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Exact(60)
The usefulness of the proposed approach has been demonstrated by solving a set of test problems.
The local impulse gain matrices can be designed by solving a set of LMIs.
The observer gains are determined by solving a set of Linear Matrix Inequality (LMI).
Filter gains are shown to be determined by solving a set of linear matrix inequalities (LMIs).
Moreover, the desired controller gains can be obtained by solving a set of LMI.
The lowest possible gain of the designed observer is achieved by solving a set of LMIs.
And then the controller design approach is given by solving a set of LMIs.
The control scheme can be obtained by solving a set of linear matrix inequalities.
The desired controller can be obtained by solving a set of matrix inequalities.
The desired fault detection filter can be designed by solving a set of LMIs.
The solution is obtained by solving a set of algebraic equations with only five unknown parameters.
More suggestions(15)
by solving a revenue
by solving a optimization
by solving a missile
by replacing a set
by solving a linear
by solving a difference
by solving a sequence
by solving a benchmark
by solving a sub-problem
by solving a parameter-dependent
by solving a min-max
by solving a series
by solving a system
by solving a number
by solving a minimization
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com