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Gesture Recognition Method Using Acoustic Sensing on Usual Garment

Published: 07 July 2022 Publication History

Abstract

In this study, we show a new gesture recognition method for clothing-based gesture input methods using active and passive acoustic sensing. Our system consists of a piezoelectric speaker and a microphone. The speaker transmits ultrasonic swept sine signals, and the microphone simultaneously records the ultrasonic signals that propagate through the garment and the rubbing sounds generated by the gestures on the garment. Our method recognizes a variety of gestures, such as pinch, twist, touch, and swipe, by incorporating active and passive acoustic sensing. An important feature of our method is that it does not require a dedicated garment or embroidery embedded since our system only requires a pair of piezoelectric elements to be attached to the usual garment with a magnet. We performed recognition experiments of 11 gestures on the forearm with four types of garments made from different materials and recognition experiments of five one-handed gestures on the button of a shirt and the pocket of pants. The results of a per-user classifier confirmed that the f-scores were 83.9% and 95.9% for 11 gestures with four different types of garments and 5 gestures that were selected assuming actual use, respectively. In addition, we confirmed that the system recognizes five gestures, which can be performed with one hand, with 89.2% and 92.6% accuracy in the button and pocket sites, respectively.

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References

[1]
Roland Aigner, Andreas Pointner, Thomas Preindl, Rainer Danner, and Michael Haller. 2021. TexYZ: Embroidering Enameled Wires for Three Degree-of-Freedom Mutual Capacitive Sensing. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems (CHI '21). Association for Computing Machinery, Article 499, 12 pages. https://doi.org/10.1145/3411764.3445479
[2]
Brian Amento, Will Hill, and Loren Terveen. 2002. The Sound of One Hand: A Wrist-Mounted Bio-Acoustic Fingertip Gesture Interface. In Proceedings of the CHI '02 Extended Abstracts on Human Factors in Computing Systems (CHI EA '02). Association for Computing Machinery, 724--725. https://doi.org/10.1145/506443.506566
[3]
Leah Buechley, Mike Eisenberg, Jaime Catchen, and Ali Crockett. 2008. The LilyPad Arduino: Using Computational Textiles to Investigate Engagement, Aesthetics, and Diversity in Computer Science Education. In Proceedings of the 2008 CHI Conference on Human Factors in Computing Systems (CHI '08). Association for Computing Machinery, 423--432. https://doi.org/10.1145/1357054.1357123
[4]
Mingshi Chen, Panlong Yang, Jie Xiong, Maotian Zhang, Youngki Lee, Chaocan Xiang, and Chang Tian. 2019. Your Table Can Be an Input Panel: Acoustic-Based Device-Free Interaction Recognition. Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies 3, 1 (2019), 21 pages. https://doi.org/10.1145/3314390
[5]
Tim Collins. 2009. Active acoustic touch interface. Electronics Letters 45, 20 (2009), 2 pages. https://doi.org/10.1049/el.2009.2054
[6]
Artem Dementyev, Tomás Vega Gálvez, and Alex Olwal. 2019. SensorSnaps: Integrating Wireless Sensor Nodes into Fabric Snap Fasteners for Textile Interfaces. In Proceedings of the 32nd Annual ACM Symposium on User Interface Software and Technology (UIST '19). Association for Computing Machinery, 17--28.
[7]
Guido Gioberto. 2014. Garment-Integrated Wearable Sensing for Knee Joint Monitoring. In Proceedings of the 2014 ACM International Symposium on Wearable Computers: Adjunct Program (ISWC '14 Adjunct). Association for Computing Machinery, 113--118. https://doi.org/10.1145/2641248.2642736
[8]
