Journals
  Publication Years
  Keywords
Search within results Open Search
Please wait a minute...
For Selected: Toggle Thumbnails
Research on C4ISR System Architecture for Human Computer Fusion
ZHANG Zhao-chen, MAO Xiao-bin, ZHOU Guang-xia
Modern Defense Technology    2021, 49 (1): 32-39.   DOI: 10.3969/j.issn.1009-086x.2021.01.005
Abstract422)      PDF (5304KB)(1258)       Save
In the intelligent war,building a “computer brain” that can understand, think and cooperate with human is one of the development directions of the future C4ISR system.The design concept of C4ISR system architecture for human-computer fusion is proposed,which is the transfer of human intelligence to computer intelligence.The core elements of the system composition such as the game confrontation deduction environment is designed innovatively.The operational mechanisms before and during the war are elaborated.The C4ISR system architecture paradigm of human-computer fusion is formed.Finally,taking intelligent target recognition and weapon control as an example, using the Department of Defense Architecture Framework (DoDAF) and the architecture design tool,the application process of the architecture paradigm in the next generation system design is described.
Reference | Related Articles | Metrics
Relay Route Planning Method for Connectivity of Airborne Hierarchical Network
ZHANG Zhao-chen, QIAN Ning
Modern Defense Technology    2018, 46 (1): 100-107.   DOI: 10.3969/j.issn.1009-086x.2018.01.016
Abstract213)            Save
For the problem of communication support for the mission of aircraft formation, the connectivity of the network is ensured by way of adding relay nodes according to the characteristics of airborne hierarchical network. A relay route planning method for connectivity of airborne hierarchical network is presented. Taking aircraft mission routes as input, the method optimizes the spanning tree by comparing whether the connected component of the vertex of the edge in minimum spanning tree (MST) is the same as the previous time. The relay segment vectors are connected with the degree of the vertex of the relay segment vectors and the motion time of the relay nodes between two relay segment vectors as the joint weight. Simulation demonstrates that the proposed method can achieve the reuse of relay nodes in time and space. Compared with the traditional algorithm, the method can effectively reduce the number of relay nodes, and achieve the optimization of relay node routes.
Reference | Related Articles | Metrics