For many applications, ranging from controls engineering to natural sciences and economics, precise dynamic models must be derived. In the vast majority of applications, such precise models cannot be derived by theoretical considerations only. The book discusses methods, which allow the determination of dynamic models based on measurements taken at the process, which is known as system identification or process identification respectively.
After a short introduction into the required methodology of continuous-time and discrete-time linear systems, the focus is first on the...
For many applications, ranging from controls engineering to natural sciences and economics, precise dynamic models must be derived. In the vast maj...
For many applications, ranging from controls engineering to natural sciences and economics, precise dynamic models must be derived. In the vast majority of applications, such precise models cannot be derived by theoretical considerations only. The book discusses methods, which allow the determination of dynamic models based on measurements taken at the process, which is known as system identification or process identification respectively.
After a short introduction into the required methodology of continuous-time and discrete-time linear systems, the focus is first on the...
For many applications, ranging from controls engineering to natural sciences and economics, precise dynamic models must be derived. In the vast maj...