Guido Gioberto, James Coughlin, Kaila Bibeau, and Lucy E. Dunne. 2013. Detecting Bends and Fabric Folds Using Stitched Sensors. In Proceedings of the 2013 International Symposium on Wearable Computers (ISWC '13). Association for Computing Machinery, 53--56. https://doi.org/10.1145/2493988.2494355
[9]
Nur Al-huda Hamdan, Simon Voelker, and Jan Borchers. 2018. Sketch&Stitch: Interactive Embroidery for E-Textiles. In Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems (CHI '18). Association for Computing Machinery, 1--13. https://doi.org/10.1145/3173574.3173656
[10]
Alex Hanuska, Bharath Chandramohan, Laura Bellamy, Pauline Burke, Rajiv Ramanathan, and Vijay Balakrishnan. 2016. Smart clothing market analysis. Technical Report. University of California, Berkeley.
[11]
Chris Harrison and Scott E. Hudson. 2008. Scratch Input: Creating Large, Inexpensive, Unpowered and Mobile Finger Input Surfaces. In Proceedings of the 21st Annual ACM Symposium on User Interface Software and Technology (UIST '08). Association for Computing Machinery, 205--208. https://doi.org/10.1145/1449715.1449747
[12]
Chris Harrison, Desney Tan, and Dan Morris. 2010. Skinput: Appropriating the Body as an Input Surface. In Proceedings of the 2010 CHI Conference on Human Factors in Computing Systems (CHI '10). Association for Computing Machinery, 453--462. https://doi.org/10.1145/1753326.1753394
[13]
Florian Heller, Stefan Ivanov, Chat Wacharamanotham, and Jan Borchers. 2014. FabriTouch: Exploring Flexible Touch Input on Textiles. In Proceedings of the 2014 ACM International Symposium on Wearable Computers (ISWC '14). Association for Computing Machinery, 59--62. https://doi.org/10.1145/2634317.2634345
[14]
Donny Huang, Xiaoyi Zhang, T. Scott Saponas, James Fogarty, and Shyamnath Gollakota. 2015. Leveraging Dual-Observable Input for Fine-Grained Thumb Interaction Using Forearm EMG. In Proceedings of the 28th Annual ACM Symposium on User Interface Software and Technology (UIST '15). Association for Computing Machinery, 523--528. https://doi.org/10.1145/2807442.2807506
[15]
Scott E. Hudson, Chris Harrison, Beverly L. Harrison, and Anthony LaMarca. 2010. Whack Gestures: Inexact and Inattentive Interaction with Mobile Devices. In Proceedings of the Fourth International Conference on Tangible, Embedded, and Embodied Interaction (TEI '10). Association for Computing Machinery, 109--112. https://doi.org/10.1145/1709886.1709906
[16]
Daiki Iwase, Yuichi Itoh, Hidehiko Shin, and Takao Onoyoe. 2019. SenseSurface: Using Active Acoustic Sensing to Detect What is Where. Journal of Information Processing 60, 10 (2019), 12 pages. https://ci.nii.ac.jp/naid/170000180546/
[17]
Ji Jia, Chengtian Xu, Shijia Pan, Stephen Xia, Peter Wei, Hae Noh, Pei Zhang, and Xiaofan Jiang. 2018. Conductive Thread-Based Textile Sensor for Continuous Perspiration Level Monitoring. Sensors 18, 11 (2018), 19 pages. https://doi.org/10.3390/s18113775
[18]
Thorsten Karrer, Moritz Wittenhagen, Leonhard Lichtschlag, Florian Heller, and Jan Borchers. 2011. Pinstripe: Eyes-Free Continuous Input on Interactive Clothing. In Proceedings of the 2011 CHI Conference on Human Factors in Computing Systems (CHI '11). Association for Computing Machinery, 1313--1322. https://doi.org/10.1145/1978942.1979137
[19]
Ali Kiaghadi, Morgan Baima, Jeremy Gummeson, Trisha Andrew, and Deepak Ganesan. 2018. Fabric as a Sensor: Towards Unobtrusive Sensing of Human Behavior with Triboelectric Textiles (SenSys '18). Association for Computing Machinery, 199--210. https://doi.org/10.1145/3274783.3274845
[20]
Ali Kiaghadi, Seyedeh Zohreh Homayounfar, Jeremy Gummeson, Trisha Andrew, and Deepak Ganesan. 2019. Phyjama: Physiological Sensing via Fiber-Enhanced Pyjamas. Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies 3, 3, Article 89 (2019), 29 pages. https://doi.org/10.1145/3351247
