Abstract:
생체신호 측정의복과 생체신호 처리시스템이 개시된다. 생체신호 측정의복은 신축성있는 직물로 이루어지며, 부분적으로 메쉬 구조와 탄력 밴드를 포함하는 의복, 의복에 봉제되는 적어도 하나 이상의 생체신호 감지전극, 의복에 봉제되며 생체신호 감지전극으로부터 얻어진 생체신호를 전달하는 생체신호 전달부, 및 생체신호 전달부를 통하여 전달되는 생체신호 감지전극으로부터 얻어진 생체신호로부터 다양한 생체정보를 측정하는 생체정보 측정모듈로 이루어진다. 이에 따르면, 생체신호 측정시 사용자의 편의성을 증대시키는 동시에 측정된 생체신호의 정확도를 높일 수 있다.
Abstract:
A garment for measuring physiological signals and a method for manufacturing the same are provided to reduce distortion and noise of the measured physiological signals due to wrinkle and stretch thereof even in wearer's intensive exercise. A garment(10) for measuring physiological signals includes an electrode sensor, a signal connection line(300), a snap structure, and a measuring device. The electrode sensor is coupled with an inner surface of the garment as one body to contact the skin and senses the physiological signals. The signal connection line is connected to the electrode sensor. The snap structure is electrically connected to the snap structure. The measuring device is mounted on the snap structure to measure the physiological signals. The signal connection line has elasticity.
Abstract:
본 발명은 사용자의 움직임을 보다 정확하게 파악할 수 있을 뿐 만 아니라 호흡량까지도 파악할 수 있도록 함으로써, 사용자 코로 흡입되는 공기량을 측정하여 호흡 신호를 획득 및 출력하는 호흡 측정 장치; 사용자의 신체 부위별 움직임 크기 및 움직임 방향을 반영하는 가속도 신호를 획득 및 출력하는 다수의 움직임 감지 장치; 및 상기 가속도 신호를 분석하여 사용자의 움직임량 및 움직임 패턴을 파악하며 상기 호흡 신호를 분석하여 운동 강도를 파악하고, 상기 사용자의 움직임량 및 움직임 패턴과 운동 강도를 함께 고려하여 소모 열량을 산출하는 제어부를 포함할 수 있다.
Abstract:
PURPOSE: A bio-signal transmission device, a vehicle control device, a vehicle automatic control system using the same, and a method thereof are provided to control driving of a vehicle by handling emergency situation happening during driving. CONSTITUTION: A bio-signal transmission device(100) comprises a bio-signal measurement unit(110), a signal processing unit(120), and a transmission unit(130). The bio-signal measurement unit measures a bio-signal of a driver. The signal processing unit filters the bio-signal measured in the bio-signal measurement unit and removes noise. The signal processing unit amplifies the bio-signal in which the noise is removed and converts the amplified bio-signal into a digital signal for output. The transmission unit wirelessly transmits the digital signal. [Reference numerals] (110) Bio-signal measurement unit; (120) Signal processing unit; (130) Transmission unit
Abstract:
PURPOSE: A wearable apparatus for measuring a respiratory function having a form of an eyeglasses is provided to detect the number of respiration and respiration volume by directly measuring the inhalation and exhalation from an noise. CONSTITUTION: In a wearable apparatus for measuring a respiratory function having a form of an eyeglasses, the eyeglass frame comprises a nose pad. An induction current generator(300) is attached to the nose pad. The induction current generator generates induction current corresponding to the respiration volume from a noise. The induction current generator comprises a body(310) The body includes an inhalation path(311), an exhalation path(312) accommodating inhalation path therein, an inlet valve plate(313), an outlet vale plate, and a frame supporting the position of a propeller(320). A plurality of coils(331-334) is installed inside of the inhalation path.
Abstract:
PURPOSE: Provided is a garment capable of providing power supply using solar battery for power supply to an external device regardless of time or space restrictions. CONSTITUTION: The garment having the power supply includes a solar battery(110) attachable/detachable to the garment, a first conductivity fiber(120) attachable/detachable to the garment and transferring the energy outputted from the solar battery, a rechargeable battery(130) ttachable/detachable to the garment and storing the energy transferred from the first conductivity fiber, the second conductivity fiber attachable/detachable to the garment and transferring the power from the rechargeable battery, and a connection jack(150) which is formed in the second conductivity fiber and is connected to the external device for the electric power supply.
Abstract:
PURPOSE: A device and a system and a method for measuring amount of exercise are provided to systematically provide exercise information by time to a user with utilization portable device element, thereby simplifying configuration of exercise amount. CONSTITUTION: An exercise measuring unit(110) measures a momentum of user. The momentum is measured at every preset cycle. A control unit(120) generates exercise information by cycle from the momentum of the user. A memory unit(130) successively stores the exercise information by cycle. A communication unit(140) transmits the saved exercise information by cycle to the outside.
Abstract:
PURPOSE: An automatic waist measuring belt is provided, which can measure the waist of a belt wearer automatically. CONSTITUTION: An automatic waist measuring belt comprises a belt part(10) in which a plurality of magnets(11) are attached at the constant interval; two or more magnetic field sensors sensing a plurality of magnets attached to the belt part; an operation processing unit which processes and analyzes signals obtained by the magnetic field sensor; and a buckle portion(20) displaying the waist measure measurement result. The buckle portion comprises a display indicating the waist measurement.
Abstract:
A stride measurement system using ultrasonic sensors is provided to measure the activity of individual more accurately by measuring the stride and walking numbers of the user and obtaining secondary information from the measured information. A stride measurement system using ultrasonic sensors comprises a first transmitter(11) which generates an ultrasonic signal corresponding to the sensed step and transmits the signal along with electric signal, a first receiver(12) calculating the moving distance and speed and waste calorie to produce the result value, and a display unit(13) which receives the result value from the first receiver and provides to the user and stores it. The first transmitter is composed of a step sensor, a controller generating the ultrasonic signal and the electric signal corresponding to the sensed step, and a signal transmitting part outputting the ultrasonic signal and the electric signal from the controller.
Abstract:
A golf swing form guide system detecting motion of anchored leg and informing the user of it and an operating method thereof are provided to allow immediate and effective correction of golf swing form. A golf swing form guide system detecting motion of anchored leg comprises: a leg wearing part; a Velcro for fixation; a system main body, which includes an angular velocity sensor to detect rotating motion of the anchored leg(201), an angular velocity sensor to detect vertical or horizontal motion of the anchored leg(202), a control part(203), and aN informing part(204); a system main body housing; a display part; a sound output part; and a main power switch part. The operating method of the golf swing form guide system includes the steps of: detecting rotating motion of the anchored leg; detecting vertical/horizontal motion of the anchored leg; determining whether movement of anchored leg occurs based on the above detected signals; and informing the user of the motion of leg in case that the motion is recognized.