[1] D KESSLER, B COUR-PALAIS. Collision frequency of artificial satellites:the creation of a debris belt. Journal of Geophysical Research:Space Physics, 83, 2637-2646(1978).
[5] K YOSHIDA, H NAKANISHI, H UENO et al. Dynamics,control and impedance matching for robotic capture of a non-cooperative satellite. ADVANCED ROBOTICS, 18, 175-198(2004).
[6] I REKLEITIS, E MARTIN, G ROULEAU et al. Autonomous capture of a tumbling satellite. Journal of Field Robotics, 24, 275-296(2007).
[7] T DEBUS, S DOUGHERTY. Overview and performance of the front-end robotics enabling near-term demonstration (FREND) robotic arm, 1870(2009).
[8] A WAYMAN, A RATCLIFFE, S BARRACLOUGH et al. Design and testing of a full scale harpoon capture system, 18(2017).
[10] M SHAN, J GUO, E GILL. Review and comparison of active space debris capturing and removal methods. Progress in Aerospace Sciences, 80, 18-32(2016).
[11] P HUANG, F ZHANG, L CHEN et al. A review of space tether in new applications. Nonlinear Dynamics, 91, 1-15(2018).
[12] W HUANG, D HE, Y LI et al. Nonlinear dynamic modeling of a tether-net system for space debris capture. Nonlinear Dynamics, 110, 2297-2315(2022).
[15] G HIPPMANN. An algorithm for compliant contact between complexly shaped bodies. Multibody System Dynamics, 12, 345-362(2004).
[16] Y ZHAO, P HUANG, F ZHANG. Deployment dynamics of tethered space net based on contact behavior, 13(2019).
[18] W JOHNSON. Impact strength of materials, 243-251(1972).
[19] H SHAN, J GUO, E GILL. Contact dynamics on net capturing of tumbling space debris. Journal of Guidance,Control,and Dynamics, 41, 2063-2072(2018).
[20] B MIRTICH. Impulse-based dynamic simulation of rigid body systems(1996).
[21] Y ZHAO, P HUANG, F ZHANG. Capture dynamics and net closing control for tethered space net robot. Journal of Guidance,Control,and Dynamics, 42, 199-208(2019).
[22] G GILARDI, I SHARF. Literature survey of contact dynamics modelling. Mechanism and machine theory, 37, 1213-1239(2002).
[23] J SI, Z PANG, Z DU et al. Dynamics modeling and simulation of self-collision of tether-net for space debris removal. Advances in Space Research, 64, 1675-1687(2019).
[29] Y HOU, C LIU, H HU et al. Dynamic computation of a tether-net system capturing a space target via discrete elastic rods and an energy-conserving integrator. Acta Astronautica, 186, 118-134(2021).
[30] H SHIN, M JANG, U HWANG et al. Capture simulation using space-nets for space debris in various motions. International Journal of Aeronautical and Space Sciences, 24, 547-558(2023).