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Optimization of fighter aircraft evasive trajectories for radar threats avoidance

  • Northwestern Polytechnical University Xian
  • Collaborative Innovation Center of Electric Vehicles in Beijing

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

2 Scopus citations

Abstract

The problem of optimal evasive trajectories of fighter aircraft for radar threats avoidance is studied. At the core of the function is the tactical level trajectory planner that is highly integrated with the mission level planning system. The trajectory planner is described that can find an optimal or sub-optimal trajectory to penetrate through hostile enemy radar threats with a high survivable probability. Calculus of Variations is introduced to deal with the flight constraints and an analytic solution for monostatic radar avoidance has been obtained [1]. Based on the analytic solution, the concept of solution space has been proposed to generate evasive policy sets to cover the characteristic constraints. In the solution space, the Bayesian Decision Theory Combined Dynamic Programming Algorithm is adopted to get the global optimal solution to problem of multiple radars avoidance. The results are compared to other path planning methods, especially the methods of Voronoi diagrams and A*.

Original languageEnglish
Title of host publication2007 IEEE International Conference on Control and Automation, ICCA
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages303-307
Number of pages5
ISBN (Print)1424408180, 9781424408184
DOIs
StatePublished - 2007
Event2007 IEEE International Conference on Control and Automation, ICCA - Guangzhou, China
Duration: 30 May 20071 Jun 2007

Publication series

Name2007 IEEE International Conference on Control and Automation, ICCA

Conference

Conference2007 IEEE International Conference on Control and Automation, ICCA
Country/TerritoryChina
CityGuangzhou
Period30/05/071/06/07

Keywords

  • Bayesian decision theory
  • Calculus of variations
  • Dynamic programming
  • Fighter aircraft
  • Radar threats avoidance

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