Journal of System Simulation ›› 2024, Vol. 36 ›› Issue (7): 1621-1630.doi: 10.16182/j.issn1004731x.joss.23-0393

Previous Articles    

Simulation System for Carrier-based Aircraft Ammunition Support Scheduling

Liu Zhe1,2,3(), Chen Jiafeng4, Ma Junfei4, Ma Songhua1,2,3()   

  1. 1.School of Mechanical Engineering, Shandong University, Ji′nan 250061, China
    2.Key Laboratory of High-efficiency and Clean Mechanical Manufacture, Ministry of Education, Ji′nan 250061, China
    3.National Experimental Teaching Demonstration Center of Mechanical Engineering, Shandong University, Ji′nan 250061, China
    4.Hunan Vanguard Group Co. Ltd. , Changsha 419503, China
  • Received:2023-04-07 Revised:2023-05-31 Online:2024-07-15 Published:2024-07-12
  • Contact: Ma Songhua E-mail:202214317@mail.sdu.edu.cn;msh_1216@sdu.edu.cn

Abstract:

For inefficient scheduling of carrier-based aircraft ammunition support on the flight deck of aircraft carriers, a Unity3D-based 3D virtual demonstration method for carrier-based aircraft ammunition scheduling is proposed, and a 3D virtual simulation system for carrier-based aircraft ammunition scheduling on the flight deck of aircraft carriers is constructed. A problem model targeted at carrier-based aircraft ammunition transportation and loading scheduling process as well as processing rules for path determination, sequence constraint, and loading position compensation are established based on the defining system. An optimal solution for the scheduling process is realized by using the improved discrete grey wolf optimizer algorithm. By referring to the publicly available scenario information, a virtual interactive scene of carrier-based aircraft ammunition scheduling support on the flight deck of an aircraft carrier is created, and a system script performing various control tasks for mutual interactive control is designed. A controllable real-time demonstration of the virtual scenario is realized by loading on the system virtual scenario entity model respectively. The validity and feasibility of the proposed method are verified based on the optimal solution and simulation demonstration of the scenario example.

Key words: carrier-based aircraft, ammunition scheduling, Unity3D, 3D virtual simulation, real-time demonstration

CLC Number: