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Electrothermal Behavior of a Complete Alternator Assembly Within a Battery Charging System Using Virtual Prototyping Techniques

机译:使用虚拟原型技术在电池充电系统内完整交流发电机组件的电热行为

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This paper illustrates the usage of virtual prototyping to observe the impact of self-heating thermal effects on the performance of a complete claw pole alternator assembly. A typical automotive alternator is a subsystem that consists of an electromechanical rotor/stator assembly with electrical rectification and regulation components. Often in literature, thermal effects, if considered, remain exclusive to the alternator core, and do not effectively tie together the impact on other components of the alternator assembly. The scope of this work considers the implementation of a more detailed subsystem of electro-thermal components, rectifiers and a regulator within the context of a software implementation of an electro-mechanical alternator assembly. Alternator measurements, virtual prototype characterization, and validation via simulation comparisons with physical measurements are also discussed. Robust engineering techniques are proposed to permit optimization of the alternator design within the scope of a battery charging system. The charging system, with thermal sensitive lead-acid battery, embraces an appropriate number of realistic loads typical of an automotive vehicle, with some self-heating wire harness considerations.
机译:本文说明了虚拟原型的使用,以观察自加热热效应对完整爪极交流发电机组件的性能的影响。典型的汽车交流发电机是一种子系统,包括具有电整流和调节部件的机电转子/定子组件。通常在文献中,如果考虑过,则热效应仍然是交流发电机芯,并且没有有效地将撞击交流发电机组件的其他部件的影响。该工作的范围考虑了在机电交流发电机组件的软件实现的背景下实现更详细的电热分量,整流器和调节器的子系统。还讨论了通过模拟比较与物理测量的仿真比较的交流发电机测量,虚拟原型表征和验证。提出了强大的工程技术,以允许在电池充电系统的范围内优化交流发电机设计。带热敏铅酸电池的充电系统包括典型的汽车车辆的适当数量的现实载荷,具有一些自加热线束考虑因素。

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