UiA Accelerated Life Time Bearing Test Rig – Test 1, 250 rpm 核心 · 已核验
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Vibration data from an accelerated lifetime test of a bearing. Contains raw vibration data and shaft position data. The mean shaft speed is 250 rpm. Can be used for fault diagnosis and remaining useful lifetime estimation. Please see "00_ReadMe.pdf" file for more details. Update - 3 January 2022: This dataset is now updated to use floating point values for shaft position data, which gives a much more accurate description of the shaft position.
本卡描述如含来自官方页的原文片段,其版权归原作者,不在本站 CC-BY 4.0 许可范围(见关于与许可)。
- 落地页
- https://doi.org/10.18710/BG1QNG
- 许可证
- CC0-1.0 (置信:verified_official)
- 国内可访问性
-
国内直连:可达 (2026-07-11 检测)
非直连:可达 (2026-07-11 检测)
「直连超时」表示检测窗口内未完成,系慢或不稳定证据,不构成封锁证据。 - 发布年份
- 2025
- 别名
- UiA Test 1
- 设备类型
rolling_bearing- PHM 任务
fault_diagnosisrul_prediction
运行工况
| condition_type: rotating_speed |
关联论文(36 篇)
仅表示这篇论文与本数据集在文献网络中相邻, 不代表该论文确实使用了本数据集。
- Accelerated Bearing Life-time Test Rig Development for Low Speed Data Acquisition 2017 · 首发该数据集
- Autonomous Bearing Fault Diagnosis Method based on Envelope Spectrum 首发该数据集
- A dual-stage LSTM framework for accurate prediction of bearing remaining useful life under shaft misalignment conditions 2026 · 候选引用(未核验)
- KUL-BPS: A Bearing Testing Platform in Addressing Data Scarcity in Condition Monitoring 2025 · 候选引用(未核验)
- A Systematic EV Bearing Degradation Testing Approach Considering Circulating Bearing Currents 2025 · 候选引用(未核验)
- CMAFI — Copula-based Multifeature Autocorrelation Fault Identification of rolling bearing 2024 · 候选引用(未核验)
- Leveraging industry 4.0 techniques for predictive equipment maintenance: From concept to commissioning 2024 · 候选引用(未核验)
- Autonomous Bearing Fault Diagnosis Based on Fault-Induced Envelope Spectrum and Moving Peaks-Over-Threshold Approach 2024 · 候选引用(未核验)
- A hybrid ICEEMDAN and OMEDA-based vibrodiagnosis method for the bearing of rolling stock 2024 · 候选引用(未核验)
- Maintenance and Reliability Improvement of Roller Bearings Operating at High Temperature: Thermal Stress Analysis Approach 2024 · 候选引用(未核验)
- Bearings in Aerospace, Application, Distress, and Life: A Review 2023 · 候选引用(未核验)
- Desarrollo de un sistema de diagnóstico de maquinaria rotativa : aplicación a rodamientos de apoyo de ejes ferroviarios 2023 · 候选引用(未核验)
- A Fault Diagnosis Algorithm for the Dedicated Equipment Based on the CNN-LSTM Mechanism 2023 · 候选引用(未核验)
- Classification of Mechanical Fault-Excited Events Based on Frequency 2022 · 候选引用(未核验)
- Bearing failure impulse enhancement method using multiple resonance band centre positioning and envelope integration 2022 · 候选引用(未核验)
- A fault diagnosis method for rotating machinery with variable speed based on multi-feature fusion and improved ShuffleNet V2 2022 · 候选引用(未核验)
- An Overview of Vibration Analysis Techniques for the Fault Diagnostics of Rolling Bearings in Machinery 2022 · 候选引用(未核验)
- RMS Based Health Indicators for Remaining Useful Lifetime Estimation of Bearings 2022 · 候选引用(未核验)
- Residual wide-kernel deep convolutional auto-encoder for intelligent rotating machinery fault diagnosis with limited samples 2021 · 候选引用(未核验)
- Investigations of Antifriction bearing defects using Vibration Signatures 2021 · 候选引用(未核验)
仅列前 20 篇(首发/综述优先,按年份倒序);全量见 API。
溯源(11 条)
| 来源链接: https://doi.org/10.18710/BG1QNG 日期: 2026-07-09 |
| 日期: 2026-07-10 |
| 日期: 2026-07-10 |
| 日期: 2026-07-10 |
| 日期: 2026-07-10 |
| 日期: 2026-07-11 |
| 日期: 2026-07-11 |
| 日期: 2026-07-14 |
| 日期: 2026-07-21 |
| 日期: 2026-07-25 |
| 日期: 2026-07-26 |