An Autonomy Architecture for Aerobot Exploration of the Saturnian Moon Titan
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A. Elfes | A. Ansar | A. Elfes | J. Montgomery | A. Ansar | E. Kulczycki | J. Cameron | D. Clouse | A. Morfopoulos | R. Machuzak | J.L. Hall | J.L. Hall | E.A. Kulczycki | D.S. Clouse | A.C. Morfopoulos | J.F. Montgomery | J.M. Cameron | R.J. Machuzak
[1] R. Lorenz,et al. Post-Cassini Exploration of Titan - Science Rationale and Mission Concepts , 2000 .
[2] Jack A. Jones,et al. Titan Airship Explorer , 2002, Proceedings, IEEE Aerospace Conference.
[3] S. B. V. Gomes,et al. An investigation into the flight dynamics of airships with application to the YEZ-2A , 1990 .
[4] Josué Jr. Guimarães Ramos,et al. Modelling, Control and Perception for an Autonomous Robotic Airship , 2000, Sensor Based Intelligent Robots.
[5] Alberto Elfes,et al. Towards a substantially autonomous aerobot for exploration of Titan , 2004, IEEE International Conference on Robotics and Automation, 2004. Proceedings. ICRA '04. 2004.
[6] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[7] Andre Yavrouian,et al. An aerobot for global in situ exploration of Titan , 2004 .
[8] Stergios I. Roumeliotis,et al. Augmenting inertial navigation with image-based motion estimation , 2002, Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292).
[9] J. Balaram,et al. DSENDS - A high-fidelity dynamics and spacecraft simulator for entry, descent and surface landing , 2002, Proceedings, IEEE Aerospace Conference.
[10] Josué Jr. Guimarães Ramos,et al. Robotic Airships for Exploration of Planetary Bodies with an Atmosphere: Autonomy Challenges , 2003, Auton. Robots.