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ybzhanCorporate NewsIndustry related! Research on throat voice signal detection based on flexible graphene piezoresistive sensor

Addressing the issue of traditional speech collection and recognition being susceptible to environmental noiseA flexible graphene sensor is proposed to detect human vocal vibration signals. Firstly, a speech detection sensor with a cylindrical micro surface structure substrate was prepared using chemical vapor deposition (CVD) and imprinting techniques, greatly improving the conformal coating coverage and sensitivity of the sensor. In the frequency range of 200-2500 Hz, the average voltage gain of the sensor is about 48dB, which basically covers the human speech frequency.


On this basis, researchers conducted bilingual testing (in both Chinese and English). All the data obtained indicate that the graphite voice sensor has sufficient sensitivity to extract features of sound waves. Meanwhile, the proposed cylindrical micro surface structure reduces the possibility of random fracture of graphene layers. In addition, speech signals collected through microphones and flexible graphene voice detection sensors are used to train neural networks. The recognition accuracy of the dataset with mixed vocal cord speech signals is 75.9%. Compare and verify that the signals detected by the sensors have sufficient feature information to complete the speech recognition task.


In summary, with the continuous enrichment of datasets, flexible graphene voice detection sensors (FGSDS) may have great application prospects in remote voice recognition and robot voice development. It further promotes the research process of wearable artificial throat devices and may even help patients with throat diseases achieve barrier free communication.


There are still some limitations to this study. It can be seen that graphene thin film sensors still face many challenges in wearable applications, such as irreversible channel cracks in graphene layers leading to shortened service life, and poor flexibility of conductive silver paste electrodes. These questions can provide direction for future research.

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