A Nanoparticle-Based Artificial Ear for Personalized Classification of Emotions in the Human Voice Using Deep Learning

被引:3
作者
Wang, Jianfei [1 ,4 ]
Suo, Jiao [2 ]
Liu, Dongdong [1 ]
Zhao, Yuliang [3 ]
Tian, Yanling [4 ]
Bryanston-Cross, Peter [4 ]
Li, Wen Jung [2 ]
Wang, Zuobin [1 ]
机构
[1] Changchun Univ Sci & Technol, Int Res Ctr Nano Handling & Mfg China, Changchun 130022, Jilin, Peoples R China
[2] CAS City Univ Hong Kong, Dept Mech Engn, CityU Joint Lab Robot Res, Hong Kong, Peoples R China
[3] Northeastern Univ, Dept Control Engn, Qinhuangdao 066004, Hebei, Peoples R China
[4] Univ Warwick, Sch Engn, Coventry CV4 7AL, England
基金
国家重点研发计划;
关键词
artificial ear; gold nanoparticle electronics; deep learning; noise monitoring; human emotionalstate monitoring; POWERED ACOUSTIC SENSOR; RECOGNITION;
D O I
10.1021/acsami.4c13223
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Artificial intelligence and human-computer interaction advances demand bioinspired sensing modalities capable of comprehending human affective states and speech. However, endowing skin-like interfaces with such intricate perception abilities remains challenging. Here, we have developed a flexible piezoresistive artificial ear (AE) sensor based on gold nanoparticles, which can convert sound signals into electrical signals through changes in resistance. By testing the sensor's performance at both frequency and sound pressure level (SPL), the AE has a frequency response range of 20 Hz to 12 kHz and can sense sound signals from up to 5 m away at a frequency of 1 kHz and an SPL of 126 dB. Furthermore, through deep learning, the device achieves up to 96.9% and 95.0% accuracy in classification and recognition applications for seven emotional and eight urban environmental noises, respectively. Hence, on one hand, our device can monitor the patient's emotional state by their speech, such as sudden yelling and screaming, which can help healthcare workers understand patients' condition in time. On the other hand, the device could also be used for real-time monitoring of noise levels in aircraft, ships, factories, and other high-decibel equipment and environments.
引用
收藏
页码:51274 / 51282
页数:9
相关论文
共 46 条
[1]  
Aylett M. P., 2019, P 1 INT C CONV US IN
[2]   The Effects of Robot Voice and Gesture Types on the Perceived Robot Personalities [J].
Dou, Xiao ;
Wu, Chih-Fu ;
Lin, Kai-Chieh ;
Tseng, Tzu-Min .
HUMAN-COMPUTER INTERACTION. PERSPECTIVES ON DESIGN, HCI 2019, PT I, 2019, 11566 :299-309
[3]   A wavelet-based approach to emotion classification using EDA signals [J].
Feng, Huanghao ;
Golshan, Hosein M. ;
Mahoor, Mohammad H. .
EXPERT SYSTEMS WITH APPLICATIONS, 2018, 112 :77-86
[4]   Who Is Saying "What"? Brain-Based Decoding of Human Voice and Speech [J].
Formisano, Elia ;
De Martino, Federico ;
Bonte, Milene ;
Goebel, Rainer .
SCIENCE, 2008, 322 (5903) :970-973
[5]   A Scoping Review of the Literature On Prosodic Elements Related to Emotional Speech in Human-Robot Interaction [J].
Gasteiger, Norina ;
Lim, JongYoon ;
Hellou, Mehdi ;
MacDonald, Bruce A. ;
Ahn, Ho Seok .
INTERNATIONAL JOURNAL OF SOCIAL ROBOTICS, 2024, 16 (04) :659-670
[6]   Hierarchically resistive skins as specific and multimetric on-throat wearable biosensors [J].
Gong, Shu ;
Zhang, Xin ;
Nguyen, Xuan Anh ;
Shi, Qianqian ;
Lin, Fenge ;
Chauhan, Sunita ;
Ge, Zongyuan ;
Cheng, Wenlong .
NATURE NANOTECHNOLOGY, 2023, 18 (08) :889-+
[7]   A Soft Resistive Acoustic Sensor Based on Suspended Standing Nanowire Membranes with Point Crack Design [J].
Gong, Shu ;
Yap, Lim Wei ;
Zhu, Yi ;
Zhu, Bowen ;
Wang, Yan ;
Ling, Yunzhi ;
Zhao, Yunmeng ;
An, Tiance ;
Lu, Yuerui ;
Cheng, Wenlong .
ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (25)
[8]   Flexible electronic eardrum [J].
Gu, Yang ;
Wang, Xuewen ;
Gu, Wen ;
Wu, Yongjin ;
Li, Tie ;
Zhang, Ting .
NANO RESEARCH, 2017, 10 (08) :2683-2691
[9]   A highly sensitive, self-powered triboelectric auditory sensor for social robotics and hearing aids [J].
Guo, Hengyu ;
Pu, Xianjie ;
Chen, Jie ;
Meng, Yan ;
Yeh, Min-Hsin ;
Liu, Guanlin ;
Tang, Qian ;
Chen, Baodong ;
Liu, Di ;
Qi, Song ;
Wu, Changsheng ;
Hu, Chenguo ;
Wang, Jie ;
Wang, Zhong Lin .
SCIENCE ROBOTICS, 2018, 3 (20)
[10]   Machine learning-based self-powered acoustic sensor for speaker recognition [J].
Han, Jae Hyun ;
Bae, Kang Min ;
Hong, Seong Kwang ;
Park, Hyunsin ;
Kwak, Jun-Hyuk ;
Wang, Hee Seung ;
Joe, Daniel Juhyung ;
Park, Jung Hwan ;
Jung, Young Hoon ;
Hur, Shin ;
Yoo, Chang D. ;
Lee, Keon Jae .
NANO ENERGY, 2018, 53 :658-665