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作品数:64被引量:62H指数:5
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Robust textile-based spoof plasmonic frequency scanning antenna for on-body IoT applications
《Science China(Information Sciences)》2024年第8期265-280,共16页Zhao-Min CHEN Jun-Lin ZHAN Hao CHEN Ya LI Hongjun HE Wu YANG Zhen-Guo LIU Wei-Bing LU 
supported by National Science Funds for Distinguished Young Scientists(Grant No.61925-103);Jiangsu Specially-Appointed Professor,the Fundamental Research Funds for the Central Universities(Grant No.2242022k6-0004);Nation Natural Science Foundation of China(Grant Nos.62101115,62231001);China Postdoctoral Science Foundation(Grant No.2022M710670);Southeast University-China Mobile Research Institute Joint Innovation Center(Grant No.R207010101125D9).
Securing a comfortable, wearable compact frequency beam scanning antenna(FBSA) with robustness to deformation, low specific absorption rate(SAR), and good coverage of the surrounding environment for Internet of Things...
关键词:frequency beam scanning antenna(FBSA) Internet of Things(IoT) on-body communication spoof surface plasmon polaritons(SSPP) textile-based antenna 
Thermogalvanic hydrogel-based e-skin for self-powered on-body dual-modal temperature and strain sensing被引量:1
《Microsystems & Nanoengineering》2024年第2期293-302,共10页Zhaosu Wang Ning Li Xinru Yang Zhiyi Zhang Hulin Zhang Xiaojing Cui 
supported by the Natural Science Foundation of Shanxi Province(20210302123190);the Special Project of Science and Technology Cooperation and Exchange of Shanxi Province(202104041101031).
Sensing of both temperature and strain is crucial for various diagnostic and therapeutic purposes.Here,we present a novel hydrogel-based electronic skin(e-skin)capable of dual-mode sensing of temperature and strain.Th...
关键词:HYDROGEL MODAL utilizing 
Experimental Study on Wire Melting Control Ability of Twin-Body Plasma Arc
《Chinese Journal of Mechanical Engineering》2024年第2期184-194,共11页Ruiying Zhang Fan Jiang Long Xue 
Supported by Youth Program of National Natural Science Foundation of China(Grant No.51905008);Beijing Postdoctoral Research Foundation of China(Grant No.2021-zz-064);Shandong Provincial Major Science and Technology Innovation Project of China(Grant No.2020JMRH0504);Jinan Innovation Team Project of China(Grant No.2021GXRC066);Quancheng Scholars Construction Project of China(Grant No.D03032).
The twin-body plasma arc has the decoupling control ability of heat transfer and mass transfer,which is beneficial to shape and property control in wire arc additive manufacturing.In this paper,with the wire feeding s...
关键词:Twin-body plasma arc Melting control ability Melting amount Current separation ratio 
Wearable energy harvesting-storage hybrid textiles as on-body self-charging power systems被引量:4
《Nano Research Energy》2023年第4期4-13,共10页Feifan Sheng Bo Zhang Renwei Cheng Chuanhui Wei Shen Shen Chuan Ning Jun Yang Yunbing Wang Zhong Lin Wang Kai Dong 
The authors are grateful for the support received from the National Natural Science Foundation of China(No.22109012);Natural Science Foundation of the Beijing Municipality(Nos.2212052 and L222037);the Fundamental Research Funds for the Central Universities(No.E1E46805).
The rapid development of wearable electronics requires its energy supply part to be flexible,wearable,integratable and sustainable.However,some of the energy supply units cannot meet these requirements at the same tim...
关键词:power textiles coaxial supercapacitors triboelectric nanogenerators self-charging sustainable working 
Novel Design of UWB Jeans Based Textile Antenna for Body-Centric Communications
《Computer Systems Science & Engineering》2022年第9期1079-1093,共15页Mohammad Monirujjaman Khan Bright Yeboah-Akowuah Kaisarul Islam Eric Tutu Tchao Sumanta Bhattacharyya Rajesh Dey Mehedi Masud Fahad Alraddady 
support from Taif University Researchers Supporting Project(TURSP-2020/214),Taif University,Taif,Saudi Arabia.