[21]
James Knight and Chris Baber. 2005. A Tool to Assess the Comfort of Wearable Computers. Human Factors: The Journal of the Human Factors and Ergonomics Society 47, 1 (2005), 15 pages. https://doi.org/10.1518/0018720053653875
[22]
Pin-Sung Ku, Jun Gong, Te-Yen Wu, Yixin Wei, Yiwen Tang, Barrett Ens, and Xing-Dong Yang. 2020. Zippro: The Design and Implementation of An Interactive Zipper. In Proceedings of the 2020 CHI Conference on Human Factors in Computing Systems (CHI '20). Association for Computing Machinery, 1--13. https://doi.org/10.1145/3313831.3376756
[23]
Yuki Kubo, Yuto Koguchi, Buntarou Shizuki, Shin Takahashi, and Otmar Hilliges. 2019. AudioTouch: Minimally Invasive Sensing of Micro-Gestures via Active Bio-Acoustic Sensing. In Proceedings of the 21st International Conference on Human-Computer Interaction with Mobile Devices and Services (MobileHCI '19). Association for Computing Machinery, 1--13. https://doi.org/10.1145/3338286.3340147
[24]
Ruibo Liu, Qijia Shao, Siqi Wang, Christina Ru, Devin Balkcom, and Xia Zhou. 2019. Reconstructing Human Joint Motion with Computational Fabrics. Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies 3, 1, Article 19 (2019), 26 pages. https://doi.org/10.1145/3314406
[25]
Federico Lorussi, Walter Rocchia, Enzo Scilingo, Alessandro Tognetti, and Danilo de rossi. 2004. Wearable, Redundant Fabric-Based Sensor Arrays for Reconstruction of Body Segment Posture. IEEE Sensors Journal 4, 6 (2004), 12 pages. https://doi.org/10.1109/JSEN.2004.837498
[26]
Yiyue Luo, Kui Wu, Tomás Palacios, and Wojciech Matusik. 2021. KnitUI: Fabricating Interactive and Sensing Textiles with Machine Knitting. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems (CHI '21). Association for Computing Machinery, Article 668, 12 pages. https://doi.org/10.1145/3411764.3445780
[27]
Corninne Mattmann, Oliver Amft, Holger Harms, Gerhard Troster, and Frank Clemens. 2007. Recognizing Upper Body Postures using Textile Strain Sensors. In Proceedings of the 2007 11th IEEE International Symposium on Wearable Computers (ISWC '07). Institute of Electrical and Electronics Engineers, 29--36. https://doi.org/10.1109/ISWC.2007.4373773
[28]
Hiroto Mitake, Hiroki Watanabe, and Sugimoto Masanori. 2020. A Method for Recognizing Road Surface Condition based on Footsteps and Inertial Data. Journal of Information Processing 61, 10 (2020), 12 pages. https://doi.org/10.20729/00207250
[29]
Md. Tahmidul Islam Molla, Crystal Compton, and Lucy E. Dunne. 2018. Launderability of Surface-Insulated Cut and Sew E-Textiles. In Proceedings of the 2018 ACM International Symposium on Wearable Computers (ISWC '18). Association for Computing Machinery, 104--111. https://doi.org/10.1145/3267242.3267255
[30]
Adiyan Mujibiya, Xiang Cao, Disney S. Tan, Dan Morris, Shwetak Naran Patel, and Jun Rekimoto. 2013. The Sound of Touch: On-body Touch and Gesture Sensing Based on Transdermal Ultrasound Propagation. In Proceedings of the 2013 ACM International Conference on Interactive Tabletops and Surfaces (ITS '13). Association for Computing Machinery, 189--198. https://doi.org/10.1145/2512349.2512821
[31]
Roderick Murray-Smith, John Williamson, Stephen Hughes, and Torben Quaade. 2008. Stane: Synthesized Surfaces for Tactile Input. In Proceedings of the 2008 CHI Conference on Human Factors in Computing Systems (CHI '08). Association for Computing Machinery, 1299--1302. https://doi.org/10.1145/1357054.1357257
[32]
Alex Olwal, Jon Moeller, Greg Priest-Dorman, Thad Starner, and Ben Carroll. 2018. I/O Braid: Scalable Touch-Sensitive Lighted Cords Using Spiraling, Repeating Sensing Textiles and Fiber Optics. In The 31st Annual ACM Symposium on User Interface Software and Technology Adjunct Proceedings (UIST '18 Adjunct). Association for Computing Machinery, 203--207. https://doi.org/10.1145/3266037.3271651
