Pilot approach and landing capability evaluation based on feature fusion
|更新时间:2026-07-06
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Pilot approach and landing capability evaluation based on feature fusion
Advances in Aeronautical Science and EngineeringPages: 1-11(2026)
作者机构:
1.中国民用航空飞行学院 飞行技术学院, 广汉 618307
2.四川省民航飞行技术与飞行安全工程技术研究中心, 广汉 618307
3.国产民机飞行与运行支持四川省工程研究中心, 广汉 618307
作者简介:
基金信息:
DOI:
CLC:V323.11
Received:02 April 2026,
Revised:2026-06-23,
Online First:06 July 2026,
稿件说明:
移动端阅览
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YANG Yong,WU Guanchen,XU Kaijun, et al. Pilot approach and landing capability evaluation based on feature fusion[J]. Advances in Aeronautical Science and Engineering.(in Chinese)
杨泳,吴冠辰,徐开俊,等. 基于特征融合的飞行员进近着陆能力评价[J]. 航空工程进展.DOI:
YANG Yong,WU Guanchen,XU Kaijun, et al. Pilot approach and landing capability evaluation based on feature fusion[J]. Advances in Aeronautical Science and Engineering.(in Chinese)DOI:
Pilot approach and landing capability evaluation based on feature fusion
Current evaluations of pilots' approach and landing maneuvering capabilities mostly rely on single manual features, lacks a feature system that balances physical interpretability and complex temporal pattern capture. Moreover, the correlation mechanism between maneuvering behavior and flight quality remains unclear. Based on 105 sets of quick access recorder (QAR) data from Boeing 737-800 aircraft, this study constructs a two‑stage, result‑oriented evaluation system covering “final approach + landing flare” and introduces an energy management evaluation module. It integrates manual features and long short-term memory (LSTM) latent features to represent maneuvering behavior, and combines SHAP analysis, K‑means clustering, and statistical tests to reveal how maneuvering features influence landing quality. Experiments show that the evaluation results achieve 90% consistency with manual assessments by airline experts, core features are significantly correlated with landing quality, and two typical maneuvering patterns are identified. The findings provide reliable data support for personalized pilot training and airline safety management.
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