The research subject of this papper is five electrical quantities, the phase current of abnormal phase IL, the sheath current of initial terminal Iss, the sheath current of last end Ise and other two phase currents IO1, IO2.

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Documentation: 
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File Introductions.docx14.61 KB
[1] Peng Chi, "Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities", IEEE Dataport, 2019. [Online]. Available: http://dx.doi.org/10.21227/m1ce-3g87. Accessed: Feb. 11, 2025.
@data{m1ce-3g87-19,
doi = {10.21227/m1ce-3g87},
url = {http://dx.doi.org/10.21227/m1ce-3g87},
author = {Peng Chi },
publisher = {IEEE Dataport},
title = {Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities},
year = {2019} }
TY - DATA
T1 - Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities
AU - Peng Chi
PY - 2019
PB - IEEE Dataport
UR - 10.21227/m1ce-3g87
ER -
Peng Chi. (2019). Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities. IEEE Dataport. http://dx.doi.org/10.21227/m1ce-3g87
Peng Chi, 2019. Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities. Available at: http://dx.doi.org/10.21227/m1ce-3g87.
Peng Chi. (2019). "Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities." Web.
1. Peng Chi. Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities [Internet]. IEEE Dataport; 2019. Available from : http://dx.doi.org/10.21227/m1ce-3g87
Peng Chi. "Dataset for Double-Layer LSTM Recognition Method for Early Stage of 10kV Single-Core Cable Based on Multi-Observable Electrical Quantities." doi: 10.21227/m1ce-3g87