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Body area communication based on quasi-electrostatic field and spread spectrum
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作者 解禹 黄忠华 崔占忠 《Journal of Beijing Institute of Technology》 EI CAS 2011年第1期14-17,共4页
Based on the electrical model of body area communication, the change tendency of chan nel gain in 100 kHz 10 MHz band was experimentally analyzed and verified. Results show that chan nel gain was flat and signal a... Based on the electrical model of body area communication, the change tendency of chan nel gain in 100 kHz 10 MHz band was experimentally analyzed and verified. Results show that chan nel gain was flat and signal attenuation was approximately 43 dB in 1 MHz 10 MHz band. The char acteristics of the channel were taken into account in the design of body area spread spectrum com munication and its multiuser receiver issue. BER Eb/No curves of single user and multiuser were de rived by simulation. The characteristics of body area commutation channel were studied and the fea sibility of introducing spread spectrum theory to body area communication was verified. 展开更多
关键词 spread spectrum technology quasi electrostatic field body area communication
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A 2Mbps Human Body Communication Transceiver Based on Body Antenna Effect
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作者 Huajie Tang Pengfei Ao +4 位作者 kun Wang Yuhang Liu Jingzhen Li Abhishek Kandwal Zedong Nie 《Journal of Beijing Institute of Technology》 EI CAS 2022年第1期39-52,共14页
This paper presents a human body communication(HBC)transceiver for wireless body network applications.The transceiver employs on frequency shift keying(FSK)modulation and op-erates in 40 MHz-60 MHz which is the resona... This paper presents a human body communication(HBC)transceiver for wireless body network applications.The transceiver employs on frequency shift keying(FSK)modulation and op-erates in 40 MHz-60 MHz which is the resonant frequency of the human body as an antenna.It achieves high performance and stability through establish passive microstrip line and via models and active device-models.The proposed transceiver is designed and fabricated by FR4 printed cir-cuit board(PCB)process,the transceiver has the ability of configurable data rate up to 2 Mbps and it achieves-86 dBm receiving sensitivity at 2 Mbps data rate.Meanwhile,the transceiver out-put power dynamics range is 34 dB.Furthermore,with a visual interaction interface,the transceiv-er can be agility use in a variety of scenarios.Its measurements are verified on human body.The result shows that the transceiver has ability to send data from person to person by relying on hu-man body antenna radiation.The transceiver shows great prospect in wireless body area networks(WBAN)for telemedicine and emergency communication. 展开更多
关键词 human body antenna human body communication(HBC) TRANSCEIVER wireless body artworks(WAN) frequency shift keying(FSK)modulation medical monitoring
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Analysis of wave propagation on human body based on stratified media model 被引量:2
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作者 马力 沈海斌 刘磊 《Journal of Central South University》 SCIE EI CAS 2013年第12期3545-3551,共7页
Human body communication(HBC) is a promising near-field communication(NFC) method emerging in recent years. But existing theoretical models of HBC are too simple to simulate the wave propagation on human body. In this... Human body communication(HBC) is a promising near-field communication(NFC) method emerging in recent years. But existing theoretical models of HBC are too simple to simulate the wave propagation on human body. In this work, in order to clarify the propagation mechanism of electromagnetic wave on human body, a surface waveguide HBC theoretical model based on stratified media cylinder is presented. A numerical model analyzed by finite element method(FEM) is used for comparing and validating the theoretical model. Finally, results of theoretical and numerical models from 80 MHz to 200 MHz agree fairly well, which means that theoretical model can characterize accurate propagation mechanism of HBC signal. Meanwhile, attenuation constants derived from two kinds of models are within the range from 1.64 to 3.37, so that HBC signal can propagate effectively on human body. The propagation mechanism derived from the theoretical model is useful to provide design information for the transmitter and the modeling of the propagation channel in HBC. 展开更多
关键词 human body communication surface waveguide propagation mechanism stratified media propagation constant attenuation constant
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Low Power Single-Chip RF Transceiver for Human Body Cormunication 被引量:2
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作者 Nie Zedong Guan Feng +1 位作者 Huang Jin Wang Lei 《China Communications》 SCIE CSCD 2012年第9期1-10,共10页
