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Prediction of device temperatures in an electric vehicle battery charger system by analysis of device thermal cross-coupling

机译:通过分析设备热交叉耦合来预测电动汽车电池充电器系统中的设备温度

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This paper presents a practical implementation of the measurement and use of thermal cross-coupling data. Thermal cross-coupling, the thermal transfer impedance between the heat generation of one power device and the temperature of another, is characterised using pseudo-random binary sequences for a typical H-bridge arrangement. Knowledge of the cross-coupling between each pair of devices allows temperature profiles to be predicted for arbitrary input power waveforms. The technique is verified by applying arbitrary power waveforms to all devices in the experimental arrangement and measuring the temperature response. Good agreement is shown between predicted and practical device temperature waveforms, demonstrating the viability of the technique.
机译:本文介绍了热交叉耦合数据的测量和使用的实际实现。热交联是一种功率器件的发热与另一种功率器件的温度之间的热传递阻抗,其特征是使用典型H桥装置的伪随机二进制序列进行表征。通过了解每对设备之间的交叉耦合,可以预测任意输入功率波形的温度曲线。通过将任意功率波形施加到实验装置中的所有设备并测量温度响应,可以验证该技术。在预测的和实际的器件温度波形之间显示出良好的一致性,证明了该技术的可行性。

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