International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is modeled as a Mayer problem in optimal control. The optimal solution can be found as an extremal, solution of the Maximum Principle and analyzed with the techniques of geometric control. This leads to a numerical investigation based on so-called indirect methods using the HamPath software. The results are then compared with a direct method implemented within the Bocop toolbox. Finally lmi techniques are used to estimate a global optimum
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
International audienceThe objective of this article is to introduce the tools to analyze the contras...
International audienceThe objective of this article is to introduce the tools to analyze the contras...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
Abstract — In this article, the contrast imaging problem in nuclear magnetic resonance is modeled as...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
Abstract. In this article, the contrast imaging problem by saturation in nuclear magnetic resonance ...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
International audienceThe objective of this article is to introduce the tools to analyze the contras...
International audienceThe objective of this article is to introduce the tools to analyze the contras...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
Abstract — In this article, the contrast imaging problem in nuclear magnetic resonance is modeled as...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
International audienceIn this article, the contrast imaging problem in nuclear magnetic resonance is...
Abstract. In this article, the contrast imaging problem by saturation in nuclear magnetic resonance ...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
In this article, the contrast imaging problem by saturation in nuclear magnetic resonance is modeled...
International audienceThe objective of this article is to introduce the tools to analyze the contras...
International audienceThe objective of this article is to introduce the tools to analyze the contras...