The tracking problem is considered for a recurring class of systems, such as the Cartesian robots with real actuators, some transportation systems, and scanning devices used for medical and engineering applications. Some theorems are proved to design a PD type controller, with a possible compensation signal, in order to track sufficiently smooth trajectories with a prescribed maximum error. The developed design methodology is illustrated through two engineering examples. The first example concerns the safety distance control of an electric vehicles fleet. The second example deals with the identification of an antenna scanning system and the prototype design of a new controller that provides better performance than the current one
Autonomous vehicle consists self-learning process consists recognizing environment, real time locali...
A major issue in the automatic guidance of vehicles is the design of control laws dedicated to the s...
This monograph is framed within the context of off-road mobile robotics. In particular, it discusses...
The tracking problem is considered for a recurring class of systems, such as the Cartesian robots wi...
A tracking problem is considered for a very recurring class of systems, such as Cartesian robots wi...
In this paper, some theorems are stated, which allow to design robust control laws without chatterin...
This paper deals with trajectory tracking control of a car-like robot. By exploiting the differentia...
In this paper, the trajectory tracking problem for car-like mobile robots have been studied. The sys...
This paper presents controllers design procedure for dynamic trajectory tracking of a highly automat...
The paper provides an approach to design robust smooth controllers that allow a plant belonging to a...
A tracking controller for robots that is based on position measurements only is presented. The contr...
Path-tracking controllers for tractor-trailer-like robots are de-signed by generalizing the geometri...
In this paper, the design of the longitudinal and lateral controller for dynamic trajectory tracking...
In this paper, for a significant class of uncertain MIMO systems, in particular for robots, new fund...
Dynamic robustness of a control system is a crucial requirement for self-driving cars. To this aim, ...
Autonomous vehicle consists self-learning process consists recognizing environment, real time locali...
A major issue in the automatic guidance of vehicles is the design of control laws dedicated to the s...
This monograph is framed within the context of off-road mobile robotics. In particular, it discusses...
The tracking problem is considered for a recurring class of systems, such as the Cartesian robots wi...
A tracking problem is considered for a very recurring class of systems, such as Cartesian robots wi...
In this paper, some theorems are stated, which allow to design robust control laws without chatterin...
This paper deals with trajectory tracking control of a car-like robot. By exploiting the differentia...
In this paper, the trajectory tracking problem for car-like mobile robots have been studied. The sys...
This paper presents controllers design procedure for dynamic trajectory tracking of a highly automat...
The paper provides an approach to design robust smooth controllers that allow a plant belonging to a...
A tracking controller for robots that is based on position measurements only is presented. The contr...
Path-tracking controllers for tractor-trailer-like robots are de-signed by generalizing the geometri...
In this paper, the design of the longitudinal and lateral controller for dynamic trajectory tracking...
In this paper, for a significant class of uncertain MIMO systems, in particular for robots, new fund...
Dynamic robustness of a control system is a crucial requirement for self-driving cars. To this aim, ...
Autonomous vehicle consists self-learning process consists recognizing environment, real time locali...
A major issue in the automatic guidance of vehicles is the design of control laws dedicated to the s...
This monograph is framed within the context of off-road mobile robotics. In particular, it discusses...