C4I2WS system of systems integration for the future army

1999 ◽  
Author(s):  
Michael Kelley ◽  
Richard S. Pei
Author(s):  
O. V. Demianchuk

In article the condition of the existing cooperation and the prospect of development of the relations of the People's Republic of China with the states of Central and Eastern Europe in the 16 + 1 format within forming geopolitical and  systems, integration processes in Eurasia which China creates around itself in the form of the New Silk way. The main ways and possibilities of cooperation of Ukraine in the 16 + 1 format are defined. Conclusions are drawn and the corresponding recommendations are made.


Author(s):  
Elisa Veronese ◽  
Matteo Giacomo Prina ◽  
Alberto Berizzi ◽  
David Moser ◽  
Giampaolo Manzolini

Author(s):  
Matúš Péči ◽  
Pavel Važan

Abstract The paper examines systems integration and its main levels at higher levels of control. At present, the systems integration is one of the main aspects participating in the consolidation processes and financial flows of a company. Systems Integration is a complicated emotionconsuming process and it is often a problem to choose the right approach and level of integration. The research focused on four levels of integration, while each of them is characterized by specific conditions. At each level, there is a summary of recommendations and practical experience. The paper also discusses systems integration between the information and MES levels. The main part includes user-level integration where we describe an example of such integration. Finally, we list recommendations and also possible predictions of the systems integration as one of the important factors in the future.


2021 ◽  
pp. 259-329
Author(s):  
Alistair McConnell ◽  
Daniel Mitchell ◽  
Karen Donaldson ◽  
Sam Harper ◽  
Jamie Blanche ◽  
...  

2014 ◽  
Vol 926-930 ◽  
pp. 3806-3811 ◽  
Author(s):  
Shu Teng Zhang ◽  
Ya Jie Dou ◽  
Qing Song Zhao

The capability planning is a fundamental task when designing a Weapon System of Systems (WSOS). Uncertainties exist when building WSOS. It is difficult to select the most appropriate alternatives under the background of system operations. The programming of capability of WSOS is a multi-criteria decision-making problem. To resolve this problem, a scenario-based multi-criteria decision-making methodology is proposed. Scenario describes the future situation may occur, and also presents the uncertainty of reality. In this paper, scenario was modeled by the key variables in which experts and stakeholders are interested. TOPSIS was also improved based on multiple scenarios. Finally, the method is validated by an example of armored weapon systems.


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