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Sufficient conditions for the existence of a solution to this problem have been established.
The existence of a solution to this inverse problem is shown.
The existence of a solution is first expressed geometrically, in terms of two polyhedral sets inclusion.
Existence of a solution, stability and some observer design issues are shown.
Moreover we give a new proof of the existence of a solution for problem (P).
Necessary and sufficient conditions for existence of a solution are derived from the abstract principle of maximum.
Under the assumption of a periodic inflow sufficient conditions for the existence of a solution are given.
Conditions for existence of a solution are derived, based on the solvability of an equivalent minimax problem.
Since the dependencies among the sub-models are resolved via fixed-point iteration, we prove the existence of a solution.
The existence of a solution is first expressed geometrically, in terms of the inclusion of two polyhedral sets.
We establish the existence of a solution and we determine some qualitative aspects of the optimal configurations.
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