Systems Engineering and Electronics ›› 2026, Vol. 48 ›› Issue (3): 946-961.doi: 10.12305/j.issn.1001-506X.2026.03.20

• Systems Engineering • Previous Articles    

Modeling and resource optimization of multi-platform collaborative task chaingame based on multi-stream mapping-dynamic verification

Zheng LI1,2,*, Minghao HE1, Qiaolin HU1   

  1. 1. Information Countermeasure Department,Air Force Early Warning Academy,Wuhan 430019,China
    2. Unit 95786 of the PLA,Chengdu 611400,China
  • Received:2024-11-20 Online:2026-03-25 Published:2026-04-13
  • Contact: Zheng LI

Abstract:

In view of lack of dynamic interaction and information uncertainty modeling in traditional task chain verification, a solution scheme is proposed. Firstly, construct the “decomposition-abstraction-verification” methodology system, structurally decompose the operational process into modular units, extract and parameterize the elements from the three dimensions of entities, information and rules, and establish a dynamic verification environment through ExtendSim. Then, a five flow collaborative mapping model is designed to abstract operational activities into a multi-dimensional coupling system of execution flow (time sequence), intelligence flow (interaction), material flow (resources), attribute flow (state) and decision flow (command and control). Finally, develop a closed-loop modeling framework to realize parameterization of operational primitives (time-consuming / probability / resources), modular programming of complex rules and multi-layer process nesting. Simulation results show that the proposed method can reflect the operational information activity law, and provide ideals and method for the evaluation of multi-platform collaborative task chain.

Key words: task chain, electronic countermeasure, modeling and simulation, ExtendSim

CLC Number: 

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