Abstract:
Disclosed are a mobile device and controlling method thereof. The present invention includes a memory configured to register a first iris image, an illumination sensor configured to sense an external illuminance of the mobile device, a display configured to emit a light from a preset region, a camera configured to detect either a second iris image or a pupil image, and a controller configured to control the memory, the illumination sensor, the camera and the display and control the display to display a message for guiding a change of an eye according to the external illuminance sensed by the illumination sensor, wherein the message for guiding the change of the eye is changed according to the sensed external illuminance.
Abstract:
A motor assembly includes a stator including a stator core, a stator coil, and an insulator, and a rotor. The stator core includes a yoke, a plurality of teeth, and a shoe. The insulator includes an insulator body wrapping and insulating an outer surface of the shoe so that an inner end of the shoe is exposed to outside, and a creepage distance extension portion extending a creepage distance between the stator coil and the inner end of the shoe. The creepage distance extension portion includes an inner extension section extending from the end of the shoe along the circumferential direction, and an outer extension section extending outwardly from the inner extension section. Accordingly, the creepage distances between the stator coil and the stator core in the circumferential direction and the radial direction may be increased, respectively, without increasing the size of the stator in the radial direction.
Abstract:
The invention relates to a driver state monitoring system and apparatus comprising: an image obtainment apparatus (174) configured to obtain image information of a user driving a vehicle; a biological information obtainment unit (173) configured to be worn on a specific portion of the user's body and to obtain biological information from the specific portion of the user's body; and a controller configured to detect a dangerous driving-state in which the user drives the vehicle, based on the image information and the biological information of the user.
Abstract:
Disclosed are an image processing method and device. Here, the X-ray image processing device according to an embodiment of the present disclosure includes an image analyzer that analyzes the received original X-ray image; A conversion unit that converts the original X-ray image into multi-scale based on the analysis results and separates it into frequency units; A noise prediction unit that generates a noise prediction map by enhancing and combining specific frequency portions; an edge map processor that generates an edge map based on the generated noise prediction map; A contrast processing unit that enhances the contrast of the X-ray image based on the generated edge map; an inverse transformation unit that performs a flattening process and an edge correction process on the contrast-enhanced X-ray image and performs inverse transformation; and a control unit that tone maps the inversely converted X-ray image and controls output.
Abstract:
An electric motor assembly includes an outer housing with two sides open, an impeller provided in the outer housing, an inner housing disposed concentrically in the outer housing and spaced apart from the impeller, a stator provided in the inner housing, a rotor rotatably disposed in the stator, a first air flow path through which air flows in an axial direction between the inner housing and the outer housing based on rotation of the impeller, and a second air flow path through which air is joined with the air of the first air flow path via an inside of the inner housing and a gap between the impeller and the inner housing based on rotation of the impeller. Accordingly, cooling of the stator can be facilitated by the air flow paths.
Abstract:
The invention relates to a driver state monitoring system and apparatus comprising: an image obtainment apparatus (174) configured to obtain image information of a user driving a vehicle; a biological information obtainment unit (173) configured to be worn on a specific portion of the user's body and to obtain biological information from the specific portion of the user's body; and a controller configured to detect a dangerous driving-state in which the user drives the vehicle, based on the image information and the biological information of the user.
Abstract:
Disclosed is an image processing method and device. An image processing method according to an embodiment of the present disclosure includes obtaining an X-ray image; converting the obtained X-ray image into a frequency domain; detecting peak shape information from the converted X-ray image in the frequency domain; selecting a peak candidate region based on the peak shape information; determining whether each selected peak candidate region is a grid peak and generating a peak map; filtering based on the generated peak map; converting the filtered X-ray image in the frequency domain into a spatial domain; and providing a converted X-ray image in the spatial domain.
Abstract:
The invention relates to a driver state monitoring system and apparatus comprising: an image obtainment apparatus (174) configured to obtain image information of a user driving a vehicle; a biological information obtainment unit (173) configured to be worn on a specific portion of the user's body and to obtain biological information from the specific portion of the user's body; and a controller configured to detect a dangerous driving-state in which the user drives the vehicle, based on the image information and the biological information of the user.
Abstract:
The present invention relates to an autofocus device, and to a method therefor, whereby the delay necessary for auto focus can be reduced according to circumstances and a clear image of a subject can be obtained in a timely fashion by suitably adjusting the precision and speed of autofocus, as auto focus settings are differently applied in accordance with the photography mode when autofocus is being implemented in a camera. To this end, the autofocus method according to an embodiment of the present invention comprises: a step of inputting a photography mode for a subject; a step of deciding which auto focus setting corresponds to the input photography mode; a step of determining the lens step with the highest focal value among lens steps set according to the distance of the subject and the lens on the basis of the auto focus setting decided upon; and a step of moving the lens to the determined lens step.