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 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: A device for controlling an electronic device using a living body signal and a method thereof are provided to control an electronic device reliably using a cheap and simple device by controlling an electronic device controller through a living body signal extracted from a simple movement of a face, thereby performing an intentional activity easily although a physiological state of a user is changed. CONSTITUTION: A living body detecting unit(110) detects a living body signal through a shutting of teeth and a movement of a head horizontally of a user. A living body amplifying unit(120) receives the living body signal detected from the living body detecting unit(110) and amplifies a size thereof. An A/D converting unit(130) receives the living body signal amplified from the living body amplifying unit(120) and converts the living body signal into a digital form. A control unit(140) analyzes the living body signal of the digital form transmitted from the A/D converting unit(130), judges the corresponding command of the user, and generates the judged corresponding command. A transmission unit(150) receives the command generated in the control unit(140) and transmits the command to an electronic device as infrared rays.
Abstract:
본 발명은 병렬 신경망 시스템의 구성에 관한 것으로 특히, 다수개의 프로세서들을 소정의 영역에 격자 구조로 정렬되고, 그 정렬되어진 각각 가로 또는 세로방향 별로 가장 인접한 다른 임의의 프로세서와 데이터 통신을 위한 다수개의 커넥터를 이용하여 전송선로에 연결되는 구성으로 된 신경망 시스템을 제공하면, 프로세서 보드의 개수와 시스템의 프로세서 병렬 구조를 변화시키면서 시뮬레이션하고자 하는 신경망 모델의 특성에 맞는 시스템을 사용하여 효율적으로 신경망 모델을 시뮬레이션할 수 있는 효과가 있다.
Abstract:
A data communication circuit array processors using a hand-shaking method prevents a clock skew and a glitch, and provides a stable data communication circuit. The circuit includes: a flag means(1) which is set by a data transmission display signal(OR_WR_IN), displays a data transmission toward a second processor, and displays that the second processor receives the data transmitted from the first processor; a data buffer(4) for latching the data from the first processor for a constant time; a transmission means(3) which outputs an enable signal to the data buffer, makes the data from the first processor be latched by the buffer, and stably transmits the data to the second processor; and a means(2) for providing a signal(IRS_IN) to the second processor, providing a signal(IRS) to the flag means(1) by corresponding to the signal(IR_RD_IN), and kaing the flag means(1) inform the first process of it.
Abstract:
VLSI(Very Large Scale Intergration) 기술을 이용한 디지탈 프로세서 설계에서, 신경망 전용 프로세서의 구현 또는 신경망 전용 병렬 프로세서의 구현에 관한 것이다. 본 발명은 연산의 파이프라인 동작을 위해서 분리된 메모리 구성(WM,XM)을 갖는 메모리 및 범용 레지스터 블럭(10), 프로그램 메모리 및 제어 블럭(11), 각종 연산을 수행하는 연산기 블럭(12) 및 프로세서간 통신을 위한 통신 블럭(13)의 4개의 블럭; 그리고 프로그램용 버스(14)와 데이타용 버스(15)로 분리된 형태의 버스(BUS)로 구성되는 것을 특징으로 하여, 현재의 디지탈 방식의 VLSI 기술을 이용하여 신경망 모델을 시뮬레이션 하기 위한 하드웨어(칩)을 안정성있게 제작할 수 있는 효과가 있다.
Abstract:
PURPOSE: An apparatus for measuring bio-signals is provided to easily replace a memory and a battery by dividing a necessary module for measuring bio-signals into function blocks. CONSTITUTION: First and second detection electrodes(10,20) are attached to the skin of a human body in order to detect bio-signals. A bio-signal detection module(110) is mounted in the first detection electrode and generates the bio-signals data based on the detected bio-signals. A power supply module(120) is mounted in the second detection electrode. A power supply module supplies power to the bio-signal detection module. A connection line interlinks the bio-signal detection module with the power supply module.