Feasibility Study of High-Voltage Ion Mobility for Gas Identification Based on Triboelectric Power Source

被引:1
|
作者
Hasan, Dihan [1 ,3 ]
Zhu, Jianxiong [1 ]
Wang, Hao [1 ]
Bin Sulaiman, Othman [1 ]
Yazici, Mahmut Sami [1 ]
Grzebyk, Tomasz [2 ]
Walczak, Rafal D. [2 ]
Dziuban, Jan A. [2 ]
Lee, Chengkuo [1 ]
机构
[1] Natl Univ Singapore, Elect & Comp Engn, Singapore, Singapore
[2] Wroclaw Univ Sci & Technol, Dept Mircroengn & Photovolta, Wroclaw, Poland
[3] North South Univ, Dept Elect & Comp Engn, Dhaka, Bangladesh
关键词
NANOGENERATOR;
D O I
10.1109/PowerMEMS49317.2019.30773708559
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
We report a type of miniaturized and self-powered gas identification platform for wearable applications that works on the principle of ion mobility transients offering a high degree of selectivity for a variety of gas species. The self-powered operation of the sensor exploited the high voltage output from a systematically designed triboelectric nanogenerator (TENG). The multi-layer TENG platform provided a voltage of the order kV just by finger triggering, which was further leveraged in a special type of electrode (tip-plate) configuration making it possible to obtain plasma discharge of a wide range of gas molecules at atmospheric condition. By adding an additional collector plate at a specific distance within the device configuration, we successfully demonstrated different transient characteristics for different gas molecules which can be directly attributed to their differences in terms of ion-mobility. Our analysis clearly indicated unique and repeatable discharge characteristics at various mixture conditions and atmospheric pressure. We further employ machine learning to classify different gases based on the transient dynamics observed at the collector plate. High classification accuracy was obtained for four different gases even using a shallow network that indicated the potential of the proposed platform as a low-power, small foot-print wearable Internet of Things (IoTs) device for gas leak detection. It is envisioned that the proposed platform can enable early detection of gas species by incorporating the transient development of the multitude of time-domain finger-prints into the machine learning model.
引用
收藏
页数:5
相关论文
共 50 条
  • [41] STUDY OF ION FOCUSING OF HIGH-VOLTAGE ELECTRON-BEAMS
    RYBAS, KP
    BABIN, GA
    LUKINYKH, VD
    TELEPAEV, BN
    ZHURNAL TEKHNICHESKOI FIZIKI, 1973, 43 (03): : 506 - 512
  • [42] Recent progress in the development of portable high voltage source based on triboelectric nanogenerator
    Wang X.
    Chen X.
    Iwamoto M.
    Smart Materials in Medicine, 2020, 1 : 66 - 76
  • [43] Study and development of a high-power, high-voltage nanosecond pulser
    Abramzon, E
    Yankelevich, Y
    Pokryvailo, A
    22ND CONVENTION OF ELECTRICAL AND ELECTRONICS ENGINEERS IN ISRAEL, PROCEEDINGS, 2002, : 32 - 34
  • [44] Coordinated power control strategy of voltage source converter-based multiterminal high-voltage direct current based on the voltage-current curve
    Lin, Sheng
    Mu, Dalin
    Wang, Liang
    Liu, Lei
    IEEJ TRANSACTIONS ON ELECTRICAL AND ELECTRONIC ENGINEERING, 2019, 14 (06) : 844 - 852
  • [45] Evaluation of Additive Manufacturing Feasibility in the Energy Sector: A Case Study of a Gas-Insulated High-Voltage Switchgear
    Haghighat Naeini, Elham
    Sekula, Robert
    APPLIED SCIENCES-BASEL, 2024, 14 (14):
  • [46] High-Voltage Reactive-Power Compensators Based on Semiconductor Voltage Controllers
    Panfilov D.I.
    Astashev M.G.
    Panfilov I.D.
    Zhuravlev I.I.
    Kuzenev D.S.
    Russian Electrical Engineering, 2023, 94 (06) : 379 - 387
  • [47] Power Source Based on Electric Field Energy Harvesting for Monitoring Devices of High-Voltage Transmission Line
    Zeng, Xiangjun
    Yang, Zhengtao
    Wu, Pengfei
    Cao, Liuyan
    Luo, Yiping
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2021, 68 (08) : 7083 - 7092
  • [48] High-voltage micro-plasma switch for efficient power management of triboelectric kinetic energy harvesters
    Basset, P.
    Zhang, H.
    Marty, F.
    Delbani, A.
    Hodzic, N.
    Karami, A.
    Galayko, D.
    2020 IEEE INTERNATIONAL ELECTRON DEVICES MEETING (IEDM), 2020,
  • [50] Robust fuzzy sliding mode controller design for voltage source converter high-voltage DC based interconnected power system
    Nayak, N.
    Routray, S.K.R.
    Rout, P.K.
    Australian Journal of Electrical and Electronics Engineering, 2014, 11 (04): : 421 - 433