Abstract:
Provided are a method and a device for transmitting and receiving a traffic stream in a wireless local area network (WLAN) system. Specifically, the device broadcasts a beacon frame including allocation information on a contention-free period (CFP) and allocation information on a contention period (CP) to a station (STA) and transmits a downlink traffic stream to the STA or receives an uplink traffic stream from the STA, based on the allocation information on the CFP. The allocation information on the CFP indicates that the downlink traffic stream is transmitted without performing a clear channel assessment (CCA) during the CFP and indicates that the uplink traffic stream is received with performing a CCA during the CFP.
Abstract:
An OLED display capable of visible light communication and a visible light communication system having same are disclosed. The OLED display comprises an OLED display unit, a data memory unit, and an OLED control unit. The OLED display unit emits an image which is outwardly displayed and additional information which is included in the image. The data memory unit is storing image data corresponding to the image and additional data corresponding to the additional information. The OLED control unit controls the OLED display unit to display the image by using the image data provided by the data memory unit and controls the flicker of the image within a range which cannot be perceived by human eyes so that the additional information is included in the image by using the additional data provided by the data memory unit. As described above, the OLED display displays not only a general image but also additional information included in the image and thus can perform an image display function together with a reception function in visible light communication.
Abstract:
The present disclosure relates to a three-dimension printing apparatus using photocurable resin, the three-dimension printing apparatus capable of easily separating the cured photocurable resin from a bottom surface of an accommodating unit where the photocurable resin is accommodated by moving the accommodating unit in a spiral direction, and including the accommodating unit configured to receive light being emitted from a light source, and to provide space for the photocurable resin accommodated therein to be cured by the light; a moving unit configured to move cured photocurable resin in a direction distancing away from the light source, so that the photocurable resin accommodated in the accommodating unit is cured sequentially by the light; and a separation guiding unit mounted onto the accommodating unit, and configured to move at the same time as the accommodating unit along a spiral direction so that the cured photocurable resin is separated from an inner surface of the accommodating unit.
Abstract:
An OLED display capable of visible light communication and a visible light communication system having same are disclosed. The OLED display comprises an OLED display unit, a data memory unit, and an OLED control unit. The OLED display unit emits an image which is outwardly displayed and additional information which is included in the image. The data memory unit is storing image data corresponding to the image and additional data corresponding to the additional information. The OLED control unit controls the OLED display unit to display the image by using the image data provided by the data memory unit and controls the flicker of the image within a range which cannot be perceived by human eyes so that the additional information is included in the image by using the additional data provided by the data memory unit. As described above, the OLED display displays not only a general image but also additional information included in the image and thus can perform an image display function together with a reception function in visible light communication.
Abstract:
The present disclosure relates to a three-dimension printing apparatus using photocurable resin, the three-dimension printing apparatus capable of easily separating the cured photocurable resin from a bottom surface of an accommodating unit where the photocurable resin is accommodated by moving the accommodating unit in a spiral direction, and including the accommodating unit configured to receive light being emitted from a light source, and to provide space for the photocurable resin accommodated therein to be cured by the light; a moving unit configured to move cured photocurable resin in a direction distancing away from the light source, so that the photocurable resin accommodated in the accommodating unit is cured sequentially by the light; and a separation guiding unit mounted onto the accommodating unit, and configured to move at the same time as the accommodating unit along a spiral direction so that the cured photocurable resin is separated from an inner surface of the accommodating unit.
Abstract:
The present invention provides a smart device which can receive, by an image sensor of a camera, a visible light signal generated by a light-emitting source such as a lighting apparatus or a display, and which can transmit the visible light signal to another terminal and light-emitting source by an LED flash of the camera, thereby enabling transmission and reception of visible light communication by the camera, which is equipped as standard in the smart device, as well as enabling transmission and relay of data by connecting to RF communication such as WiFi, Bluetooth and UWB. Moreover, the present invention provides a system and a method for providing location-based services which measure an approximate current location of a user by an RF communication access point and measure the current location of the user in detail by receiving a visible light signal, which includes location information, from the light-emitting source, and thus can perform a high-precision indoor location recognition function linking visible light communication and RF communication and can provide guide image information, which comprises various additional information, on the basis of the location information of the user.
Abstract:
A display device is disclosed. The display panel may comprise a display panel including a pixel area and a light refraction element disposed on the display panel. The light refraction element may have a first face facing the display panel and a second face disposed at an opposite side of the first face. The light refraction element may comprise a light refraction pattern disposed at the first face and having a first slanting face and a second slanting face, and the light refraction pattern can refract light emerging from the display panel.
Abstract:
Provided are an automatic financial product trading system and method for automatically trading a financial product when the financial product satisfies a preset trading condition. Through an automatic ordering accelerator using separate hardware or an automatic ordering accelerator installed in a network card, rather than a main processor of a computer system, information input and output through a network card is collected and a financial product is quickly automatically traded.
Abstract:
An NoC-based error correction apparatus capable of supporting a network interface that transmits a flit between Tx and Rx IP-elements includes: an encoder configured to receive a k-bit flit from the Tx IP-element and encodes the k-bit flit into n-bit data; and a decoder configured to receive the n-bit data, decode the n-bit data into the k-bit flit, and output the k-bit flit, the decoder having an error correction circuit for correcting an error in the n-bit data, wherein a t-bit adaptive error correction code having a variable error correction capability depending on the number of bits (n) of the received data is applied to the error correction circuit, the error correction capability is proportional to the number of bits (n) of the received data, and the t-bit error correction code has the number of bits proportional to the number of bits (n) of the received data.
Abstract:
Disclosed are a method for measuring the adhesive strength of a thin film using surface waves, and a computer-readable recording medium having a program for performing same recorded thereon. The method for measuring the adhesive strength of a thin film measures the adhesive strength between a substrate and a thin film by means of an electronic calculator, using sound waves measured from a thin film structure having a thin film formed on a substrate. The method, which is performed by the electronic calculator, comprises the steps of: receiving, as a first input value, the thickness, density, longitudinal wave velocity, and shear wave velocity of a first thin film and a substrate the adhesive strength between which is to be measured; calculating, from the first input value, the thickness and density of a second thin film virtually configured between the first thin film and substrate, and setting as a second input value; calculating the longitudinal wave velocity and shear wave velocity of the second thin film according to the stiffness constant of the second thin film, while varying the stiffness constant, and setting as a third input value; using the first to third input values to acquire a transfer matrix between the first thin film, second thin film, and substrate; using the transfer matrix to calculate the dispersion characteristics of the speed of surface waves; and substituting, to dispersion curves, the propagation speed of the surface waves measured from the substrate having the first thin film formed thereon, in order to acquire the stiffness constant matching the propagation speed of the measured surface waves and measure the adhesive strength between the substrate and the thin film.