[33]
Makoto Ono, Buntarou Shizuki, and Jiro Tanaka. 2013. Touch & Activate: Adding Interactivity to Existing Objects Using Active Acoustic Sensing. In Proceedings of the 26th Annual ACM Symposium on User Interface Software and Technology (UIST '13). Association for Computing Machinery, 31--40. https://doi.org/10.1145/2501988.2501989
[34]
Maggie Orth, Rehmi Post, and Emily Cooper. 1998. Fabric Computing Interfaces. In Proceedings of the 1998 CHI Conference on Human Factors in Computing Systems (CHI '98). Association for Computing Machinery, 331--332. https://doi.org/10.1145/286498.286800
[35]
Simon Ozbek, Md. Tahmidul Islam Molla, Crystal Compton, and Brad Holschuh. 2018. Novel Manufacturing of Advanced Smart Garments: Knitting with Spatially-Varying, Multi-Material Monofilament. In Proceedings of the 2018 ACM International Symposium on Wearable Computers (ISWC '18). Association for Computing Machinery, 120--127. https://doi.org/10.1145/3267242.3267278
[36]
Patrick Parzer, Florian Perteneder, Kathrin Probst, Christian Rendl, Joanne Leong, Sarah Schuetz, Anita Vogl, Reinhard Schwoediauer, Martin Kaltenbrunner, Siegfried Bauer, and Michael Haller. 2018. RESi: A Highly Flexible, Pressure-Sensitive, Imperceptible Textile Interface Based on Resistive Yarns. In Proceedings of the 31st Annual ACM Symposium on User Interface Software and Technology (UIST '18). Association for Computing Machinery, 745--756. https://doi.org/10.1145/3242587.3242664
[37]
Patrick Parzer, Adwait Sharma, Anita Vogl, Jürgen Steimle, Alex Olwal, and Michael Haller. 2017. SmartSleeve: Real-time Sensing of Surface and Deformation Gestures on Flexible, Interactive Textiles, Using a Hybrid Gesture Detection Pipeline. In Proceedings of the 30th Annual ACM Symposium on User Interface Software and Technology (UIST '17). 565--577. https://doi.org/10.1145/3126594.3126652
[38]
Ernest Rehmi Post, Maggie Orth, Peter R Russo, and Neil A Gershenfeld. 2000. E-broidery: Design and fabrication of textile-based computing. IBM Systems Journal 39, 3&4 (2000), 21 pages. https://doi.org/10.1147/sj.393.0840
[39]
Ivan Poupyrev, Nan-Wei Gong, Shiho Fukuhara, Mustafa Emre Karagozler, Carsten Schwesig, and Karen E Robinson. 2016. Project Jacquard: Interactive Digital Textiles at Scale. In Proceedings of the 2016 CHI Conference on Human Factors in Computing Systems (CHI '16). Association for Computing Machinery, 4216--4227. https://doi.org/10.1145/2858036.2858176
[40]
Emilio Sardini, Mauro Serpelloni, and Viviane Pasqui. 2015. Wireless Wearable T-Shirt for Posture Monitoring During Rehabilitation Exercises. IEEE Transactions on Instrumentation and Measurement 64, 2 (2015), 10 pages. https://doi.org/10.1109/TIM.2014.2343411
[41]
Stefan Schneegass and Alexandra Voit. 2016. GestureSleeve: using touch sensitive fabrics for gestural input on the forearm for controlling smartwatches. In Proceedings of the 2016 ACM International Symposium on Wearable Computers (ISWC '16). Association for Computing Machinery, 108--115. https://doi.org/10.1145/2971763.2971797
[42]
Karsten Seipp and Kate Devlin. 2014. BackPat: One-Handed off-Screen Patting Gestures. In Proceedings of the 16th International Conference on Human-Computer Interaction with Mobile Devices and Services (MobileHCI '14). Association for Computing Machinery, 77--80. https://doi.org/10.1145/2628363.2628396
[43]
John Lammey Stewart and E. C. Westerfield. 1959. A Theory of Active Sonar Detection. Proceedings of the Institute of Radio Engineers 47, 5 (1959), 10 pages. https://doi.org/10.1109/JRPROC.1959.287283
[44]
