Hybrid Tri-Objective Optimization of F-15 Fleet Modernization Scheduling

Abstract

The F-15 weapons system is vital to the Air Forces efforts to obtain air supremacy during conflict. Originally produced almost 50 years ago, technological advancement through systems modifications is necessary to ensure the Eagles lethality and survivability against next-generation adversarial threats. The F-15 Systems Program Office faces challenges to plan aircraft inductions for five fleet modernization programs. Optimal induction schedules are developed using binary-integer linear programming models. Diverse constraints such as manpower, equipment, modification kit availability, minimum operational flight levels, and integration of scheduled depot maintenance reveal that no feasible schedule exists. Two competing objectives representing the value of fully modernized airframes and the additional workload associated with modifications are explored using the weighted sums method. To enable model solvability, penalties are associated with constraint relaxations with an aggregate penalty term is incorporated into the objective function. Implementing value focused decision analysis techniques, a fleet hierarchy is establishes aircraft precedence for instances having scarce resources shared amongst multiple fighter jets. Sensitivity analysis is employed to examine impacts of various operationally realistic future scenarios.

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Document Details

Document Type
Technical Report
Publication Date
Mar 26, 2020
Accession Number
AD1107401

Entities

People

  • Richard S. Danaher

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Air Platforms

DTIC Thesaurus Topics

  • Aerial Warfare
  • Air Force
  • Aircraft Equipment
  • Aircraft Industry
  • Aircrafts
  • Airframes
  • Business Administration
  • Electronically Scanned Array
  • Fighter Aircraft
  • Goal Programming
  • Governments
  • Integer Programming
  • Life Cycle Management
  • Life Cycles
  • Linear Programming
  • Maintenance
  • Mathematical Models
  • Mathematical Programming
  • Multiobjective Optimization
  • National Security
  • Operations Research
  • Optimization
  • Scheduling (Production)
  • Systems Engineering
  • United States
  • Warfare

Readers

  • Life Cycle Cost Analysis
  • Mathematical Modeling and Probability Theory.
  • Unmanned Aerial System (UAS) Autonomous Capabilities and Mission Reconnaissance.