This study addresses three sliding mode heading controllers for dealing with uncertain wave disturbances. A nonlinear steering model is derived, and the feedback linearization method is chosen to simplify the nonlinear system in this study. The adaptive method and disturbance observer technique are proposed for course keeping and ensuring robust performance of the time varying wave moment and actuator dynamics. Finally, the simulation results on a navy ship illustrate the effectiveness of the presented control algorithms for course keeping
258 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1984.During the seventies, the gre...
This PhD thesis considers topics within automatic motion control of ships, which has been an active ...
Ways to improve maneuverability of marine surface vessels through judicious application of advanced ...
This study addresses three sliding mode heading controllers for dealing with uncertain wave disturba...
The paper addresses an important issue in surface vessel motion control practice that the ship dynam...
The paper reports the design and tests of the planar autopilot navigation system in the three-degree...
Most of the existing nonlinear ship course-keeping control systems are designed with the Nomoto mode...
The main goal here is to design a proper and efficient controller for a ship autopilot based on the ...
Motion control systems have a significant impact on the performance of ships and marine structures a...
Abstract: Since a ship yard usually provides insufficient data for developing a ship control system,...
The surface ship path control problem is formulated as a nonlinear state space control problem subje...
This paper studied the path following problem for an underactuated vessel sailing in restricted wate...
[[abstract]]Under the control constraint of rudder angle, an on-line optimal course handling control...
A factorized Nonlinear Generalized Minimum Variance (NGMV) control law is developed for a combined r...
Ways to improve maneuverability of marine surface vessels through judicious application of advanced ...
258 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1984.During the seventies, the gre...
This PhD thesis considers topics within automatic motion control of ships, which has been an active ...
Ways to improve maneuverability of marine surface vessels through judicious application of advanced ...
This study addresses three sliding mode heading controllers for dealing with uncertain wave disturba...
The paper addresses an important issue in surface vessel motion control practice that the ship dynam...
The paper reports the design and tests of the planar autopilot navigation system in the three-degree...
Most of the existing nonlinear ship course-keeping control systems are designed with the Nomoto mode...
The main goal here is to design a proper and efficient controller for a ship autopilot based on the ...
Motion control systems have a significant impact on the performance of ships and marine structures a...
Abstract: Since a ship yard usually provides insufficient data for developing a ship control system,...
The surface ship path control problem is formulated as a nonlinear state space control problem subje...
This paper studied the path following problem for an underactuated vessel sailing in restricted wate...
[[abstract]]Under the control constraint of rudder angle, an on-line optimal course handling control...
A factorized Nonlinear Generalized Minimum Variance (NGMV) control law is developed for a combined r...
Ways to improve maneuverability of marine surface vessels through judicious application of advanced ...
258 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1984.During the seventies, the gre...
This PhD thesis considers topics within automatic motion control of ships, which has been an active ...
Ways to improve maneuverability of marine surface vessels through judicious application of advanced ...