该电算化系统使用一个简易的摄像头,高分辨率的热成像传感器和一整套算法。
The computerised system uses a simple video camera, a high-resolution thermal imaging sensor and a suite of algorithms.
通过变压器的热解剖试验获得了变压器的热阻抗矩阵元素,论证了变压器热点瞬态温升电算方法的正确性和实用性。
Numerical examples demonstrate that the presented method can greatly increase the accuracy of calculation of the self-interaction and near-interaction impedance matrix elements.
通过变压器的热解剖试验获得了变压器的热阻抗矩阵元素,论证了变压器热点瞬态温升电算方法的正确性和实用性。
Numerical examples demonstrate that the presented method can greatly increase the accuracy of calculation of the self-interaction and near-interaction impedance matrix elements.
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