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目录
- 飞机系统PHM技术
- 战斗机预测与健康管理技术应用的思考
- 综合系统健康管理关键技术与研究路径
- 飞机PHM技术发展近况及在F-35应用中遇到的问题及挑战
- 民用客机健康管理系统的工程技术研究
- 基于场景的民用飞机健康管理可视化仿真研究与实现
- 航空机电系统先进诊断与预测技术研究
- 考虑数据选择的航空发动机基线建模方法
- 飞机结构PHM技术
- 民用飞机复合材料结构健康监测技术研究
- 疲劳裂纹扩展的卷积神经网络辨识
- SPHM技术在新机研制中的实践与发展
- 基于线性极化腐蚀传感器的飞机结构腐蚀监控
- 结构状态监测技术飞行应用的若干问题与关键技术
- 光纤传感在飞机结构健康监测中的应用进展和展望
- 一种基于深度学习的复合材料结构损伤导波监测方法
- 飞机结构应变监控技术研究进展
- Aircraft System PHM Technology
- Research on Application of Prognostics and Health Management Technology for Fighter Aircraft
- Key Technologies and Research Paths of Integrated System Health Management
- Recent Development of Aircraft PHM Technology and Problems and Challenges Encountered in the Application on F-35
- Research on Engineering Techniques of Civil Aircraft Health Management System
- Research and Implementation of Visual Simulation of Civil Aircraft Health Management Based on Scenario
- Research on Advanced Diagnosis and Prognosis Technology of Aeronautical Electromechanical System
- Aircraft Engine Baseline Modeling Method Based on Data Selection
- Aircraft Structure PHM Technology
- Research on Structural Health Monitoring Technology of Civil Aircraft Composites
- Convolutional Neural Network Based Fatigue Crack Growth Identification
- SPHM Technology Practice and Development in a New Generation of Fighter
- Corrosion Monitoring of Aircraft Structure Based on Linear Polarization Resistance Sensor
- Issues and Key Technologies in Flight Application of Structural Condition Monitoring Technology
- Application Progress and Prospect of Optical Fiber Sensor in Aircraft Structural Health Monitoring
- A Deep-Learning-Based Method For Damage Identification of Composite Laminates
- Research Progress on Strain Monitoring Technology for Aircraft Structures