FSS-Tag: High Accuracy Material Identification System Based On Frequency Selective Surface Tag

被引:2
作者
Chang, Liqiong [1 ]
Yang, Xiaofeng [1 ]
Liu, Ruyue [1 ]
Xie, Guodong [1 ]
Wang, Fuwei [1 ]
Wang, Ju [1 ]
机构
[1] Northwest Univ, Xian, Peoples R China
来源
PROCEEDINGS OF THE ACM ON INTERACTIVE MOBILE WEARABLE AND UBIQUITOUS TECHNOLOGIES-IMWUT | 2023年 / 7卷 / 04期
基金
中国国家自然科学基金;
关键词
Material Identification; Frequency Selective Surface;
D O I
10.1145/3631457
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Material sensing is crucial in many emerging applications, such as waste classification and hazardous material detection. Although existing Radio Frequency (RF) signal based systems achieved great success, they have limited identification accuracy when either RF signals can not penetrate through a target or a target has different outer and inner materials. This paper introduces a Frequency Selective Surface (FSS) tag based high accuracy material identification system, namely FSS-Tag, which utilises both the penetrating signals and the coupling effect. Specifically, we design and attach a FSS tag to a target, and use frequency responses of the tag for material sensing, since different target materials have different frequency responses. The key advantage of our system is that, when RF signals pass through a target with the FSS tag, the penetrating signal responds more to the inner material, and the coupling effect (between the target and the tag) reflects more about the outer material; thus, one can achieve a higher sensing accuracy. The challenge lies in how to find optimal tag design parameters so that the frequency response of different target materials can be clearly distinguished. We address this challenge by establishing a tag parameter optimization model. Real-world experiments show that FSS-Tag achieves more than 91% accuracy on identifying eight common materials, and improves the accuracy by up to 38% and 8% compared with the state of the art (SOTA) penetrating signal based method TagScan and the SOTA coupling effect based method Tagtag.
引用
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页数:24
相关论文
共 32 条
[1]  
Bangjie Sun, 2022, MobiSys '22: Proceedings of the 20th Annual International Conference on Mobile Systems, Applications and Services, P42, DOI 10.1145/3498361.3539776
[2]  
ChenWang Jian Liu, 2018, 2018 IEEE C COMM NET, P1
[3]   Dispersion and absorption in dielectrics I. Alternating current characteristics [J].
Cole, KS ;
Cole, RH .
JOURNAL OF CHEMICAL PHYSICS, 1941, 9 (04) :341-351
[4]  
Costa F, 2014, APPL COMPUT ELECTROM, V29, P960
[5]   Cracking the Egg: Virtual Embryogenesis of Real Robots [J].
Cussat-Blanc, Sylvain ;
Pollack, Jordan .
ARTIFICIAL LIFE, 2014, 20 (03) :361-383
[6]   LiquID: A Wireless Liquid IDentifier [J].
Dhekne, Ashutosh ;
Gowda, Mahanth ;
Zhao, Yixuan ;
Hassanieh, Haitham ;
Choudhury, Romit Roy .
MOBISYS'18: PROCEEDINGS OF THE 16TH ACM INTERNATIONAL CONFERENCE ON MOBILE SYSTEMS, APPLICATIONS, AND SERVICES, 2018, :442-454
[7]   WiMi: Target Material Identification with Commodity Wi-Fi Devices [J].
Feng, Chao ;
Xiong, Tie ;
Chang, Liqiong ;
Wang, Ju ;
Chen, Xiaojiang ;
Fang, Dingyi ;
Tang, Zhanyong .
2019 39TH IEEE INTERNATIONAL CONFERENCE ON DISTRIBUTED COMPUTING SYSTEMS (ICDCS 2019), 2019, :700-710
[8]  
Ha U, 2020, PROCEEDINGS OF THE 17TH USENIX SYMPOSIUM ON NETWORKED SYSTEMS DESIGN AND IMPLEMENTATION, P1083
[9]   Learning Food Quality and Safety from Wireless Stickers [J].
Ha, Unsoo ;
Ma, Yunfei ;
Zhong, Zexuan ;
Hsu, Tzu-Ming ;
Adib, Fadel .
HOTNETS-XVII: PROCEEDINGS OF THE 2018 ACM WORKSHOP ON HOT TOPICS IN NETWORKS, 2018, :106-112
[10]   Vi-Liquid: Unknown Liquid Identification with Your Smartphone Vibration [J].
Huang, Yongzhi ;
Chen, Kaixin ;
Huang, Yandao ;
Wang, Lu ;
Wu, Kaishun .
PROCEEDINGS OF THE 27TH ACM ANNUAL INTERNATIONAL CONFERENCE ON MOBILE COMPUTING AND NETWORKING (ACM MOBICOM '21), 2021, :174-187