数据以及需要与供应商协商关键的设计决策,因此限制了传动系统组件的有效选择。为了克服此限制,我们提出了一种基于目录中提供的常用负载曲线估算电机驱动器温度升高的方法。应用简单的一阶热模型来表示电动机驱动器的加热/冷却现象。参数的识别过程被公式化为非线性优化问题,并使用商业软件产品解决。在提出的方法中,有可能包括在电动执行系统的设计过程中,在低速下在自通风电动机中降低扭矩可用性的影响。与使用目录中离散的一组允许的过载条件相反,当前的方法允许针对任何过载量,占空比和环境温度评估电动机驱动器的温升。这大大提高了设计过程的灵活性,并促进了供应商与客户之间的对话。根据参考过载建议验证了所讨论的方法,得出了相同的热保护等级,并使用实验结果进行了验证,得出的电动机温升曲线与在实验室测试台上测得的曲线相同。

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