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A Time-Saving Approach for the Thermal Lifetime Evaluation of Low-Voltage Electrical Machines

机译:低压电机热寿命评估的节省时间方法

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摘要

Modern electrical machines, such as those employed in transportation applications are required to provide very high performance in terms of power (and torque) density and efficiency. The reality, however, is that the more these machines are “pushed” in relation to power density, the more is the probability of failure of their insulation systems, through enhanced electrical and thermal stresses. On the other hand, regardless the power density level, the electrical machine still needs to respect the certification processes set by the international standards and procedures. Unfortunately, today reliability and lifetime are still not considered as main design objective functions right from the start of the design process. This is a direct result of a gap in knowledge in terms of the precise understanding of failure mechanisms. If physics of failure models are available, then reliability can be included at all design stages. Therefore, this article proposes a method that shortens the time demanded for the thermal lifetime evaluation procedure or qualification of low-voltage electrical machines. The theory behind the method is presented and, then, experimentally validated on custom designed specimens.
机译:现代电机,例如在运输应用中使用的电机,需要在功率(和扭矩)密度和效率方面提供非常高的性能。然而,现实是,这些机器越多于电力密度,通过增强的电气和热应力,其绝缘系统失效的可能性越多。另一方面,无论电力密度水平如何,电机仍然需要尊重国际标准和程序设定的认证过程。不幸的是,今天的可靠性和寿命仍未从设计过程开始时被视为主要设计目标函数。这是在对失败机制的精确理解方面的知识中差距的直接结果。如果有故障模型的物理可用,则可以包括所有设计阶段的可靠性。因此,本文提出了一种方法,该方法缩短了对低压电机的热寿命评估程序或资格所需的时间。该方法背后的理论是在经过实验验证的定制设计的标本上。

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