Classification of Unmanned Aerial Vehicles Based on Acoustic Signals Obtained in External Environmental Conditions

被引:0
作者
Miesikowska, Marzena [1 ]
机构
[1] Kielce Univ Technol, Fac Mechatron & Mech Engn, PL-25314 Kielce, Poland
关键词
unmanned aerial vehicle; discriminant analysis; drone classification;
D O I
10.3390/s24175663
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Detection of unmanned aerial vehicles (UAVs) and their classification on the basis of acoustic signals recorded in the presence of UAVs is a very important source of information. Such information can be the basis of certain decisions. It can support the autonomy of drones and their decision-making system, enabling them to cooperate in a swarm. The aim of this study was to classify acoustic signals recorded in the presence of 17 drones while they hovered individually at a height of 8 m above the recording equipment. The signals were obtained for the drones one at a time in external environmental conditions. Mel-frequency cepstral coefficients (MFCCs) were evaluated from the recorded signals. A discriminant analysis was performed based on 12 MFCCs. The grouping factor was the drone model. The result of the classification is a score of 98.8%. This means that on the basis of acoustic signals recorded in the presence of a drone, it is possible not only to detect the object but also to classify its model.
引用
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页数:13
相关论文
共 36 条
[21]   Use of UAS for damage inspection and assessment of bridge infrastructures [J].
Mandirola, M. ;
Casarotti, C. ;
Peloso, S. ;
Lanese, I. ;
Brunesi, E. ;
Senaldi, I. .
INTERNATIONAL JOURNAL OF DISASTER RISK REDUCTION, 2022, 72
[22]  
Miesikowska M., UAVs Recordings
[23]  
Miesikowska M., 2016, Mechanics in Aviation ML-XVII, VII
[24]   Discriminant Analysis of Voice Commands in the Presence of an Unmanned Aerial Vehicle [J].
Miesikowska, Marzena .
INFORMATION, 2021, 12 (01) :1-12
[25]  
Miesikowska M, 2018, SIG P ALGO ARCH ARR, P310, DOI 10.23919/SPA.2018.8563410
[26]  
Miesikowska M, 2017, SIG P ALGO ARCH ARR, P69, DOI 10.23919/SPA.2017.8166840
[27]  
Misikowska M., 2023, P 2023 SIGN PROC ALG, P31, DOI [10.23919/SPA59660.2023.10274459, DOI 10.23919/SPA59660.2023.10274459]
[28]   Review on Application of Drone Systems in Precision Agriculture [J].
Mogili, U. M. Rao ;
Deepak, B. B. V. L. .
INTERNATIONAL CONFERENCE ON ROBOTICS AND SMART MANUFACTURING (ROSMA2018), 2018, 133 :502-509
[29]  
Montes O, 2020, Research on Crops, V21, P82, DOI 10.31830/2348-7542.2020.013
[30]  
Osaro P A., 2024, J. Energy Res. Rev, V16, P47, DOI [10.9734/jenrr/2024/v16i6357, DOI 10.9734/JENRR/2024/V16I6357]