System dynamics and feedforward control for tether-net space robot system

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Abstract

A new concept using flexible tether-net system to capture space debris is presented in this paper. With a mass point assumption the tether-net system dynamic model is established in orbital frame by applying Lagrange Equations. In order to investigate the net in-plane trajectories during after cast, the non-control R-bar and V-bar captures are simulated with ignoring the out-of-plane libration, the effect of in-plane libration on the trajectories of the capture net is demonstrated by simulation results. With an effort to damp the in-plane libration, the control scheme based on tether tension is investigated firstly, after that an integrated control scheme is proposed by introduced the thrusters into the system, the nonlinear close-loop dynamics is linearised by feedforward strategy, the simulation results show that feedforward controllor is effective for in-plane libration damping and enable the capture net to track an expected trajectory.

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APA

Zhai, G., Qiu, Y., Liang, B., & Li, C. (2009). System dynamics and feedforward control for tether-net space robot system. International Journal of Advanced Robotic Systems, 6(2), 137–144. https://doi.org/10.5772/6791

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