The present invention relates to a device for communication, and more particularly, to a method and device for communication using a human body as a transmission medium.
Human body communication utilizes a human body as a transmission medium to transmit signals between electronic devices that are connected to the human body based on a principle in which electricity passes through the human body.
Various information communication devices such as personal digital assistants (PDAs), portable personal computers, digital cameras, MP3 players, mobile phones, etc are widely used. Users use a diverse range of multimedia services such as sending and receiving e-mails, downloading content data, etc. through these devices.
However, to transmit e-mails and content data stored in one communication device to another communication device, an adapter or connector, and a communication line such as a cable are required. Thus, sending and receiving data between the communication devices can be troublesome.
Moreover, when performing data communication by connecting devices adjacent to a human body to a cable, the weight of the devices imposes on the human body and at the same time the human body is limited in movement because of the cables connected between the devices.
The communication devices provide functions such as converting digital information into a voice signal, an internet service, and calling. Besides these functions, the communication devices provide common functions such as displaying, storing data in a memory, and processing digital signals. Therefore, human body communication has been under development to effectively use these functions of communication devices and thereby achieve effective use of communication resources and easy data communication between communication devices.
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The present invention provides a communication device and method using a human body to communicate over a communication channel without using an RF carrier frequency.
According to an aspect of the present invention, there is provided a communication device using a human body, including: a modulating and multiplexing unit modulating data; a timing generator generating a timing signal using the modulated data; a pulse generator generating a wideband pulse having a short time interval on the basis of the timing signal; and an electrode unit contacting a human body for transmitting the wideband pulse through the human body.
According to another aspect of the present invention, there is provided a communication device using a human body, including: a front-end unit amplifying and filtering a wideband pulse signal received through an electrode unit contacting a human body; a timing generator generating a timing signal; and a correlator correlating the timing signal with the amplified and filtered signal.
According to a another aspect of the present invention, there is provided a communication method using a human body, including: modulating data; generating a timing signal by using the modulated data; generating a wideband pulse having a short time interval on the basis of the timing signal; and transmitting the wideband pulse through an electrode unit contacting a human body.
According to the present invention, since data is transmitted through a human body by using a wideband pulse with a short time interval and not by using an RF carrier frequency, a communication device having low power consumption can be achieved. Moreover, since a human body is used as a transmission medium, data leakage by hacking can be prevented. Since data is transmitted and spread in a broad bandwidth spectrum, communication is possible without interference with other narrowband signals.
According to an aspect of the present invention, there is provided a communication device using a human body, including: a modulating and multiplexing unit modulating data; a timing generator generating a timing signal using the modulated data; a pulse generator generating a wideband pulse having a short time interval on the basis of the timing signal; and an electrode unit contacting a human body for transmitting the wideband pulse through the human body.
According to another aspect of the present invention, there is provided a communication device using a human body, including: a front-end unit amplifying and filtering a wideband pulse signal received through an electrode unit contacting a human body; a timing generator generating a timing signal; and a correlator correlating the timing signal with the amplified and filtered signal.
According to a another aspect of the present invention, there is provided a communication method using a human body, including: modulating data; generating a timing signal by using the modulated data; generating a wideband pulse having a short time interval on the basis of the timing signal; and transmitting the wideband pulse through an electrode unit contacting a human body.
The present invention will now be described more fully with reference to the accompanying drawings, in which exemplary embodiments of the invention are shown.
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The host 220 includes devices such as a wrist computer 300, a mobile phone 302, and a PDA 304, and various devices such as a camera 306, a printer 308, a music player 310, and a head-mount display 312.
The present invention utilizes the human body as a transmission medium that connects separated devices and components of a wearable computer.
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The receiving unit 505 generates a time-modulated timing signal based on information data and user identification data. The timing signal is a signal that represents time information for transmitting a wideband pulse. The receiving unit 525 demodulates signals received through the human body 560 into wideband pulses in order to restore data after acquiring synchronization using a correlator. The electrode unit 550 is in direct contact with the human body so it can transmit a signal in a current through the human body, and can receive the signal delivered from the human body.
More specifically, the transmitting unit 505 includes a modulating and multiplexing unit 510, a timing generator 515, and a pulse generator 520. The modulating and multiplexing unit 510 performs modulation in order to sort data and multiplexing in order to classify users. For the modulation, the modulating unit utilizes pulse position modulation (PPM), pulse amplitude modulation (PAM), binary phase shift keying (BPSK), quadrature phase shift keying (QPSK), and orthogonal frequency division multiplexing (OFDM). The timing generator 515 utilizes the modulated and multiplexed data to generate a timing signal. The pulse generator 510 generates a pulse according to the timing signal.
The receiving unit 525 includes a timing generator 530, a correlator 535, and a front-end unit 540. After receiving a signal transmitted through the human body 560 by using the electrode unit 550, the front-end unit 540 amplifies and filters the signal. The timing generator 530 generates a timing signal that is transmitted to the correlator 535. The correlator performs correlation in synchronization with the timing signal generated in the timing generator 500.
The control unit 545 checks and corrects errors of the signal inputted from the receiving unit 525, and recovers the signal received through the electrode unit 550. Moreover, the control unit 545 operates by defining communication order and rules between a plurality of communication devices that constitute a human communication network in order to prevent data collision. Therefore, data transmission efficiency is improved, and unnecessary use of communication resources can be prevented.
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According to the present invention, since data is transmitted through a human body by using a wideband pulse with a short time interval and not by using an RF carrier frequency, a communication device having low power consumption can be achieved. Moreover, since a human body is used as a transmission medium, data leakage by hacking can be prevented. Since data is transmitted and spread in a broad bandwidth spectrum, communication is possible without interference with other narrowband signals.
While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it will be understood by those of ordinary skill in the art that various changes in form and details may be made therein without departing from the spirit and scope of the present invention as defined by the following claims.
The present invention provides a communication device and method using a human body to communicate over a communication channel without using an RF carrier frequency.
Number | Date | Country | Kind |
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10-2006-0054369 | Jun 2006 | KR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/KR07/02596 | 5/29/2007 | WO | 00 | 12/9/2008 |