شماره ركورد كنفرانس :
4819
عنوان مقاله :
A dynamic model for weapon-target assignment problem
عنوان به زبان ديگر :
A dynamic model for weapon-target assignment problem
پديدآورندگان :
Shojaeifard, Amin Mansoori1, Ali Nakhaei Amrodi Alireza ashojaeifard@ihu.ac.ir Department of Mathematics and Statistics, Imam Hossein Comprehensive University, Tehran, Iran. , Mansoori Amin am.ma7676@yahoo.com Department of Mathematics and Statistics, Imam Hossein Comprehensive University, Tehran, Iran. , Nakhaei Amrodi Ali kpnakhaei@ihu.ac.ir Department of Mathematics and Statistics, Imam Hossein Comprehensive University, Tehran, Iran.
كليدواژه :
Weapon , target assignment problem , nonlinear optimization problem , projection recurrent neural network , global exponential stability.
عنوان كنفرانس :
سومين همايش بين المللي تركيبيات، رمزنگاري و محاسبات
چكيده فارسي :
In the present research, we are going to obtain the solution of the Weapon-Target Assignment (WTA) problem. According to our search in the scientific reported papers, this is the first scientific attempt for resolving of WTA problem by projection recurrent neural network models. Here, by reformulating the original problem to an unconstrained problem a novel projection recurrent neural network model as high performance tool to provide the solution of the problem is proposed. In continuous, the global exponential stability of the system was proved in this research. In the final step, simulation results are presented to depict the performance and the feasibility of the method. Reported results were compared with some other published papers.
چكيده لاتين :
In the present research, we are going to obtain the solution of the Weapon-Target Assignment (WTA) problem. According to our search in the scientific reported papers, this is the first scientific attempt for resolving of WTA problem by projection recurrent neural network models. Here, by reformulating the original problem to an unconstrained problem a novel projection recurrent neural network model as high performance tool to provide the solution of the problem is proposed. In continuous, the global exponential stability of the system was proved in this research. In the final step, simulation results are presented to depict the performance and the feasibility of the method. Reported results were compared with some other published papers.