Voiceprint Representation of Motor Bearing Acoustic Signals under Fault Conditions 核心 · 已核验

mxds91qm3cyyrb35

This dataset contains approximately 14,200 time–frequency representation images (224 × 224) generated from one-second audio recordings sampled at 44.1 kHz. The recordings were collected from a 3 kW induction motor, focusing on the acoustic signals produced by the motor bearing under different conditions (healthy state and faulty conditions).

For each audio segment, four complementary acoustic representations were generated to capture different spectral and temporal characteristics of the signal:

- Mel-spectrogram– A perceptually motivated frequency representation based on the Mel scale.

- Cochleogram – A biologically inspired time–frequency representation modeling human cochlear behavior.

- Tempogram – A temporal representation capturing periodic, rhythmic, and impact-related patterns over time.

- Chromagram– A harmonic representation that distributes spectral energy across 12 pitch-class bins.

The dataset covers five bearing (6206/C3) conditions, providing a comprehensive benchmark for fault diagnosis and machine learning applications:

- H (Healthy): Normal bearing condition

- B (Ball Fault): Defect in the rolling element (ball)

- C (Cage Fault): Defect in the bearing cage

- I (Inner Race Fault): Defect on the inner race

- O (Outer Race Fault): Defect on the outer race

Each one-second audio file was transformed into the four aforementioned representations, enabling multi-domain feature extraction for:

- Fault classification

- Condition monitoring

- Predictive maintenance

By combining perceptual (Mel), human cochlear behavior modeling (Cochleogram), time-based rhythmic modulation (Tempogram), and harmonic structure (Chromagram), this dataset provides a rich and diverse feature space for researchers working on acoustic signal processing, deep learning, and intelligent fault diagnosis in rotating machinery. For more details on the methodology and model development, please refer to our article published in Results in Engineering. If you use this datas

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://data.mendeley.com/datasets/gprfs9hybk/4
许可证
CC-BY-4.0 (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
2026
发布方
Mendeley Data
设备类型
induction_motor rolling_bearing
PHM 任务
fault_diagnosis condition_monitoring

故障工况

fault_type: healthy_baseline
fault_type: bearing_rolling_element_fault
fault_type: bearing_cage_fault
fault_type: bearing_inner_race_fault
fault_type: bearing_outer_race_fault
溯源(11 条)
来源链接: https://api.datacite.org/dois/10.17632/gprfs9hybk.4 日期: 2026-07-10
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: 2026-07-25
日期: 2026-07-26
日期: 2026-07-31
来源链接: https://data.mendeley.com/public-api/datasets/gprfs9hybk 日期: 2026-09-02
日期: 2026-09-02