TY - GEN
T1 - Towards heading control of an autonomous sailing platform through weight balancing
AU - He, J.
AU - Xiao, L.
AU - Jouffroy, J.
PY - 2012
Y1 - 2012
N2 - Autonomous sailing platforms or sailing robots are a class of autonomous surface vehicles using only the wind as their means of propulsion. In order to adapt to harsh conditions at sea, a robust design of an autonomous sailing platform is presented in this paper. The proposed sailing robot consists of a hull to which are attached a fixed and rigid sail, and an internal moving weight system used for steering. The control objective is to maintain a desired heading angle for the platform by automatically controlling the movable mass. Two different weight balancing mechanisms, i.e. a so-called linear weight mechanism and a pendulum mechanism, are introduced together with the mathematical model of the vehicle, exposed to ocean currents and wind variations. Furthermore, to allow maneuverability, dimensioning of the mass weight and the vehicle beam (or the pendulum length) are considered through simple nonlinear …
AB - Autonomous sailing platforms or sailing robots are a class of autonomous surface vehicles using only the wind as their means of propulsion. In order to adapt to harsh conditions at sea, a robust design of an autonomous sailing platform is presented in this paper. The proposed sailing robot consists of a hull to which are attached a fixed and rigid sail, and an internal moving weight system used for steering. The control objective is to maintain a desired heading angle for the platform by automatically controlling the movable mass. Two different weight balancing mechanisms, i.e. a so-called linear weight mechanism and a pendulum mechanism, are introduced together with the mathematical model of the vehicle, exposed to ocean currents and wind variations. Furthermore, to allow maneuverability, dimensioning of the mass weight and the vehicle beam (or the pendulum length) are considered through simple nonlinear …
KW - Teknik, ingeniørvidenskab og IT
KW - Automatic control
KW - Reduced actuation
KW - Sailing robotics
UR - http://www.scopus.com/inward/record.url?eid=2-s2.0-84900477514&partnerID=MN8TOARS
U2 - 10.3182/20120919-3-IT-2046.00067
DO - 10.3182/20120919-3-IT-2046.00067
M3 - Konferenceartikel i proceeding
BT - IFAC Proceedings Volumes (IFAC-PapersOnline)
ER -