Abstract:
PURPOSE: An application field communication system and method thereof are provided to offer application services by directly providing a service which is necessary within an application filed through direct and indirect interaction. CONSTITUTION: Plural sensor nodes(400) create event sensing information by sensing the sensing information for materials. An actor node(410) determines control information from the event sensing information. The actor node activates actors. An access apparatus(430) transmits the event sensing information to a service providing server(450) through an IP(Internet Protocol) network(440). The service providing server processes the event sensing information.
Abstract:
PURPOSE: A wireless sensor network system and a communication method of the same are provided to effectively respond abnormal situations by co-existing a zigbee-based wireless sensor network and a wireless local area network(LAN) system. CONSTITUTION: Sensor networks(11, 12, 13) include a plurality of sensor nodes. Local servers(21, 22, 23) function as gateways between the sensor networks and a backbone network and transmit data. The overlaying managing parts of the local servers generate wireless LAN overlay networks. Data transmitted from the sensor nodes are processed based on the wireless LAN overlay networks. A data processing process includes the following: the sensor nodes receive a response message containing an address allocated from a wireless LAN system; and the sensor nodes transmit and receive data through wireless LAN overlay network.
Abstract:
PURPOSE: An apparatus and a method for recognizing the position of a fixed node are provided to recognize the position of a fixed node by using analysis result of received signal strength. CONSTITUTION: An apparatus(201) for recognizing the position of a fixed node comprises an interface(203), a processor(205), and database(207). The interface is linked with event occurrence about the position recognition of the fixed node and extracts the packet date corresponding to a moving node related to an event. The processor analyzes the location of the moving node from the extracted packet data and radio signal strength about the packet data and recognizes the location of the fixed node by using the analyzed result.
Abstract:
PURPOSE: An indoor position tracking system which utilizes a pseudo GPS signal and a method thereof are provided to perform a position tracking process using an indoor GPS signal receiving terminal. CONSTITUTION: An indoor position tracking system comprises an artificial satellite(100), a pseudo GPS signal transmitter(200), a plurality of GPS transmitter antennas(300-1-300-4), and a terminal(400). The pseudo GPS signal transmitter comprises a GPS signal receiving antenna and generates a pseudo GPS signal based on a GPS signal received by the GPS signal receiving antenna. The plurality of GPS transmitter antennas transmits the pseudo GPS signal generated by the pseudo GPS signal transmitter in order to track the location of the indoor terminal.
Abstract:
PURPOSE: A real time location tracking device using a GPS(Global Positioning System) signal relay tag and a method thereof are provided to find the location of a tag with low power by relaying a GPS signal. CONSTITUTION: A GPS signal relay tag(120) is located in connection with an object. The GPS signal relay tag is in connection with receiving a GPS signal from an artificial satellite. The GPS signal relay tag transmits the received GPS signal to a reader(130) installed in a base station or a wire/wireless line sharer. The GPS signal relay tag enables the reader to calculate a location coordinate about the object.
Abstract:
PURPOSE: A sensor node including a general-purpose interface port with a plug and play, sensor board including a general-purpose interface port with a sensor device driver, general-purpose interface port and each method thereof are provided to enable a control unit to automatically recognize and control a sensor unit through a universal interface port. CONSTITUTION: A universal interface port(240) offers an interface with a sensor board. The universal interface port downloads a sensor device driver from a connected sensor board. A controller(210) controls the sensor board by using the downloaded sensor device driver. The controller processes sensing data which is generated by a senor included in the sensor board. The universal interface port download a sensor device driver which is related with at least one among SPI(Serial Peripheral Interface), I2C(Inter-Integrated Circuit), ADC(Analog to Digital Converter), Interrupt, and frequency.
Abstract:
PURPOSE: A light control apparatus is provided to not turn a light on when the illuminance of an indoor is high, thereby preventing unnecessary power consumption. CONSTITUTION: An infrared sensing unit(110) is located at a remote location. The infrared sensing unit measures the temperature and distance about an object located in an indoor. An illuminance sensing unit(120) measures the illuminance of the indoor. A determining unit(130) determines whether light control is needed based on the information received from the infrared sensing unit and the illuminance sensing unit. A controller(140) controls a light according to the determination result of the determining unit.
Abstract:
PURPOSE: A network nodes programming method of sensor network is provided to reduce a power consumption and a traffic load. CONSTITUTION: A code is received(S110). For example, a code to be programmed for network nodes is received to a sensor network. According to the kind of code, the programming method is selected(S120). For example, when the code is created, the code kind is detected from the code. The code is programmed by the selected programming method(S130). Therefore, an optimized programming method can be applied by the code kind.
Abstract:
PURPOSE: A data communication system is provide to realize a master/salve mode by using a SPI method without a hardware and realize a high performance sensor node through a multiprocessor. CONSTITUTION: A sub processor or a neighboring device is connected to a main processor(110) through a SPI(Serial Peripheral Interface) method and perform operation corresponding to a command which is transmitted from the main processor. A connection through the SPI method is comprised by a bus line. The bus line includes a MISO(Master In Slave Out) for data transmission, a MOSI(Master Out Slave In) line, a SS(Slave Select) line, an interrupt line, and a SCK(SPI Clock) line.
Abstract:
PURPOSE: An unmanned bicycle management system, capable of supplying the load and return of a convenient bicycle to a user is provided to efficiently manage the bicycle to a unmanned bicycle management office through a fixed code. CONSTITUTION: An unmanned bicycle management office(100) supplies at least one service about loaning or storing the bicycle to a user. An integrated management server(200) integrates the unmanned bicycle management office in a type code system including an identification code of registered bicycles. The integrated management server manages the service about the bicycle.