Abstract:
PURPOSE: A wearable platform for monitoring atmosphere and an air pollution management system using the same are provided to keep the health condition and safety of a wear and a server user. CONSTITUTION: In a wearable platform(10) for monitoring atmosphere and an air pollution management system using the same, a sensor unit senses the concentration of various kinds of gas from air. An alarm outputs unit stimulates the five senses of a human to escape the human when the concentration of an ambient gas is a danger condition. A computer module transmits the position data which is measured by the GPS unit and the sensing data from the sensing unit and controls the sensor unit and the alarm output units.
Abstract:
PURPOSE: A method and a system for tracking a plurality of infra-red signal coordinates are provided to distinguish identification of each infrared generator through a wireless communication unit and a simple algorithm and trace a coordinate, thereby distinguishing a user. CONSTITUTION: A system turns the first IR(Infrared Ray) generator on(S110). If the first IR(Infrared Ray) generator is photographed by once per two frames, the system turns the second IR generator on(S120,S140). If the different infrared generator is photographed by once per one frame, the system progresses tracing two coordinates(S150,S180). If two IR generators are photographed by once per two frame, the system delays the second infrared generator as time T(S160,S190).
Abstract:
A multi-modal fusion device and a method thereof for achieving the remote control of an electronic device through a multi-modal instruction are provided to control various electronic devices through the multi-modal instruction to the same method. An input processor manufactures a multimodal command to deducible input information of a user. A rule storage stores the electronic device control command for a plurality of electronic device remote controls. A device selector(310) transmits the remote control command to the selected electronic device. A control command receiver(320) receives the control command from the electronic device. The corresponding electronic device is controlled to a multimodal controller(330) read in the control command of the selected object electronic device.
Abstract:
본 발명은 가상 메뉴 맵을 이용한 원격 제어 시스템 및 방법에 관한 것으로, 전자기기의 제어 콘솔에 대응하는 가상 메뉴 맵을 인터페이스로 활용하여 전자기기를 원격 제어할 수 있도록 함으로써, 실재 제어 콘솔의 버튼이나 다이얼 등을 조작하는 것과 같은 자연스러운 동작을 통해 대상 기기를 원격으로 제어할 수 있도록 하여, 사용자가 리모컨을 사용함에 있어 버튼 기능을 숙지하기 위한 훈련을 최소화하고, 여러 종류의 리모컨을 운영할 필요가 없게 되어 인지 능력이 떨어지는 아동이나 노인, 장애인이 생활 속 가전 및 전자기기를 제어하는 어려움을 해소할 수 있으며, 또한 집중도가 다소 낮은 상태에서 대상 기기를 제어할 수 있도록 하는 이점이 있다. 원격 제어, 가상 메뉴 맵, 생체 신호
Abstract:
A remote control system using a virtual menu map and a method thereof are provided to use the virtual menu map, corresponding to the control console of an electronic device, as an interface. A remote control system comprises a menu map apparatus(100) and a bio-signal apparatus(200). The bio-signal apparatus transmits a remote control command according to a bio-signal of a user(30) which is generated in a space where a virtual menu map for controlling the various operations of an electronic device is virtually arranged. The menu map apparatus delivers the remote control command received from the bio-signal apparatus to the electronic device.
Abstract:
A data input device using finger movement is provided to enable convenient data input by recognizing vibrations of wrist muscle of a user. A data input device displays a phoneme on an each joint of a finger of a user(301) using a red laser diode, and initiates a data input(302). The data input device confirms whether a movement of a thumb is detected or not(303). If the movement of the thumb is detected, the data input device increases the number of movements of the thumb(304). The data input device confirms whether the movement of the thumb is stopped or not(305). The data input device confirms whether the input from the user is canceled or not(306). If a phoneme is not inputted for a predetermined time period, the data input device requests the user to re-input data(309). If a phoneme is inputted, the data input device increases the number of movements of the finger which the movement is detected(310). The data input device checks whether the movement detected finger stopped the movement(311). The data input device confirms whether the input request to input a phoneme is canceled or not(313).
Abstract:
A wearable computer system and a method transmitting and controlling information/service in the same are provided to control other peripheral devices and to transmit or control information or services to other devices or users regardless of time and space by sensing bio signals, generating bio signal information and performing a user's instruction. A wearable computer system(100) senses bio signals via an intuitive operation or voices of a user(10), generates a corresponding signal, namely bio signal information on a user's instruction, and selects a device set by the user(10) via the generated bio signal information. The device selected by the user(10) is an intelligent device(200) which includes a signal receiver(210) and a signal processor(220). The signal receiver(210) senses the bio signal information, and the signal processor(220) analyzes the sensed bio signal information for executing an instruction of the user(10). Accordingly, the wearable computer system(100) controls the intelligent device(200) at a remote place, and controls the transmitted information/service.
Abstract:
본 발명은, 촬영자의 컨텐츠 전송부와 적어도 하나의 촬영 대상자의 컨텐츠 수신부를 포함하는 디지털 사진 컨텐츠 시스템에서, 상기 컨텐츠 전송부가 촬영된 디지털 사진 컨텐츠를 분류하여 송수신하기 위한 방법 및 시스템으로서, 상기 컨텐츠 전송부에서 상기 촬영영역에 속한 적어도 하나의 촬영 대상자에게 개인 식별자를 요청하여 상기 컨텐츠 수신부로부터 개인 식별자를 수신하면, 상기 생성된 이미지와, 상기 수신된 개인 식별자, 위치 정보 및 미리 저장된 촬영조건에 대한 정보를 조합하여 디지털 사진 컨텐츠를 작성하고, 작성된 디지털 사진 컨텐츠를 촬영 대상자별로 분류하여 전송함을 특징으로 한다. 디지털 사진 컨텐츠, 컨텐츠 전송부, 컨텐츠 수신부, 개인 식별자(ID), 위치정보, 컨텐츠 분류
Abstract:
A wrist-wearable user input device and a method thereof are provided to analyze vibration transferred through a body and the gesture of the user, thereby enabling a user to input a command to an information device easily through intuitive gesture. A vibration signal amplifying/measuring device(21) measures a vibrational sound transferred through the body of the user and amplifies a measured vibrational signal. A gesture signal measurer(22) measures a gesture signal according to hand gesture of the user. A signal processor(23) performs the command corresponding to an analysis result by analyzing the vibrational signal and the gesture signal. The signal processor includes a vibrational signal processor(231), a gesture signal processor(232) generating a hand gesture signal by recognizing the hand gesture command, and a command transferor(233) transferring the hand gesture signal to an external device through a wired/wireless interface.
Abstract:
A user-friendly wearable computing system and a method thereof are provided to realize convenient wearing and low power consumption, and offer continuous use in an external environment by arranging a battery to shoulders and easily recharging the battery with a solar cell. At least two batteries(70a,70b) are attached to the clothes(10a,10b). The solar cell(80) is attached to the clothes and supplies power to the exhausted battery when one of the batteries is exhausted. A main computer(100) performs computing by receiving the power from the batteries. An input device is held by a user or is attached to the clothes by being separated from the main computer, and transmits inputted data to the main computer wirelessly. A display part is held by the user or is attached to the clothes by being separated from the main computer, and displays the data received from the main computer. The battery includes a power management circuit for managing the power supplied from the solar cell and a battery cover for protecting a battery body.