Exact(39)
The validity of the derived condition is analyzed from two viewpoints.
Based on the derived condition, the state-feedback controller design approach is also given.
With these parameters fixed, a design procedure for the desired H∞ filter is also presented based on the derived condition.
Then, based on the derived condition, and applying linear matrix inequalities LMIs) techniques, the passive state feedback controller is synthesized.
Based on the derived condition, the reliable passive control problem is solved, and an explicit expression for the desired controller is given.
Based on the derived condition, the full-order and reduced-order filters with mode-independent characterization are designed in a unified framework.
Similar(21)
Based on the derived conditions, a design procedure for the H∞ filter is also presented.
The derived conditions can be easily solved with the help of LMI toolbox in Matlab.
By using software such as MATLAB or Mathematica, the derived conditions in the theorem can be verified easily.
The derived conditions can analyze the finite-time stability of system and calculate the upper bound of time delay.
Since the derived conditions are all convex in system matrices, it is convenient to be applied into H∞ controller design.
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