252
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Quaternion-based attitude synchronisation for multiple rigid bodies in the presence of actuator saturation

, , &
Pages 505-514 | Received 12 Oct 2015, Accepted 27 Apr 2016, Published online: 08 Jun 2016

References

  • Abdessameud, A., & Tayebi, A. (2009). Attitude synchronization of a group of spacecraft without velocity measurements. IEEE Transactions on Automatic Control, 54(11), 2642–2648.
  • Bai, H., Arcak, M., & Wen, J.T. (2008). Rigid body attitude coordination without inertial frame information. Automatica, 44(12), 3170–3175.
  • Bertrand, S., Hamel, T., Piet-Lahanier, H., & Mahony, R. (2009). Attitude tracking of rigid bodies on the special orthogonal group with bounded partial state feedback. In Proceedings of the 48th IEEE Conference on Decision and Control, 2009, held jointly with the 2009 28th Chinese Control Conference, CDC/CCC 2009 (pp. 2972–2977). Shanghai.
  • Bhat, S.P., & Bernstein, D.S. (2000). A topological obstruction to continuous global stabilization of rotational motion and the unwinding phenomenon. Systems & Control Letters, 39(1), 63–70.
  • Cai, H., & Huang, J. (2014). The leader-following attitude control of multiple rigid spacecraft systems. Automatica, 50(4), 1109–1115.
  • Cao, Y., Yu, W., Ren, W., & Chen, G. (2013). An overview of recent progress in the study of distributed multi-agent coordination. IEEE Transactions on Industrial Informatics, 9(1), 427–438.
  • Dimarogonas, D.V., Tsiotras, P., & Kyriakopoulos, K.J. (2009). Leader–follower cooperative attitude control of multiple rigid bodies. Systems & Control Letters, 58(6), 429–435.
  • Du, H., Li, S., & Qian, C. (2011). Finite-time attitude tracking control of spacecraft with application to attitude synchronization. IEEE Transactions on Automatic Control, 56(11), 2711–2717.
  • Erdong, J., & Zhaowei, S. (2009). Robust attitude synchronisation controllers design for spacecraft formation. Control Theory & Applications, IET, 3(3), 325–339.
  • Geng, J.S.Z. (2015). Adaptive output feedback consensus tracking for linear multi-agent systems with unknown dynamics. International Journal of Control, 46(13), 1–19.
  • Godsil, C.D., Royle, G., & Godsil, C. (2001). Algebraic graph theory (Vol. 207). New York, NY: Springer.
  • Horn, R.A., & Johnson, C.R. (2012). Matrix analysis. Cambridge: Cambridge University Press.
  • Joshi, S., Kelkar, A., & Wen, J.Y. (1995). Robust attitude stabilization of spacecraft using nonlinear quaternion feedback. IEEE Transactions on Automatic Control, 40(10), 1800–1803.
  • Li, Z., & Duan, Z. (2011). Distributed adaptive attitude synchronization of multiple spacecraft. Science China Technological Sciences, 54(8), 1992–1998.
  • Liu, X., & Zou, Y. (2014). The global convergence analysis of a class of nonlinear network systems. International Journal of Systems Science, 45(5), 970–976.
  • Lu, K., Xia, Y., & Fu, M. (2013). Controller design for rigid spacecraft attitude tracking with actuator saturation. Information Sciences, 220, 343–366.
  • Mayhew, C.G., Sanfelice, R.G., Sheng, J., Arcak, M., & Teel, A.R. (2012). Quaternion-based hybrid feedback for robust global attitude synchronization. IEEE Transactions on Automatic Control, 57(8), 2122–2127.
  • Mayhew, C.G., Sanfelice, R.G., & Teel, A.R. (2011). On quaternion-based attitude control and the unwinding phenomenon. In American Control Conference (ACC) (pp. 299–304). San Fransisco, CA.
  • Ren, W. (2007). Distributed attitude alignment in spacecraft formation flying. International Journal of Adaptive Control and Signal Processing, 21(2–3), 95–113.
  • Ren, W., & Beard, R. (2007). Distributed consensus in multi-vehicle cooperative control: Theory and applications. London: Springer.
  • Shuster, M.D. (1993). A survey of attitude representations. Navigation, 8(9), 439–517.
  • Su, H., Chen, M.Z.Q., Wang, X., & Lam, J. (2014). Semi-global observer-based leader-following consensus with input saturation. IEEE Transactions on Industrial Electronics, 61(6), 2842–2850.
  • Tayebi, A. (2008). Unit quaternion-based output feedback for the attitude tracking problem. IEEE Transactions on Automatic Control, 53(6), 1516–1520.
  • Tsiotras, P. (1994). New control laws for the attitude stabilization of rigid bodies. In 13th IFAC Symposium on Automatic Control in Aerospace (pp. 316–321). Palo Alto, CA.
  • Wang, Q., Yu, C., & Gao, H. (2014). Synchronization of identical linear dynamic systems subject to input saturation. Systems & Control Letters, 64(1), 107–113.
  • Wang, Q., Yu, C., & Gao, H. (2015). Semi-global stabilization of saturated linear systems via multiple parametric Lyapunov equations. International Journal of Robust & Nonlinear Control, 25(1), 16–31.
  • Wang, Y., Cheng, L., Hou, Z.G., Tan, M., & Wang, M. (2014). Containment control of multi-agent systems in a noisy communication environment. Automatica, 50(7), 1922–1928.
  • Wang, Y., Cheng, L., Hou, Z.-G., Tan, M., Zhou, C., & Wang, M. (2013). Consensus seeking in a network of discrete-time linear agents with communication noises. International Journal of Systems Science, 46(10), 1–15.
  • Wang, Y., Wu, Q., & Wang, Y. (2013). Distributed consensus protocols for coordinated control of multiple quadrotors under a directed topology. IET Control Theory & Applications, 7(14), 1780–1792.
  • Wang, Y., Wu, Q., & Wang, Y. (2014). Distributed cooperative control for multiple quadrotor systems via dynamic surface control. Nonlinear Dynamics, 75(3), 513–527.
  • Wen, J.Y., & Kreutz-Delgado, K. (1991). The attitude control problem. IEEE Transactions on Automatic Control, 36(10), 1148–1162.
  • Weng, S., Yue, D., & Yang, T. (2013). Coordinated attitude motion control of multiple rigid bodies on manifold SO (3). IET Control Theory & Applications, 7(16), 1984–1991.
  • Xiao, B., Hu, Q., & Shi, P. (2013). Attitude stabilization of spacecrafts under actuator saturation and partial loss of control effectiveness. IEEE Transactions on Control Systems Technology, 21(6), 2251–2263.
  • Zhou, N., Xia, Y., Lu, K., & Li, Y. (2013). Decentralised finite-time attitude synchronisation and tracking control for rigid spacecraft. International Journal of Systems Science, 46(14), 1–17.
  • Zou, A.M. (2014). Distributed attitude synchronization and tracking control for multiple rigid bodies. IEEE Transactions on Control Systems Technology, 22(2), 478–490.
  • Zou, A.M., & Kumar, K.D. (2012). Neural network-based distributed attitude coordination control for spacecraft formation flying with input saturation. IEEE Transactions on Neural Networks and Learning Systems, 23(7), 1155–1162.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.