[HTML][HTML] Split-attention networks with self-calibrated convolution for moon impact crater detection from multi-source data

Y Jia, G Wan, L Liu, J Wang, Y Wu, N Xue, Y Wang… - Remote Sensing, 2021 - mdpi.com
Impact craters are the most prominent features on the surface of the Moon, Mars, and
Mercury. They play an essential role in constructing lunar bases, the dating of Mars and …

Split-Attention Networks with Self-Calibrated Convolution for Moon Impact Crater Detection from Multi-Source Data

Y Jia, G Wan, L Liu, J Wang, Y Wu, N Xue… - Remote …, 2021 - search.proquest.com
Impact craters are the most prominent features on the surface of the Moon, Mars, and
Mercury. They play an essential role in constructing lunar bases, the dating of Mars and …

[引用][C] Split-Attention Networks with Self-Calibrated Convolution for Moon Impact Crater Detection from Multi-Source Data

Y Jia, G Wan, L Liu, J Wang, Y Wu, N Xue… - Remote …, 2021 - ui.adsabs.harvard.edu
Split-Attention Networks with Self-Calibrated Convolution for Moon Impact Crater Detection
from Multi-Source Data - NASA/ADS Now on home page ads icon ads Enable full ADS view …

Split-Attention Networks with Self-Calibrated Convolution for Moon Impact Crater Detection from Multi-Source Data

Y Jia, G Wan, L Liu, J Wang, Y Wu, N Xue, Y Wang… - Remote …, 2021 - agris.fao.org
Impact craters are the most prominent features on the surface of the Moon, Mars, and
Mercury. They play an essential role in constructing lunar bases, the dating of Mars and …

Split-Attention Networks with Self-Calibrated Convolution for Moon Impact Crater Detection from Multi-Source Data.

Y Jia, G Wan, L Liu, J Wang, Y Wu, N Xue… - Remote …, 2021 - search.ebscohost.com
Impact craters are the most prominent features on the surface of the Moon, Mars, and
Mercury. They play an essential role in constructing lunar bases, the dating of Mars and …

[引用][C] Split-Attention Networks with Self-Calibrated Convolution for Moon Impact Crater Detection from Multi-Source Data

Y Jia, G Wan, L Liu, J Wang, Y Wu, N Xue, Y Wang… - 2021