7) Wu Xin., Xue Guoqiang, Zhao Yang, Lv Pingfei, Zhou Zhou, Shi Jinjing. A deep learning estimation of the Earth resistivity model for the airborne transient electromagnetic observation. Journal of Geophysical Research: Solid Earth, 2022, 127(3): e2021JB023185.
8) Wu Xin, Xue Guoqiang, Xiao Pan, Li Jutao, Liu Lihua, Fang Guangyou. The removal of the high-frequency motion-induced noise in helicopter-borne transient electromagnetic data based on wavelet neural network. Geophysics, 2019, 84(1): K1-K9.
9) Wu Xin, Xue Guoqiang, He Yiming, Xue Junjie. Removal of the multi-source noise in airborne electromagnetic data based on deep learning. Geophysics, 2020, 85(6): B193-B208.
10) Li Hai, Xue Guoqiang, Chen Wen. Bayesian subsampling of time-domain electromagneticdata using kernel density product. Geophysics, 2022, 87(2): E79-E90.
11) Li Hai, XueGuoqiang, Zhang Linbo. Accelerated Bayesian inversion of transient electromagnetic data using MCMC subposteriors. IEEE Transactions on Geoscience and Remote Sensing, 2021, 59 (12), 10000-10010.
12) Li, H., Xue, G., He, Y., 2019. Decoupling induced polarization effect from time domain electromagnetic data in Bayesian framework. Geophysics, 84(6), A59-A63.
13) Li, H., Di, Q., Xue, G., 2019. A comparative study of inline and broadside time domain CSEM methods for mapping resistive targets on land. Geophysics, 84(4), B235-B24.
14) Zhou Nannan, Xue Guoqiang, Li Hai, Chen Wen, Lei Kangxin. Electromagnetic Characteristics of the Magmatic Ni-Cu Sulfide Deposits in the Orogenic Belt: A Case Study from Kalatongke Deposits in the Central Asian Orogenic Belt. Ecnomic geology. 2022. DOI: 10.5382/econgeo.4905.
15) Zhou N N, Lei K X, Xue G Q, Chen W. 2020. Induced polarization effect on grounded-wire transient electromagnetic data from transverse electric and magnetic fields. Geophysics, 85(4), E111-E120.
16) Chen WY, Xue GQ, Olatayo AL, et al. 2017. A comparison of loop time-domain electromagnetic and short-offset transient electromagnetic methods for mapping water-enriched zones — A case history in Shaanxi, China. Geophysics, 82(6):B201-B208.
17) 底青云, 薛国强, 王中兴, 何兰芳, 裴仁忠 张天信,方广有.利用SEP电磁观测系统研究祁幔塔格山和西柴达木盆地岩石圈结构.中国科学:地球科学, 2021, 64 (10), 1813-1820.
18) 底青云, 薛国强, 殷长春, 李貅. 中国人工源电磁探测新方法. 中国科学: 地球科学, 50(9): 1219-1227.
19) Di Qingyun,Xue Guoqiang, Fu Changmin, Wang Ruo. An alternative tool to controlled-source audio-frequency magnetotellurics method for prospecting deeply buried ore deposits. Science Bulletin, 2020, 65(8): 611-615.
20)底青云, 薛国强, 雷达, 曾庆栋, 付长民, 安志国.华北克拉通金矿综合地球物理探测研究进展—以辽东地区为例. 中国科学: 地球科学, 2021, 51(9): 1524-1535.
出版专著8部
1)薛国强,陈卫营, 武欣. 电性源短偏移距瞬变电磁法理论与应用,科学出版社,2022年6月。
2)薛国强,刘树才,刘志新.赵育台. 煤炭电法探测方法技术,科学出版社,2018年11月。
3)薛国强,闫述,周楠楠,王贺元. 瞬变电磁场点微元响应问题,科学出版社,2017年5月。
4)薛国强,闫述,周楠楠,陈卫营. 人工源电磁测深方法技术研究,地质出版社,2015年11月。
5)底青云,薛国强,安志国,王中兴等. 重大地质工程电磁探测新技术与应用,科学出版社,2020年12月。
6)底青云,薛国强,王中兴,张一鸣,王顺,雷达,付长民,安志国,王若,武杰. 多通道瞬变电磁探测技术,科学出版社,2019年11月。
7)李貅,薛国强,李术才,郭文波,孙怀凤,戚志鹏. 瞬变电磁隧道超前预报方法与应用,地质出版社,2013年8月。
8)李貅,薛国强. 瞬变电磁拟地震偏移成像研究,科学出版社,2013年6月。
授权美国专利8项
1)Xue Guoqiang, Liu Shucai, Jiang Zhihai, Chen Weiying, Yue Jianhua, Di Qingyun. Method and device for surface-borehole transient electromagnetic detection. 美国专利,US 11,187,824 B2. 2021年10月4日。
2)Xue Guoqiang, Li Xiu, Liu Bin, Sun Huaifen, Di Qingyun, Hou Dongyang. Correction method for transient electromagnetic method-based prediction of water-bearing structure ahead of tunnel wall. 美国专利,US 10,823, 872 B2. 2020年11月3日。
3)Xue Guoqiang, Chen Weiying, Yan Shu, Zhou Nannan, Di Qingyun. Device and method for ground source transient electromagnetic near-field detection and related device. 美国专利, US 10, 955, 578 B2. 2021年3月23日。
4)Di Qingyun, Xue Guoqiang, Wang Ruo, An ZhiGuo, Fu Changmin, Lei Da, Zhuo Xianjun, Wang Zhongxing. WEM-based method for deep resource detection using sky waves. 美国专利, US 10,809,412 B2. 2020年10月20日。
5)Wu Xin, Xue Guoqiang, Di Qingyun. Multi-mode data observation method based on unmanned aerial vehicle formation for semi-airborne electromagnetic surveying. 美国专利, US 10,838,099 B1. 2020年11月17日。
6)Wu Xin, Xue Guoqiang, Di Qingyun. Method for suppressing airborne transient electromagnetic in-band vibration in-band noise. 美国专利, US 10,877,178 B2. 2020年12月29日。
7)Wu Xin, Xue Guoqiang, Di Qingyun. Method and system for electromagnetic method(EM) signal detection based on onshore sparker source.美国专利, US 11,313,984 B2. 2022年4月26日
8)Zhou N N, Xue G Q, Zhang S, Wei X H. Exploration method and system for pegmatite veins. 美国专利US11761944 B2, 2023年9月19日。