Fighter Equipment Contribution Evaluation Based on Maneuver Decision
With the development of integrated technology and equipment systems, decision-making support has been increasingly applied in equipment research and development, especially in air combat. The development of airborne equipment can significantly improve the confrontation ability of manned fighters. Co...
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doaj-5fecd56cd19344e39b40f0a83f3c89412021-09-30T23:01:13ZengIEEEIEEE Access2169-35362021-01-01913224113225410.1109/ACCESS.2021.31151429547322Fighter Equipment Contribution Evaluation Based on Maneuver DecisionHanchen Lu0https://orcid.org/0000-0003-0835-5415Boyi Wu1https://orcid.org/0000-0001-7210-6064Junqing Chen2https://orcid.org/0000-0002-8022-2716School of Economics and Management, Harbin Engineering University, Heilongjiang, ChinaSchool of Economics and Management, Harbin Engineering University, Heilongjiang, ChinaSchool of Economics and Management, Harbin Engineering University, Heilongjiang, ChinaWith the development of integrated technology and equipment systems, decision-making support has been increasingly applied in equipment research and development, especially in air combat. The development of airborne equipment can significantly improve the confrontation ability of manned fighters. Contribution evaluations restrict decision making in equipment research and development and are important in beyond-visual-range (BVR) air combat, which involves dynamic and uncertain enemy positions. This paper proposes a contribution evaluation model for BVR air combat based on autonomous maneuver decision making; this approach mainly includes a situation evaluation model, a maneuver decision model, and a one-to-one BVR air combat evaluation model. However, such a model includes a high-dimensional state and action space, which require many computations, especially if equipment changes occur. Then, an autonomous maneuver decision algorithm based on the influence diagram method is proposed; this algorithm uses a rolling time domain concept to improve combat fidelity and obtain useful equipment contribution evaluation results. Finally, one-to-one BVR air combat is simulated based on different aircraft models and airborne equipment. The simulation results show that the proposed maneuver decision model and countermeasure evaluation model can help experts quantify the contributions of equipment and provide adequate decision-making support to improve equipment systems.https://ieeexplore.ieee.org/document/9547322/Equipment contributioninfluence diagramsmaneuver decisionsituation assessment |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hanchen Lu Boyi Wu Junqing Chen |
spellingShingle |
Hanchen Lu Boyi Wu Junqing Chen Fighter Equipment Contribution Evaluation Based on Maneuver Decision IEEE Access Equipment contribution influence diagrams maneuver decision situation assessment |
author_facet |
Hanchen Lu Boyi Wu Junqing Chen |
author_sort |
Hanchen Lu |
title |
Fighter Equipment Contribution Evaluation Based on Maneuver Decision |
title_short |
Fighter Equipment Contribution Evaluation Based on Maneuver Decision |
title_full |
Fighter Equipment Contribution Evaluation Based on Maneuver Decision |
title_fullStr |
Fighter Equipment Contribution Evaluation Based on Maneuver Decision |
title_full_unstemmed |
Fighter Equipment Contribution Evaluation Based on Maneuver Decision |
title_sort |
fighter equipment contribution evaluation based on maneuver decision |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2021-01-01 |
description |
With the development of integrated technology and equipment systems, decision-making support has been increasingly applied in equipment research and development, especially in air combat. The development of airborne equipment can significantly improve the confrontation ability of manned fighters. Contribution evaluations restrict decision making in equipment research and development and are important in beyond-visual-range (BVR) air combat, which involves dynamic and uncertain enemy positions. This paper proposes a contribution evaluation model for BVR air combat based on autonomous maneuver decision making; this approach mainly includes a situation evaluation model, a maneuver decision model, and a one-to-one BVR air combat evaluation model. However, such a model includes a high-dimensional state and action space, which require many computations, especially if equipment changes occur. Then, an autonomous maneuver decision algorithm based on the influence diagram method is proposed; this algorithm uses a rolling time domain concept to improve combat fidelity and obtain useful equipment contribution evaluation results. Finally, one-to-one BVR air combat is simulated based on different aircraft models and airborne equipment. The simulation results show that the proposed maneuver decision model and countermeasure evaluation model can help experts quantify the contributions of equipment and provide adequate decision-making support to improve equipment systems. |
topic |
Equipment contribution influence diagrams maneuver decision situation assessment |
url |
https://ieeexplore.ieee.org/document/9547322/ |
work_keys_str_mv |
AT hanchenlu fighterequipmentcontributionevaluationbasedonmaneuverdecision AT boyiwu fighterequipmentcontributionevaluationbasedonmaneuverdecision AT junqingchen fighterequipmentcontributionevaluationbasedonmaneuverdecision |
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1716862625275445248 |