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Data_Sheet_1_Classification of Magnetosheath Jets Using Neural Networks and High Resolution OMNI (HRO) Data.PDF

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https://figshare.com/articles/dataset/Data_Sheet_1_Classification_of_Magnetosheath_Jets_Using_Neural_Networks_and_High_Resolution_OMNI_HRO_Data_PDF/12433061
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Magnetosheath jets are transient, localized dynamic pressure enhancements found downstream of the Earth's bow shock in the magnetosheath region. Using a pre-existing database of magnetosheath jets we train a neural network to distinguish between jets found downstream of a quasi-parallel bow shock (θBn<45o) and jets downstream of a quasi-perpendicular bow shock (θBn>45o). The initial database was compiled using MMS measurements in the magnetosheath (downstream) to identify and classify them as “quasi-parallel” or “quasi-perpendicular,” while the neural network uses only solar wind (upstream) measurements from the OMNIweb database. To evaluate the results, a comparison with three physics-based modeling approaches is done. It is shown that neural networks are systematically outperforming the other methods by achieving a ~93% agreement with the initial dataset, while the rest of the methods achieve around 80%. The better performance of the neural networks likely is due to the fact that they use information from more solar wind quantities than the physics-based models. As a result, even in the absence of certain upstream properties, such as the IMF direction, they are capable of accurately determining the jet class.
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2020-06-05
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