Abstract:
Disclosed is a method for interacting with a flexible device and a user terminal executing the method. The method for interacting with a flexible device includes the steps of detecting the physical deformation of the flexible device; and executing the interaction, corresponding to the physical deformation, with the flexible device.
Abstract:
PURPOSE: A plasmonic modulator and an optical device adopting the same include an insulating nitride layer, and thereby prevent conducting between a metal layer and a refraction index varying layer. CONSTITUTION: A first and a second metal layers (110,120) are faced each other. The first and the second metal layer are separately placed. A refraction index varying layer (130) is arranged between the first and the second metal layer. The refraction index varying layer diversifies the refraction index. An insulating nitride layer (140) is arranged between the refraction index varying layer and the second metal layer.
Abstract:
PURPOSE: An apparatus for holography 3-dimensional display is provided to implement 3-dimensional hologram images in full colors, by making chromatic lights be incident on a hologram playing part at a surface plasmon forming angle per color by a sheet light source unit of which structure is slim. CONSTITUTION: An apparatus for holography 3-dimensional display(10) includes a hologram playing part(60), a light source(30) and a sheet light source unit(20). The hologram playing part generates surface Plasmon in response to an incident light, and implements 3-dimensional images by making the generated surface Plasmon diffracted by hologram. The sheet light source unit implements colors by adjusting an incident angle on the hologram playing part in order to generate each surface Plasmon as to a plurality of color lights respectively. The sheet light source unit includes a light waveguide plate(50). The light waveguide plate emits the incident light through a light emitting plane.
Abstract:
PURPOSE: A content conversion device and a method thereof are provided to supply a user interface when 2D content is converted into 3D content, thereby efficiently performing a conversion task. CONSTITUTION: A content conversion device displays an extraction object frame among a plurality of frames of 2D content(S31). The content conversion device designates a boundary area of an extracted object on the frame corresponding to a user command using a user interface(S32). The content conversion device generates a tri-map based on the boundary area(S33). The content conversion device extracts the object based on the tri-map(S34). [Reference numerals] (AA) Start; (BB) End; (S31) Displaying an extraction object frame among a plurality of frames of 2D content; (S32) Designating a boundary area of an extracted object on the frame corresponding to a user command using a user interface designating an area in a lump; (S33) Generating a tri-map including an inner area and an outer of the extracted object based on the boundary area; (S34) Extracting the object based on the generated tri-map;
Abstract:
PURPOSE: A nano structured acousto-optic device, an optical scanner with the same, a light modulator, and a holographic display device are provided to control a diffraction angle range of outputted light. CONSTITUTION: First media(11) and second media(12) are alternatively and repetitively arranged. The first and second media have different dielectric constants. A sound wave generator(15) applies a sound wave to the first and second media. At least one of the first and second media is made of an acousto-optic medium(30).
Abstract:
본 발명은 움직임이 보상된 보간 화소를 이용한 영상 보간 방법에 관한 것으로, 인접하는 두 필드에 보간 될 보간 필드의 화소와 동일한 위치에 존재하는 두 필드를 포함하는 복수개의 필드에서의 화소의 화소 값을 이용하여 제1 화소값을 생성하고, 보간 필드의 화소에 대하여 움직임 보상을 수행하여, 인접한 두 필드를 포함하는 복수개의 필드로부터 움직임 보상에 이용될 화소의 화소 값인 제2화소 값 내지 제N 화소 값을 검출하며, 제1 화소 값 내지 제N 화소 값으로부터 소정의 기준 화소 값을 차분한 차분 값을 이용하여 가중치를 생성한 후, 제1 화소 값 내지 제N 화소 값 및 가중치를 이용하여 최종 보간 화소 값을 생성함으로써, 움직임에 따른 에러 및 잡음을 효율적으로 제거하면서 영상의 보간을 수행할 수 있다. 움직임, 보상, 화소, 보간, 가중치
Abstract:
PURPOSE: A nano-structured thin film, a surface emitting light source and a display apparatus employing the nano-structured thin film are provided to reduce a volume and to enhance a resolution, a clearness, a density and a brightness. CONSTITUTION: A surface light source thin film(100) includes a dielectric layer(10) and a nano structure(20). The nano structure is arranged cyclically at the dielectric layer. The light coming out from the dielectric layer has an orientation by the nano-structure. The nano structure is made of a metal or a dielectric material with a dielectric constant different from that of the dielectric layer. The dielectric layer includes an active thin film layer for generating the light.
Abstract:
PURPOSE: A motion estimating method for an image and an image processing apparatus for the same are provided to implement a bidirectional motion estimation effect using a virtual motion vector. CONSTITUTION: A candidate motion vector operating unit(10) computes a candidate motion vector from a reference block and seek area by using one of the forward direction motion estimation or the backward motion estimation. A pseudo motion vector operating unit(20) computes a virtual motion vector corresponding to the rest direction estimation using the candidate motion vector. A motion compensation unit(30) interpolates a first image and a second image using one of the candidate motion vector or the virtual motion vector.
Abstract:
PURPOSE: An image processing apparatus and an image move estimating method are provided to reduce the fabrication costs thereof while reducing the hardware load thereof. CONSTITUTION: An image buffer(10) stores a continuously-inputted image. Based on the image stored in the image buffer, a control unit(20) estimates the motion of the image. The control unit reduces the capacitance of a memory(25) by only storing an image corresponding to one field image. After interpolating the image corresponding to the rest field images, the control unit performs motion estimation by using a frame image.