This note investigates the problem of parameter estimation for a class of nonlinear systems. We show that by placing a member of this class of systems into a hybrid dynamical system, we can identify its parameter exactly and in finite time. Furthermore, by using tools developed for hybrid systems, we show that the estimation has robust properties. In particular, the hybrid system contains a compact globally asymptotically stable set where the stability is robust to small perturbations. We also present conditions that ensure convergence of the parameter estimate
Hybrid systems are dynamical systems where the state is allowed to both flow continuously and jump d...
Hybrid systems are dynamical systems where the state is allowed to both flow continuously and jump d...
Robust stability results for nominally linear hybrid systems are obtained from total stability theor...
This note investigates the problem of parameter estimation for a class of nonlinear systems. We show...
This note investigates the problem of parameter estimation for a class of nonlinear systems. We show...
This note investigates the problem of parameter estimation for a class of nonlinear systems. We show...
A hybrid algorithm inspired by [1] is given that identifies a parameter for a class of nonlinear sys...
A hybrid algorithm inspired by [1] is given that identifies a parameter for a class of nonlinear sys...
Estimating the unknown parameters of a system is critical in many engineering applications, such as ...
This paper introduces notions and tools for finite time stability of closed sets for a class of hybr...
This paper introduces notions and tools for finite time stability of closed sets for a class of hybr...
Motivated by the design of observers with good performance and robustness to measurement noise, the ...
Motivated by the design of observers with good performance and robustness to measurement noise, the ...
Abstract Robust stability results for nominally linear hybrid systems are obtained from total stabil...
Notions and tools for finite time stability of closed sets for hybrid dynamical systems modeled as h...
Hybrid systems are dynamical systems where the state is allowed to both flow continuously and jump d...
Hybrid systems are dynamical systems where the state is allowed to both flow continuously and jump d...
Robust stability results for nominally linear hybrid systems are obtained from total stability theor...
This note investigates the problem of parameter estimation for a class of nonlinear systems. We show...
This note investigates the problem of parameter estimation for a class of nonlinear systems. We show...
This note investigates the problem of parameter estimation for a class of nonlinear systems. We show...
A hybrid algorithm inspired by [1] is given that identifies a parameter for a class of nonlinear sys...
A hybrid algorithm inspired by [1] is given that identifies a parameter for a class of nonlinear sys...
Estimating the unknown parameters of a system is critical in many engineering applications, such as ...
This paper introduces notions and tools for finite time stability of closed sets for a class of hybr...
This paper introduces notions and tools for finite time stability of closed sets for a class of hybr...
Motivated by the design of observers with good performance and robustness to measurement noise, the ...
Motivated by the design of observers with good performance and robustness to measurement noise, the ...
Abstract Robust stability results for nominally linear hybrid systems are obtained from total stabil...
Notions and tools for finite time stability of closed sets for hybrid dynamical systems modeled as h...
Hybrid systems are dynamical systems where the state is allowed to both flow continuously and jump d...
Hybrid systems are dynamical systems where the state is allowed to both flow continuously and jump d...
Robust stability results for nominally linear hybrid systems are obtained from total stability theor...