MDSoSA super-network equilibrium optimization model based on information stream

XING Qinghua, XIA Lu, XU Hao

Systems Engineering - Theory & Practice ›› 2018, Vol. 38 ›› Issue (12) : 3253-3264.

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Systems Engineering - Theory & Practice ›› 2018, Vol. 38 ›› Issue (12) : 3253-3264. DOI: 10.12011/1000-6788(2018)12-3253-12

MDSoSA super-network equilibrium optimization model based on information stream

  • XING Qinghua1, XIA Lu2, XU Hao1
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Abstract

From the view of missile defense system-of-systems architecture's information chain, an information value supply-and-demand equilibrium optimization method of missile defense engage programme chain, which is made up of perceptive nodes, command control nodes and firepower nodes, was studied. Firstly, the modeling hypothesis of engage programme chain information relation in MDSoSA is presented. Based on the demand of information relation, the optimized condition for the perceptive level and the command control level and the firepower level of AMDSoSA are analyzed respectively, according to this, the information value supply-and-demand equilibrium model of MDSoSA supernetwork is established. Secondly, the equilibrium model is analyzed and transformed by the theory of generalized variational inequation. Based on the credibility measure of fuzzy demand, the credibility distribution and the expected value of fuzzy demand and fuzzy redundant and fuzzy deficient that belongs to command control nodes and firepower nodes. Fuzzy demand based variational inequality equilibrium optimization model of MDSoSA super-network is build. Finally, the method proposed was proved to be feasible through an example, and the effect that the demand's fuzziness impacts on the super-network of anti-missile architecture was discussed. Numerical examples are given to prove the validity and rationality of method.

Key words

information stream / missile defense system-of-systems architecture (MDSoSA) / super-network / variational inequality / fuzzy demand

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XING Qinghua , XIA Lu , XU Hao. MDSoSA super-network equilibrium optimization model based on information stream. Systems Engineering - Theory & Practice, 2018, 38(12): 3253-3264 https://doi.org/10.12011/1000-6788(2018)12-3253-12

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Funding

National Natural Science Foundation of China (71771216, 71701209)
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