Kentaro Takemura, Akihiro Ito, Jun Takamatsu, and Tsukasa Ogasawara. 2011. Active Bone-conducted Sound Sensing for Wearable Interfaces. In Proceedings of the 24th Annual ACM Symposium Adjunct on User Interface Software and Technology (UIST '11 Adjunct). Association for Computing Machinery, 53--54. https://doi.org/10.1145/2046396.2046419
[45]
Kentaro Ueda, Tsutomu Terada, and Masahiko Tsukamoto. 2018. Evaluation of Input/Output Interface Using Wrinkles on Clothes. Journal of Data Intelligence 1, 1 (2018), 19 pages. https://doi.org/10.1145/3282353.3282365
[46]
Laurens van der Maaten and Geoffrey Hinton. 2008. Visualizing Data using t-SNE. Journal of Machine Learning Research 9, 86 (2008), 27 pages. http://jmlr.org/papers/v9/vandermaaten08a.html
[47]
Hiroki Watanabe, Tsutomu Terada, and Masahiko Tsukamoto. 2017. Gesture Recognition Method Utilizing Ultrasonic Active Acoustic Sensing. Journal of Information Processing 25 (2017), 10 pages. https://doi.org/10.2197/ipsjjip.25.331
[48]
Tony Wu, Shiho Fukuhara, Nicholas Gillian, Kishore Sundara-Rajan, and Ivan Poupyrev. 2020. ZebraSense: A Double-Sided Textile Touch Sensor for Smart Clothing. In Proceedings of the 33rd Annual ACM Symposium on User Interface Software and Technology (UIST '20). Association for Computing Machinery, 662--674. https://doi.org/10.1145/3379337.3415886
[49]
Te-Yen Wu, Shutong Qi, Junchi Chen, MuJie Shang, Jun Gong, Teddy Seyed, and Xing-Dong Yang. 2020. Fabriccio: Touchless Gestural Input on Interactive Fabrics. In Proceedings of the 2020 CHI Conference on Human Factors in Computing Systems (CHI '20). Association for Computing Machinery, 1--14. https://doi.org/10.1145/3313831.3376681
[50]
Te-Yen Wu, Zheer Xu, Xing-Dong Yang, Steve Hodges, and Teddy Seyed. 2021. Project Tasca: Enabling Touch and Contextual Interactions with a Pocket-Based Textile Sensor. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems (CHI '21). Association for Computing Machinery, New York, NY, USA, Article 4, 13 pages. https://doi.org/10.1145/3411764.3445712
[51]
Robert Xiao, Greg Lew, James Marsanico, Divya Hariharan, Scott Hudson, and Chris Harrison. 2014. Toffee: Enabling Ad Hoc, around-Device Interaction with Acoustic Time-of-Arrival Correlation. In Proceedings of the 16th International Conference on Human-Computer Interaction with Mobile Devices and Services (MobileHCI '14). Association for Computing Machinery, 67--76. https://doi.org/10.1145/2628363.2628383
[52]
Xuhai Xu, Haitian Shi, Xin Yi, WenJia Liu, Yukang Yan, Yuanchun Shi, Alex Mariakakis, Jennifer Mankoff, and Anind K. Dey. 2020. EarBuddy: Enabling On-Face Interaction via Wireless Earbuds. In Proceedings of the 2020 CHI Conference on Human Factors in Computing Systems (CHI '20). Association for Computing Machinery, 1--14. https://doi.org/10.1145/3313831.3376836
[53]
Xinhui Zhou, Daniel Garcia-Romero, Ramani Duraiswami, Carol Espy-Wilson, and Shihab Shamma. 2011. Linear versus mel frequency cepstral coefficients for speaker recognition. In Proceedings of the 2011 IEEE Workshop on Automatic Speech Recognition and Understanding. Institute of Electrical and Electronics Engineers, 559--564. https://doi.org/10.1109/ASRU.2011.6163888

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    cover image Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies
    Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies  Volume 6, Issue 2
    June 2022
    1551 pages
    EISSN:2474-9567
    DOI:10.1145/3547347
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    Published: 07 July 2022
    Published in IMWUT Volume 6, Issue 2

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    Author Tags

    1. Smart clothing
    2. active acoustic sensing
    3. machine learning
    4. passive acoustic sensing

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