Human body communication is proposed as a promising body proximal comanunication tech- nology for body sensor networks. To achieve low power and slmll volume ill the sensor nodes, a Ra-dio Frequency (RF) application... Human body communication is proposed as a promising body proximal comanunication tech- nology for body sensor networks. To achieve low power and slmll volume ill the sensor nodes, a Ra-dio Frequency (RF) application-specific integrated circuit transceiver tbr Human Body Commnunication (HBC) is presented and the characteristics of HBC are investigated. A high data rate On-Off Keying (OOK)/Frequency-Shift Keying (FSK) modulation protocol and an OOK/FSK delrodulator circuit are introduced in this paper, with a data-rate-to-carrier-frequency ratio up to 70%. A low noise amplifier is proposed to handle the dynamic range problem and improve the sensitivity of the receiver path. In addi-tion, a low power autonmatic-gain-control system is realized using a novel architecture, thereby render-ing the peak detector circuit and loop filter unneces-sary. Finally, the complete chip is fabricated. Simula-tion results suggest receiver sensitivity to be-75 dBm. The transceiver shows an overall power con-smxption of 32 mW when data rate is 5 Mbps, de-livering a P1dB output power of - 30 dBm. 展开更多
关键词 application-specific integrated circuit TRANSCEIVER human body communication
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A Novel Flexible Antenna at Very High Frequency Band for On-Body Applications
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作者 Abhishek Kandwal Huajie Tang +5 位作者 Pengfei Ao Kun Wang Jingzhen Li Yuhang Liu Tobore Igbe Zedong Nie 《Journal of Beijing Institute of Technology》 EI CAS 2022年第1期81-90,共10页
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... 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 complimentary structures designed over a thin flex-ible substrate.The overall design working on the principle of fractal geometries and capacitive coupling is highly beneficial to achieve better antenna characteristics even at low frequencies around 35 MHz-45 MHz that are being used for HBC application.The proposed antenna obtained a large bandwidth of around 10.0 MHz in air and a bandwidth of around 8.0 MHz during on-body opera-tion.The antenna has been tested in three different scenarios viz.air,on-body single antenna and on-body communication using two antennas.The insertion loss is reduced to a minimum in all three scenarios,which is quite beneficial for better signal transmission.The size miniaturization with high flexibility in such low frequencies has also been achieved in the paper that makes the proposed design suitable for human body communication applications. 展开更多
关键词 ANTENNA very high frequency(VHF) human body communication(HBC) BANDWIDTH loss FLEXIBLE
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Nonverbal Language in Intercultural Communication Application
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作者 Hongmei Yang 《International Journal of Technology Management》 2013年第10期89-91,共3页
Cross-cultural communication mainly refers to communication between people of different cultural backgrounds. Worldwide research on intercultural communication is the rise of a new field of study in recent 30 years. W... Cross-cultural communication mainly refers to communication between people of different cultural backgrounds. Worldwide research on intercultural communication is the rise of a new field of study in recent 30 years. With the deepening of reform and opening up, China' s exchanges with the world are more and more frequent, China approaches to the world, and the world is also approaching the China. China should learn from the advanced experience of foreign countries, to learn all the outstanding achievements of human civilization all over the world, while the splendid Chinese culture will also be introduced to the world. In this way, it relates to the problem of cross-cultural communication. 展开更多
关键词 Nonverbal Language Intercultural communication. body language
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2018年第3期25-26,39,共3页
关键词 In 短文改错 Module 3 body Language and Non-verbal communication
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2019年第2期37-46,78,共11页
关键词 语法填空 Module 3 body Language and Non-verbal communication 短文改错 阅读理解 完形填空
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2016年第2期35-35,共1页
关键词 Module 3 body Language and Non-verbal communication 选词填空 句子翻译 篝火晚会
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2017年第2期39-47,76,共10页
关键词 语法填空 BUS Module 3 body Language and Non-verbal communication 短文改错 阅读理解 BTB 篝火晚会
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Module 3 Body Language and Non-verbal Communication
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作者 蔡守一 《时代英语(高一版)》 2011年第3期19-20,32,共3页
关键词 Module 3 body Language and Non-verbal communication 短文改错 身体语言
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本模块知识网络 Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2014年第2期35-42,70,共9页
关键词 选词填空 Module 3 body Language and Non-verbal communication 句子翻译 知识网络 阅读理解
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2017年第3期25-26,39,共3页
关键词 Module 3 body Language and Non-verbal communication 短文改错 身体语言
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2013年第3期21-22,34,共3页
(满分120分;时间80分钟)第一部分听力(共两节,满分20分)第一节(共5小题;每小题1分,满分5分)听下面5段对话。每段对话后有一个小题,从题中所给的A、B、C三个选项中选出最佳选项,并标在试卷的相应位置。听完每段对话后,你都有10秒钟的时... (满分120分;时间80分钟)第一部分听力(共两节,满分20分)第一节(共5小题;每小题1分,满分5分)听下面5段对话。每段对话后有一个小题,从题中所给的A、B、C三个选项中选出最佳选项,并标在试卷的相应位置。听完每段对话后,你都有10秒钟的时间来回答有关小题和阅读下一小题。每段对话仅读一遍。 展开更多
关键词 Module 3 body Language and Non-verbal communication 短文改错 身体语言
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2019年第3期49-52,78,共5页
关键词 Module 3 body Language and Non-verbal communication 短文改错
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2016年第3期41-44,70,共5页
关键词 短文改错 Module 3 body Language and Non-verbal communication
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Module 3 Body Language and Non-verbal Communication
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《时代英语(高一版)》 2012年第3期21-22,34,共3页
关键词 Module 3 body Language and Non-verbal communication
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