Open Access
| Issue |
JNWPU
Volume 43, Number 5, October 2025
|
|
|---|---|---|
| Page(s) | 936 - 945 | |
| DOI | https://doi.org/10.1051/jnwpu/20254350936 | |
| Published online | 05 December 2025 | |
- HUA Yixin, ZOU Quan, TIAN Haiming. Control strategy and simulation for probe and drogue aerial autonomous refueling[J]. Journal of Beijing University of Aeronautics and Astronautics, 2021, 47(2): 262–270 (in Chinese) [Google Scholar]
- ZHONG Dexing, LI Yongqiang, LI Yanrui. State-of-art and tendency of autonomous aerial refueling technologies for unmanned aerial vehicles[J]. Aeronautical Science & Technology, 2014, 25(5): 1–6 (in Chinese) [Google Scholar]
- WU Cihang, YAN Jianguo, QIAN Xianyun, et al. Predefined-time attitude stabilization control of receiver aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2022, 43(2): 373–381 (in Chinese) [Google Scholar]
- QUAN Quan, WEI Zibo, GAO Jun, et al. A survey on modeling and control problems for probe and drogue autonomous aerial refueling at docking stage[J]. Acta Aeronautica et Astronautica Sinica, 2014, 35(9): 2390–2410 (in Chinese) [Google Scholar]
- PACHTER M, HOUPIS C, TROSEN D. Design of an air-to-air automatic refueling flight control system using quantitative feedback theory[J]. International Journal of Robust and Nonlinear Control, 1997, 7(6): 561–580 [Article] [Google Scholar]
- WAISHEK J, DOGAN A, BLAKE W. Derivation of the dynamics equations of receiver aircraft in aerial refueling[J]. Journal of Guidance, Control, and Dynamics, 2009, 32(2): 586–598 [Article] [Google Scholar]
- WANG Haitao, DONG Xinmin, XUE Jianping, et al. Modeling and simulation of a time-varying inertia aircraft in aerial refueling[J]. Chinese Journal of Aeronautics, 2016, 29(2): 335–345 [Article] [Google Scholar]
- MAO W. Effects of mass variation on the dynamics of receiver aircraft during aerial refueling[D]. Davis: University of California, 2008 [Google Scholar]
- LIU Jiaolong, XUE Jianping, DONG Xinmin, et al. Modeling of aircraft with variable mass in aerial refueling and design of disturbance compensation controller[J]. Flight Dynamics, 2013(4): 321–325 (in Chinese) [Google Scholar]
- VENKATARAMANAN S, DOGAN A. Nonlinear control for reconfiguration of UAV formation[C]//AIAA Guidance, Navigation, and Control Conference and Exhibit, 2003 [Google Scholar]
- AN Shuai, YUAN Suozhong. Relative position control design of receiver UAV in flying-boom aerial refueling phase[J]. ISA Transactions, 2018, 73: 40–53 [Article] [Google Scholar]
- REN Jinrui, QUAN Quan, MA Haibiao, et al. Additive-state-decomposition-based station-keeping control for autonomous aerial refueling[J]. Science China Information Sciences, 2021, 64(11): 219202 [Article] [Google Scholar]
- ZHANG Chaofan, DONG Qi. Adaptive-gain sliding mode control for fixed-wing UAVs with input saturation[J]. Acta Aeronautica et Astronautica Sinica, 2020, 41(suppl.1): 723755 (in Chinese) [Google Scholar]
- LIU Bojun, HOU Mingshan, WU Cihang, et al. Predefined-time back-stepping control for a nonlinear strict-feedback system[J]. International Journal of Robust and Nonlinear Control, 2021, 31(8): 3354–3372 [Article] [Google Scholar]
- LI Zhaoxing, WANG Xia, WANG Minwen, et al. Singular perturbation decomposition-based ride quality control of elastic aircraft[J]. Journal of Northwestern Polytechnical University, 2023, 41(5): 831–841 [Article] (in Chinese) [Google Scholar]
- XIA Jiyu, ZHOU Zhou, WANG Zhengping, et al. Trajectory tracking control of tilt-propulsion UAV vertical take-off and landing mode based on NLESO[J]. Journal of Northwestern Polytechnical University, 2023, 41(1): 1–10 [Article] (in Chinese) [Google Scholar]
- XU Bin, SHOU Yingxin, WANG Xia, et al. Finite-time composite learning control of strict-feedback nonlinear system using historical stack[J]. IEEE Trans on Cybernetics, 2023, 53(9): 5777–5787 [Article] [Google Scholar]
- EZABADI M, EMAMI S A. Finite-time fault-tolerant control of a spacecraft using composite learning in the presence of moment of inertia uncertainty and external disturbances[J]. Aerospace Science and Technology, 2024, 150: 109185 [Article] [Google Scholar]
- WEN Haowei, YUE Xiaokui, WANG Zheng, et al. Adaptive RISE control for asymptotic rigid-body attitude tracking with additive disturbances[J]. ISA Transactions, 2021, 117: 54–69 [Article] [Google Scholar]
- YANG Guichao, ZHU Tao, YANG Fengbo, et al. Output feedback adaptive RISE control for uncertain nonlinear systems[J]. Asian Journal of Control, 2023, 25(1): 433–442 [Article] [Google Scholar]
- YANG Guichao. Asymptotic tracking with novel integral robust schemes for mismatched uncertain nonlinear systems[J]. International Journal of Robust and Nonlinear Control, 2023, 33(3): 1988–2002 [Article] [Google Scholar]
- HARRISON A, DIEU N N J, ALOMBAH N H, et al. Robust nonlinear MPPT controller for PV energy systems using PSO-based integral backstepping and artificial neural network techniques[J]. International Journal of Dynamics and Control, 2024, 12(5): 1598–1615 [Article] [Google Scholar]
- GJB185—86, 1986 COSTIND. Flying qudities of manned aircraft(fixed-wing)[S]. GJB185—86, 1986 (in Chinese) [Google Scholar]
- THOMAS P R, BHANDARI U, BILLOCK S, et al. Advances in air to air refuelling[J]. Progress in Aerospace Sciences, 2014, 71: 14–35 [Article] [NASA ADS] [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.
