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Hybrid Approach to Conduct Failure Prognostics of Automotive Electronic Control Unit Using Stress Sensor as In Situ Load Counter

机译:使用应力传感器作为就地负载计数器的汽车电子控制单元故障预测的混合方法

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摘要

A model/sensor hybrid approach is implemented to conduct failure prognostics of an automotive electronic control unit (ECU). A 3-D finite-element model simulating a complex ECU is built, and its predictability is calibrated and verified by an optical displacement measurement technique called moire interferometry. On the sensor front, a silicon-based piezoresistive stress sensor is embedded into the ECU to provide in situ stress measurements during operations. A stress metric is defined using the stress values of 12 cells in each sensor, and it is converted to in situ loading histories using the calibrated finite-element model. The modeling and verification steps that lead to the predictive finite-element model are described. The proposed hybrid approach is implemented using the data obtained from a molded ECU subjected to thermal cycling conditions, and the forces at an interface between an aluminum wire bond and metal pad are investigated.
机译:实现了模型/传感器混合方法来进行汽车电子控制单元(ECU)的故障预测。建立了一个模拟复杂ECU的3-D有限元模型,并通过一种称为莫尔干涉仪的光学位移测量技术来校准和验证其可预测性。在传感器的正面,一个基于硅的压阻应力传感器被嵌入到ECU中,以在运行期间提供现场应力测量。使用每个传感器中12个单元的应力值定义应力度量,并使用校准的有限元模型将其转换为原位加载历史。描述了导致预测性有限元模型的建模和验证步骤。利用从经受热循环条件的模制ECU获得的数据来实施所提出的混合方法,并研究了铝线键合和金属焊盘之间的界面处的力。

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