This research presents an ultra-wideband (UWB) textile antenna designfor body-centric applications. The antenna is printed on a 1 mm thick denim substrate with a 1.7 relative permittivity. The jeans substrate is sandw...
关键词:ULTRA-WIDEBAND body-centric communication on-body TEXTILE JEANS slotted-patch WBAN 
Miniaturized Novel UWB Band-Notch Textile Antenna for Body Area Networks被引量:1
《Computer Systems Science & Engineering》2022年第3期1183-1198,共16页Mohammad Monirujjaman Khan Arifa Sultana Mehedi Masud Gurjot Singh Gaba Hesham A.Alhumyani 
Taif University Researchers are supporting project number(TURSP-2020/216),Taif University,Taif,Saudi Arabia.
This paper presents the design and analysis of a miniaturized and novel wearable ultra-wideband(UWB)band-notch textile antenna for Body Area Networks(BANs).The major goal of building the antenna for wearable applicati...
关键词:UWB band notch textile antenna wearable antenna on-body BANs JEANS X-band CST 
A Novel Flexible Antenna at Very High Frequency Band for On-Body Applications
《Journal of Beijing Institute of Technology》2022年第1期81-90,共10页Abhishek Kandwal Huajie Tang Pengfei Ao Kun Wang Jingzhen Li Yuhang Liu Tobore Igbe Zedong Nie 
National Key Research and Development Pro-gram of China(No.2018YFC2001002);Shenzhen Basic Re-search Project(Nos.JCYJ20180507182231907,PIFI 2020FYB0001);CAS Key Lab of Health Informatics.
This paper proposes a novel flexible antenna design operating at very high frequency(VHF)band for on-body applications such as human body communication(HBC).The antenna consists of back-to-back E-shaped fractal and co...
关键词:ANTENNA very high frequency(VHF) human body communication(HBC) BANDWIDTH loss FLEXIBLE 
Accurate machine learning models based on small dataset of energetic materials through spatial matrix featurization methods被引量:6
《Journal of Energy Chemistry》2021年第12期364-375,I0009,共13页Chao Chen Danyang Liu Siyan Deng Lixiang Zhong Serene Hay Yee Chan Shuzhou Li Huey Hoon Hng 
support from the Ministry of Education(MOE) Singapore Tier 1 (RG8/20)。
A large database is desired for machine learning(ML) technology to make accurate predictions of materials physicochemical properties based on their molecular structure.When a large database is not available,the develo...
关键词:Small database machine learning Energetic materials screening Spatial matrix featurization method Crystal density Formation enthalpy n-Body interactions 
THE RANDOM BATCH METHOD FOR N-BODY QUANTUM DYNAMICS被引量:1
《Journal of Computational Mathematics》2021年第6期897-922,共26页Francois Golse Shi Jin Thierry Paul 
The work of Shi Jin was partly supported by NSFC grants No.11871297 and No.31571071;We thank E.Moulines for kindly indicating several references on stochastic approximation.
This paper discusses a numerical method for computing the evolution of large interacting system of quantum particles.The idea of the random batch method is to replace the total interaction of each particle with the N−...
关键词:Time-dependent Schrodinger equations Random batch method Mean-field limit Wasserstein distance 
Mechanical Design of Long-Term Body-Adhered Medical Devices to Maximize On-Body Survival
《Journal of Biomedical Science and Engineering》2021年第9期325-337,共13页Brian Ferry John Abraham 
Long-term, body-adhered medical devices rely on an adhesive interface to maintain contact with the patient. The greatest threat to on-body adhesion is mechanical stress imparted on the medical device. Several factors ...
关键词:Finite Element Analysis Explicit Dynamics Numerical Simulation Comparative Analysis Medical Device Body-Worn Device Mechanical Design 
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