Abstract:
전자 장치의 제어 방법이 개시된다. 본 개시에 따른 제어 방법은, 타겟 프로그램에 대한 트레이스 데이터(trace data)를 획득하는 단계; 트레이스 데이터를 바탕으로 적어도 하나의 제1 함수를 획득하는 단계; 적어도 하나의 제1 함수 중 퍼징이 시작되는 제1 기본 블록에 대응되는 제2 함수를 식별하는 단계; 제2 함수를 추상화하여 제3 함수를 획득하는 단계; 및 트레이스 데이터 및 제3 함수를 바탕으로 퍼징(fuzzing)을 수행하는 단계;를 포함한다.
Abstract:
본 발명은 일반적으로 트래픽 제어를 위한 방법 및 그 전자 장치에 관한 것으로, 전자 장치의 동작 방법은, 적어도 하나의 센서를 통해 상기 전자 장치의 온도를 측정하는 동작과, 상기 전자 장치에서 실행 중인 적어도 하나의 어플리케이션(application)의 동작 상태를 확인하는 동작과, 상기 측정된 온도가 기준 값 이상인 경우, 상기 적어도 하나의 어플리케이션의 동작 상태에 기반하여, 상기 적어도 하나의 어플리케이션 각각에 대한 데이터 처리율(throughput)을 제어하는 동작을 포함할 수 있다. 이 밖에 다양한 실시예가 가능하다.
Abstract:
본발명에따른피부임피던스측정센서는, 사용자피부에접촉되는 R 전극(Reference Electrode)과 C 전극(Current Carrying Electrode); 및상기 R 전극및 상기 C 전극사이에흐르는전류의임피던스(Impedance)를측정하는 M 전극(Measuring Electrode)을포함하고, 상기 M 전극은상기 R 전극및 상기 C 전극에대해단차를갖는것을특징으로한다.
Abstract:
PURPOSE: A sound output device and a control method thereof are provided to increase the abilities of a user which recognize a sound without distortion. CONSTITUTION: A signal extracting unit extracts a noise signal and a desired signal from a sound received from a sound output device(801). An DoA(Direction of Arrival) estimating unit estimates the direction of arrival of the extracted desired signal(802). A DoA adjustment unit adjusts the DoA of the extracted noise signal by referring to the DoA of the desired signal(803). A sound output unit outputs a sound by the adjusted result(804).
Abstract:
PURPOSE: A method and apparatus for indicating bio-information offers in order to easily grasp the state and HRV of patient in the emergency situation occurrence. The bio-information of the user is watched efficiently. CONSTITUTION: The monitoring monitors a plurality of HRVs. Monitoring is composed of the acquisition unit and event detection part. The display unit at least indicates one among the basic information about HRVs and the detailed information which get from monitoring in screen. The display unit is composed of the basis information display part, and the number data display unit and graph display. The number data display unit digitally indicates HRV data.
Abstract:
A noninvasive probe, system and method for measurement of body fluid constituent are provided to improve the reliability of measurement result by measuring the actual pressure applied to the skin of a human body through analysis of luminous intensity penetrating the skin. A noninvasive probe for measurement of body fluid constituent comprises an input light transmitting unit(160) transmitting input light for obtaining the Raman spectrum signal, a light collecting unit(145) irradiating the input light to the inside of an human body, an output light transmitting unit(165) transmitting output light to a spectroscope classifying the output light according to wavelength, an human body contact light-emitting unit(170) emitting light on the human body surface, and a human body contact light-receiving unit(175) contacting with the human body skin and receiving the light projected from the human body contact lighting-emitting unit.
Abstract:
A noninvasive probe for measuring bodily component and a noninvasive measuring system comprising the same are provided to obtain a plurality of Raman spectrums by instantaneously irradiating lights on a plurality of measuring points. A input light transmitting unit(140) transmits an input light emitted from one light source. A light dividing unit(125) divides the input light from the input light transmitting unit into a plurality of bodily input lights. A condensing unit(130) condenses the bodily input lights so as to irradiate a plurality of bodily input lights onto different bodily measuring points. A light filtering unit(135) filters optical component of the same wavelength band as that of the input light. An output light transmitting unit(145) transmits output lights into a spectrometer which classifies output lights as its wavelength.