Abstract:
본 발명의 다양한 실시 예는 전자장치에서 터치스크린 패널(Touch Screen Panel: TSP) 센서를 이용하여 사용자의 그립상태를 인지하는 방법 및 장치에 관한 것으로, 전자장치에서 사용자의 그립상태를 인식하는 방법은, 자기 정전용량 방식 또는 상호 정전용량 방식의 터치스크린을 통해 사용자의 그립에 의해 발생하는 호버링 입력을 검출하는 과정; 및 검출된 상기 호버링 입력에 따라, 사용자의 그립상태를 판단하는 과정을 포함할 수 있다.
Abstract:
주기 마다 대상체의 영상 정보 및 움직임 정보를 포함하는 RF 에코 신호를 수신하고, 수신된 RF 에코 신호로부터 움직임 정보가 제거된 자기공명 영상을 생성하는 자기공명영상장치 및 그 제어방법을 제공한다. 일 실시예에 따른 자기공명영상장치는, 주기 마다 대상체의 제 1 단면에 대한 제 1 RF 펄스 및 상기 대상체의 제 2 단면에 대한 제 2 RF 펄스를 조사하고, 상기 제 1 RF 펄스에 대응하여 생성된 영상 에코 성분 및 상기 제 2 RF 펄스에 대응하여 생성된 추적 에코 성분을 포함하는 RF 에코 신호를 수신하는 RF 코일부; 상기 수신된 RF 에코 신호에 기초하여 k-공간 데이터를 획득하고, 상기 추적 에코 성분으로부터 획득된 움직임 정보에 상기 k-공간 데이터를 동기화하고, 상기 동기화된 k-공간 데이터로부터 상기 추적 에코 성분을 제거하고, 상기 추적 에코 성분이 제거된 상기 k-공간 데이터를 이용하여 자기공명영상을 생성하는 영상 처리부; 및 상기 생성된 자기공명영상을 표시하는 출력부; 를 포함할 수 있다.
Abstract:
Various embodiments of the present invention relate to a method and apparatus for recognizing a grip state of a user using a touch screen panel (TSP) sensor in an electronic device. The method for recognizing a grip state of a user in an electronic device includes detecting a hovering input through a touch screen, determining the distribution of a detection signal corresponding to the hovering input, and determining a grip state of a user according to the distribution of the detection signal.
Abstract:
The present invention relates to an apparatus and method for generating a panorama image in an electronic device. The method for generating the panorama image includes the steps of: displaying guide information including at least one location information to obtain the image; obtaining at least one image at a matching point of at least one location information included in the guide information and the orientation information of the electronic device; correcting an exposure difference for at least one image; correcting the matching error of an overlap area for at least one image to correct the exposure difference; and generating the panorama image by rendering at least one image with the corrected matching error of the overlap region on a 3D spherical surface.
Abstract:
PURPOSE: A digital single lens reflex camera and a control method for the same are provided to transfer a noise property to a camera main body when a lens is combined with a camera main body, thereby photographing a moving picture while preventing noise generated in the lens. CONSTITUTION: A lens comprises the following units. A noise characteristic storage unit(120a) stores a noise characteristic of the lens. The first communication unit(120b) transmits the noise characteristic stored in the camera main body. The camera main body comprises the following units. The second communication unit(141e) receives the noise characteristic. A storage unit(141a) stores the received noise characteristic. A noise detecting unit detects noise generated while photographing the moving picture.
Abstract:
PURPOSE: An image processing device in a bayer image and a device thereof is provided to perform digital aliasing removing process without using an OLPF(Optical Low-Pass Filter). CONSTITUTION: A bayer interpolator(140) interpolates an RGB image signal outputted from a byaer pattern. A color changing unit(210) converts the interpolated image signal into a luminance/chrominance image signal. Based on chrominance image signal, a chrominance compensation unit(220) corrects a phase of the chrominance image signal. A aliasing removing unit(230) respectively removes an aliasing of the chrominance image signal and a compensated chrominance image signal.
Abstract:
PURPOSE: A digital image processing apparatus and a control method thereof are provided to automatically filter blurred results during continuous photographing, thereby improving user's convenience. CONSTITUTION: An image processor(125) performs signal processing to display digitally converted RAW data. The image processor removes a black level due to a dark current. The image processor performs gamma compensation. A digital signal processor(129) extracts high frequency components of images obtained through the continuous photographing. The digital signal processor determines whether the high frequency components of each image are more than a fixed reference. The digital signal processor stores only images with high frequency components more than the fixed reference.