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Research Status of Acoustic Digital Twin System and Its Prospect in the Field of Autonomous Driving

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DOI: 10.23977/acss.2023.070407 | Downloads: 15 | Views: 405

Author(s)

Cong Xu 1, Wensheng Chen 1, Mingkuan Lin 1, Jianli Lu 1

Affiliation(s)

1 Global ETS. LLC, 2631 Success Dr, Odessa, Florida, 33556, USA

Corresponding Author

Cong Xu

ABSTRACT

Two-dimensional arrays of bi-component structures made of cobalt and permalloy elliptical dots with thickness of 25 nm, length 1 m and width of 225 nm, have been prepared by a self-aligned shadow deposition technique. Brillouin light scattering has been exploited to study the frequency dependence of thermally excited magnetic eigenmodes on the intensity of the external magnetic field, applied along the easy axis of the elements.

KEYWORDS

Magnetic, Bi-Component

CITE THIS PAPER

Cong Xu, Wensheng Chen, Mingkuan Lin, Jianli Lu. Research Status of Acoustic Digital Twin System and Its Prospect in the Field of Autonomous Driving. Advances in Computer, Signals and Systems (2023) Vol. 7: 49-54. DOI: http://dx.doi.org/10.23977/acss.2023.070407.

REFERENCES

[1] A. Bocca and D. Baek, "Automated driving systems: Key advantages, limitations and risks," 2019 AEIT International Conference of Electrical and Electronic Technologies for Automotive (AEIT AUTOMOTIVE), 2019. 
[2] V. Musat, I. Fursa, P. Newman, F. Cuzzolin, and A. Bradley, "Multi-weather city: Adverse weather stacking for autonomous driving," 2021 IEEE/CVF International Conference on Computer Vision Workshops (ICCVW), 2021. 
[3] Y. Zhang, A. Carballo, H. Yang, and K. Takeda, "Autonomous driving in adverse weather conditions: A survey," arXiv.org, 16-Dec-2021. [Online]. Available: https://arxiv.org/abs/2112.08936. [Accessed: 21-Aug-2022]. 
[4] "Your ears on the road," Auto Hears. [Online]. Available: https://www.autohears.com/. [Accessed: 22-Aug-2022]. 
[5] Z. Zhao and Q. Ma, "A real-time processing system for Massive Traffic Sensor Data," 2012 International Conference on Connected Vehicles and Expo (ICCVE), 2012. 
[6] Wu H, Zhao H. Digital human technology and its application in the field of sports medicine and Prospect[J].  2014.
[7] Annkathrin Krämmer, Christoph Schöller,  Gulati D , et al. Providentia -- A Large Scale Sensing System for the Assistance of Autonomous Vehicles[J].  2019.
[8] https://potomacofficersclub.com/news/afrl-conducts-research-on-digital-twin-technology-for-digital-engineering/. [Accessed: 22-Aug-2022]. 
[9] F. Tao, M. Zhang, and A. Y. C. Nee, "Digital Twin, cyber–physical system, and internet of things," Digital Twin Driven Smart Manufacturing, pp. 243–256, 2019. 
[10] H. Duan, S. Gao, X. Yang, and Y. Li, "The development of a digital twin concept system," Digital Twin, vol. 2, p. 10, 2022. 
[11] X. Feng, Z. Huang, J. He, and L. Shi, "A moving source localization method based on TDOA and TDOA rate," 2021 IEEE International Conference on Signal Processing, Communications and Computing (ICSPCC), 2021. 
[12] A. Lay-Ekuakille, A. Trotta, and G. Vendramin, "Beamforming-based acoustic imaging for Distance Retrieval," 2008 IEEE Instrumentation and Measurement Technology Conference, 2008. 
[13] M. Leclercq, V. Tournat, G. Penelet, and P. Picart, "3D surface acoustic waves made visible using digital color holography," Digital Holography and Three-Dimensional Imaging, 2013. 
[14] J. Hald and O. Roth, "Spatial transformation of sound fields," The Journal of the Acoustical Society of America, vol. 74, no. S1, 1983. 
[15] J. Hald, "Basic theory and properties of statistically optimized near-field acoustical holography," The Journal of the Acoustical Society of America, vol. 125, no. 4, pp. 2105–2120, 2009. 
[16] M. Espi, M. Fujimoto, K. Kinoshita, and T. Nakatani, "Feature extraction strategies in deep learning based acoustic event detection," Interspeech 2015, 2015. 
[17] Q. Xue, Y. Wang, and X. Chang, "A deep learning approach for acoustic emission event detection," Proceedings, 2018. 
[18] S. Uemura, O. Sugiyama, R. Kojima, and K. Nakadai, "Outdoor acoustic event identification using sound source separation and deep learning with a quadrotor-embedded microphone array," The Abstracts of the international conference on advanced mechatronics : toward evolutionary fusion of IT and mechatronics : ICAM, vol. 2015.6, pp. 329–330, 2015. 
[19] D. B. Lindell, G. Wetzstein, and V. Koltun, "Acoustic non-line-of-sight imaging," 2019 IEEE/CVF Conference on Computer Vision and Pattern Recognition (CVPR), 2019. 
[20] Z. He, "A simulation model of back-projection based non-line-of-sight imaging (NLOS) for Resolution Analysis," International Conference on Signal Image Processing and Communication (ICSIPC 2021), 2021. 
[21] Wu C, Liu J, Huang X, Li ZP, Yu C, Ye JT, Zhang J, Zhang Q, Dou X, Goyal VK, Xu F, Pan JW. "Non-line-of-sight imaging over 1.43 km," Proceedings of the National Academy of Sciences of the United States of America. [Online]. Available: https://pubmed.ncbi.nlm.nih.gov/33658383/. [Accessed: 22-Aug-2022]. 
[22]  Mihai S ,  Dokuz N ,  Ali M S , et al. Security Aspects of Communications in VANETs[C]// The 13th International Conference on Communications (COMM2020). 2020.
[23] Xiaoyun  Xiong, Songnian Zhao, Feng Wen, "Detection of the Doppler frequency shift in acoustic remote sensing systems," IEEE Transactions on Geoscience and Remote Sensing, vol. 33, no. 3, pp. 523–527, 1995. 
[24] "Driver Assistance Systems: The Ultimate Guide to Car Safety Tech," Motor1.com. [Online]. Available: https://www.motor1.com/features/346112/driver-assistance-systems-guide/. [Accessed: 22-Aug-2022]. 
[25] A. C. Franco da Silva, S. Wagner, E. Lazebnik, and E. Traitel, "Using a cyber digital twin for continuous automotive security requirements verification," IEEE Software, 2022. 
[26] V. Jain, N. Luthra, and D. Saini, Digital Twin Technology, pp. 1–21, 2021.

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