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Power loss segregation in electrical machines through calorimetry and inverse thermal modelling

机译:通过热量测定和反向热建模电机电力损耗隔离

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摘要

This study combines calorimetric measurement of power loss of an induction motor with inverse thermal mapping of its temperatures to segregate the net power loss into its constituent components. Constrained least square fitting is the tool used to achieve the inverse mapping. The lumped thermal network of the motor serves as the forward thermal model, establishing the physical relationship between the motor's power losses and its resultant temperature rises. The objective of the iterative minimisation is to find the actual loss components that correspond to the temperatures measured, and which sum up to the total loss of the motor that is measured with a calorimeter. Data ranges and constraints are imposed to attain a reasonable, unique solution. Each loss component predicted by the inverse mapping inherently includes the contribution from stray load losses as it is fitted to the measured temperatures of the motor. Given the challenges, this inverse thermal routine achieves the loss segregation in a fairly good fashion.
机译:该研究结合了感应电动机的电力损耗的量热测量,其温度逆热映射将净功率损耗分离到其构成部件中。约束最小二乘拟合是用于实现逆映射的工具。电机的集总热网用作前向热模型,建立电机功率损耗与其所得温度升高之间的物理关系。迭代最小化的目的是找到与测量的温度对应的实际损耗组件,并且总结通过量热计测量的电动机的总损失。施加数据范围和约束以获得合理,独特的解决方案。由逆映射预测的每个损耗部件本质地包括与杂散负载损耗的贡献,因为它适合于电动机的测量温度。鉴于挑战,这种反向热常规以相当良好的方式实现损失隔离。

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