[1]陶云飞. 掘进机位姿激光自动测量方法及系统研究[D]. 北京:中国矿业大学(北京), 2017.
TAO Yunfei. Research on Automatic Measurement Method and System of Position and Attitude of Roadheader Based on Laser Measurement System[D].Beijing:China University of Mining & Technology, 2017.
[2]LI Duanshun, MAO Sheng, LU Ming, et al. Analytical Tunnel-boring Machine Pose Precision and Sensitivity Evaluation for Underground Tunnelling[C]∥Proceedings of the International Symposium on Automation and Robotics in Construction (ISARC). Oulu, Finland, 2015:10.22260/ISARC2015/0074.
[3]GE Bin, WANG Kai, HAN Jianghong, et al. Improved RSSI Positioning Algorithm for Coal Mine Underground Locomotive[J]. Journal of Electrical and Computer Engineering, 2015, 2015:10.
[4]FU Shichen, LI Yiming, ZONG Kai, et al. Ultra-wideband Pose Detection Method Based on TDOA Positioning Model for Boom-type Roadheader[J]. AEU—International Journal of Electronics and Communications, 2019, 99:70-80.
[5]LI Menggang, ZHU Hua, YOU Shaoze, et al. UWB-based Localization System Aided with Inertial Sensor for Underground Coal Mine Applications[J]. IEEE Sensors Journal, 2020, 20(12):6652-6669.
[6]CUI Yuming, LIU Songyong, YAO Jian, et al. Integrated Positioning System of Unmanned Automatic Vehicle in Coal Mines[J]. IEEE Transactions on Instrumentation and Measurement, 2021, 70:8503013.
[7]HAN Songlai, REN Xingyu, LU Jiazhen, et al. An Orientation Navigation Approach Based on INS and Odometer Integration for Underground Unmanned Excavating Machine[J]. IEEE Transactions on Vehicular Technology, 2020, 69(10):10772-10786.
[8]RAVAL S, BANERJEE B P, KUMAR SINGH S, et al. A Preliminary Investigation of Mobile Mapping Technology for Underground Mining[C]∥IGARSS 2019—2019 IEEE International Geoscience and Remote Sensing Symposium. Yokohama, Japan, 2019:6071-6074.
[9]WU Di, MENG Yu, ZHAN Kai, et al. A LIDAR SLAM Based on Point-line Features for Underground Mining Vehicle[C]∥2018 Chinese Automation Congress (CAC). Xi'an, 2018:2879-2883.
[10]DU Yuxin, TONG Minming, LIU Ting, et al. Visual Measurement System for Roadheaders Pose Detection in Mines[J]. Optical Engineering, 2016, 55(10):104107.
[11]YANG Wenjuan, ZHANG Xuhui, MA Hongwei, et al. Laser Beams-based Localization Methods for Boom-type Roadheader Using Underground Camera Non-uniform Blur Model[J]. IEEE Access, 2020, 8:190327-190341.
[12]KENDALL A, GRIMES M, CIPOLLA R. PoseNet:a Convolutional Network for Real-time 6-DOF Camera Relocalization[C]∥2015 IEEE International Conference on Computer Vision (ICCV). Santiago, Chile, 2015:2938-2946.
[13]RADWAN N, VALADA A, BURGARD W. VLocNet:Deep Multitask Learning for Semantic Visual Localization and Odometry[J]. IEEE Robotics and Automation Letters, 2018, 3(4):4407-4414.
[14]LIN Yimin, LIU Zhaoxiang, HUANG Jianfeng, et al. Deep Global-relative Networks for End-to-end 6-DOF Visual Localization and Odometry[C]∥Pacific Rim International Conference on Artificial Intelligence. Cham:Springer, 2019:454-467.
[15]WU Hongzhuang, LIU Songyong, CHENG Cheng, et al. Multiscale Variational Autoencoder Aided Convolutional Neural Network for Pose Estimation of Tunneling Machine Using a Single Monocular Image[J]. IEEE Transactions on Industrial Informatics, 2022, 18(8):5161-5170.
[16]WU Hongzhuang, LIU Songyong, CHENG Cheng, et al. Observer Based Adaptive Interval Type-2 Fuzzy Sliding Mode Control for Unknown Nonlinear Systems[J]. Journal of Intelligent & Fuzzy Systems, 2020, 38(2):1799-1810.
[17]ZHANG Faxiang, LI Yimin, HUA Jing. Direct Adaptive Fuzzy Control of SISO Nonlinear Systems with Input-Output Nonlinear Relationship[J]. International Journal of Fuzzy Systems, 2018, 20(4):1069-1078.
[18]BAIGZADEHNOE B, RAHMANI Z, KHOSRAVI A, et al. On Position/Force Tracking Control Problem of Cooperative Robot Manipulators Using Adaptive Fuzzy Backstepping Approach[J]. ISA Transactions, 2017, 70:432-446.
[19]DASTRES H, REZAIE B, BAIGZADEHNOE B. Neural-network-based Adaptive Backstepping Control for a Class of Unknown Nonlinear Time-delay Systems with Unknown Input Saturation[J]. Neurocomputing, 2020, 398:131-152.
[20]AZAHAR M I P, IRAWAN A. Enhancing Precision on Pneumatic Actuator Positioning Using Cascaded Finite-time Prescribed Performance Control[C]∥2021 11th IEEE International Conference on Control System, Computing and Engineering (ICCSCE). Penang, Malaysia, 2021:131-136.
[21]ZHAO Nannan, OUYANG Xinyu, WU Libing, et al. Event-triggered Adaptive Prescribed Performance Control of Uncertain Nonlinear Systems with Unknown Control Directions[J]. ISA Transactions, 2021, 108:121-130.
[22]WU H, LIU S, CHENG C, et al. Observer Based Adaptive Double-layer Fuzzy Control for Nonlinear Systems with Prescribed Performance and Unknown Control Direction[J]. Fuzzy Sets and Systems, 2020, 392:93-114.
[23]SNDERBY C K, RAIKO T, MAALE L, et al. Ladder Variational Autoen-coders[C]∥30th Conference on Neural Information Processing Systems. Barcelona, 2016:1-9.
[24]VAHDAT A, MACREADY W, BIAN Z, et al. Dvae++:Discrete Variational Autoencoders with Overlapping Transformations[C]∥International Conference on Machine Learning. Stockholm, 2018:5035-5044.
|