Research on the Application of Non-contact Sensing Technology in Real-time Emotional Monitoring and Feedback

Authors

  • Lehan Zhang

DOI:

https://doi.org/10.54097/fcis.v6i2.02

Keywords:

Emotional Monitoring, Feedback, Non-contact Sensing Technology

Abstract

With the rapid development of information technology, non-contact sensing technology has shown great potential in the field of real-time emotional monitoring and feedback. The purpose of this study is to deeply explore the application of this technology in improving the intelligence of human-computer interaction and realizing personalized service. By synthesizing the experimental results and related literature, a series of important research findings have been formed. First of all, we found that non-contact sensing technology effectively improved the objectivity of emotion monitoring. Secondly, the introduction of real-time feedback mechanism has significantly improved the user experience. However, non-contact sensing technology still faces some challenges in practical application, including privacy issues, cross-cultural adaptability, environmental interference and so on. To solve these problems, technological innovation, the establishment and standardization of privacy policies are needed to ensure the sustainable application of technology in a wider range of fields. This study emphasizes the importance and application prospect of non-contact sensing technology in real-time emotional monitoring and feedback. Future research should focus on the further innovation of technology, the improvement of privacy protection mechanism and the deepening of interdisciplinary cooperation, so as to promote the wider application of this technology in the field of human-computer interaction.

Downloads

Download data is not yet available.

References

Zhang Jitao, Xu Zhiqiang, Yuan Chao, Zhang Qingfang, Wang Xiaolei, &Cao Lingzhi. (2018). Study on contactless differential gmi current sensor for DC transmission and its sensing characteristics. Journal of Henan Agricultural University, 52(2), 5.

Sima Wenxia, Zheng Rongfeng, Yang Ming, Wang Yang, Wang Jing, & Wilson. (2020). Development and sensing performance of non-contact current sensor based on rare earth magneto-optical glass. High voltage technology, 46(6), 10.

Shang Yunfei, Xia Xinxin, Hao Shuwei, Zhu Chongqiang, Lei Zuotao, & Yang Chunhui. (2022). Experimental design of non-contact temperature sensing based on up-conversion nanocrystals. Experimental Technology and Management, 39 (12), 143-147.

Bi Chao, Bao Chenxing, Lei Wenming, & liuyong. (2018). Construction and implementation of non-contact nozzle swirl groove measurement system. Journal of Sensing Technology, 31(9), 6.

Chengzhang. (2017). Non-contact laser measurement system of artificial intelligence. Laser Journal, 38(9), 4.

Luo Dan, Qing Yang, Huang Lingyu, & Dong Funing. (2021). Contactless current sensor based on micro-ring resonator. Acta Optics, 41(12), 9.

Vilen. (2019). Design of Absolute Magnetic Encoder and Its Application in Servo System. Journal of Sensing Technology, 32(4), 6.

Yang Yilong, Liang Chenhua, Feng Yifei, Liu Guangsheng, &He Ying. (2023). Research status and prospect of non-contact vital signs monitoring technology. China Medical Equipment, 38(6), 151-156.

Kang Lai, Wei Yingmei, Jiang Jie,& Xie Yuxiang. (2020). Non-contact object size acquisition method based on visual inertial sensing data. Journal of System Simulation, 32(5), 9.

Zhen Fang, Chen Xianxiang, Jian Pu, Zhang Hao, Yao Yicheng, & Geng Fanglin, et al. (2022). Overview of non-contact medical health monitoring technology based on fmcw radar. Journal of Radar (003), 011.

Downloads

Published

15-12-2023

Issue

Section

Articles