The goal of this paper is to investigate clock steering methods in the framework of control theory. The current steering techniques have been developed using different approaches. Our aim is to apply control theory methods to the analysis of the most common steering strategies. The first issue to be studied is the evaluation of the clock models, and the laws that govern the control signal and the controlled one. A correct modelling of the control electronic device (actuator), which is typically a microstepper, allows to obtain a suitable model of the controlled process. The obtained results are presented, they are very encouraging and suggest further investigation of these problem
AbstractRuntime verification involves monitoring the system at runtime to check for conformance of t...
This paper proposes a method of establishing a time reference without a free paper time scale. The c...
Mathematical control models are widely used in tuning manual control systems and understanding human...
The goal of this paper is to investigate clock steering methods in the framework of control theory. ...
Precision and reliability of timescales are of importance in many situations, in particular in satel...
Robust, reliable and stable time scales are needed in a wide field of applications, i.e. in the Glob...
A survey about approaches developed around the controllability of control systems on time scales is ...
The development of robust and accurate time scales is a key parameter for various future application...
A time scale is a procedure for combining the data from an ensemble of clocks or frequency standards...
Control systems are becoming in-creasingly complex from both thecontrol and computer scienceperspect...
This paper presents work aimed at supporting the design of temporal aspects of socio-technical syste...
Developments of observability of control systems on time scales are presented. Certain conventional...
Global navigation satellite systems need a stable and robust system time in order to provide service...
One of the main features of the behavioral approach as a foundation framework for the theory of dyna...
W pracy przedstawiono nową koncepcję sterowania obiektami dynamicznymi, tak liniowymi jak i nielinio...
AbstractRuntime verification involves monitoring the system at runtime to check for conformance of t...
This paper proposes a method of establishing a time reference without a free paper time scale. The c...
Mathematical control models are widely used in tuning manual control systems and understanding human...
The goal of this paper is to investigate clock steering methods in the framework of control theory. ...
Precision and reliability of timescales are of importance in many situations, in particular in satel...
Robust, reliable and stable time scales are needed in a wide field of applications, i.e. in the Glob...
A survey about approaches developed around the controllability of control systems on time scales is ...
The development of robust and accurate time scales is a key parameter for various future application...
A time scale is a procedure for combining the data from an ensemble of clocks or frequency standards...
Control systems are becoming in-creasingly complex from both thecontrol and computer scienceperspect...
This paper presents work aimed at supporting the design of temporal aspects of socio-technical syste...
Developments of observability of control systems on time scales are presented. Certain conventional...
Global navigation satellite systems need a stable and robust system time in order to provide service...
One of the main features of the behavioral approach as a foundation framework for the theory of dyna...
W pracy przedstawiono nową koncepcję sterowania obiektami dynamicznymi, tak liniowymi jak i nielinio...
AbstractRuntime verification involves monitoring the system at runtime to check for conformance of t...
This paper proposes a method of establishing a time reference without a free paper time scale. The c...
Mathematical control models are widely used in tuning manual control systems and understanding human...