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Novel current sensing method for mass production of power converters

机译:大规模生产功率转换器的新型电流传感方法

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摘要

Orthogonal least squares estimation algorithm is applied for the identification of unknown relationship between the drain current, the voltage across the drain and source of a fully on metal-oxide semiconductor field-effect transistor (MOSFET) under different temperatures. Very low loss current sensing can be derived based on the fitted model, the sensed temperature and voltage across the drain and source of the MOSFET. The model can easily be denormalized to cater for MOSFETs of the same model so that it is not necessary to test individual MOSFET in power converters. The proposed method could be useful for testing power converters during the manufacturing process. It could also be embedded into the controller to implement current control or over-current protection for power converters. Experiments and procedures to carry out the model fitting are presented.
机译:正交最小二乘估计算法被用于识别在不同温度下的完全导通的金属氧化物半导体场效应晶体管(MOSFET)的漏极电流,漏极两端的电压和源极之间的未知关系。可以基于拟合模型,MOSFET漏极和源极两端的感测温度和电压得出非常低的损耗电流感测。可以轻松地对模型进行归一化,以适应相同模型的MOSFET,因此无需测试功率转换器中的单个MOSFET。所提出的方法对于在制造过程中测试功率转换器可能是有用的。也可以将其嵌入控制器中,以实现电源转换器的电流控制或过电流保护。介绍了进行模型拟合的实验和步骤。

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