Abstract:
According to an embodiment of the present invention, a biometric information measurement device includes a sensing part which is formed in an insole and senses biometric information, a signal processing part which removes noise and amplifies voltages on the biometric information sensed by the sensing part, and a wireless transmission part which changes the biometric information into a digital signal and transmits and receives the changed digital signal, and a display part which receives the digital signal to determine a physical and emotional state and display the determined results. [Reference numerals] (112) Temperature/Pressure; (114) Acceleration; (120) Signal processing part; (130) Wireless transmission part
Abstract:
PURPOSE: A sensibility based safe driving automotive service system, a sensibility recognition processing apparatus, a safe driving service apparatus for a safe driving service, and a sensibility based safe driving automotive service method thereof are provided to establish multiple sensor nodes on parts inside a car such as a steering wheel, a transmission, and a ceiling and to recognize the sensibilities and driving situation of a driver and a passenger by sensing a biosignal and an environment signal from the reaction of the autonomic nervous system of a human under a driving environment. CONSTITUTION: A sensibility based safe driving automotive service system includes a multi sensibility sensor node group(100), a sensibility recognition processing unit(200) and a safe driving service apparatus(300). The multi sensibility sensor node group senses the sensibility signals of a driver and a passenger in a vehicle. The sensibility recognition processing unit analyzes the sensing information provided by the multi sensibility sensor node group and generates the sensibility recognition information. The safe driving service apparatus provides the sensibility based safe driving service based on the sensibility recognition information of the sensibility recognition processing apparatus. The multi sensibility sensor node group comprises at least one among a steering wheel sensor node, a driver's seat sensor node, a passenger's seat sensor node, a transmission sensor node, a ceiling sensor node and a windshield sensor node. [Reference numerals] (10) Network; (100) Multi sensibility sensor node group; (200) Sensibility recognition processing unit; (300) Safe driving service apparatus
Abstract:
PURPOSE: An sensible quotient decision device according to a sensibility change and a method thereof are provided to offer the best optical emotional service which suits in individual property by deciding a personalization sensible variation threshold and a personalization sensible quotient through a self-diagnosis and a re-inferring algorithm. CONSTITUTION: Sensors sense a bio-signal and an environmental signal. A sensing signal processor(130) processes a sensing signal of the sensors. A sensibility signal processing unit(140) defines a sensibility variation threshold which becomes standards capable of recognizing sensibility variation. The sensibility signal processing unit analyzes the sensing signal, extracts the sensibility signal, and infers a sensible quotient based on the sensibility signal and the environmental signal.
Abstract:
Provided is a system and method for controlling synchronization of media and multi-devices for an SMMD media service. The system includes a metadata managing unit and a synchronization controlling unit. The metadata managing unit analyzes ne-media to extract metadata. The synchronization controlling unit constructs a synchronization information table to store control data extracted from the metadata, and controls one or more devices for media reproduction on the basis of the synchronization information table. Optimal connectable devices are mapped according to device attributes and synchronization information extracted from metadata of ne-media and the results are controlled according to the contents of media, thereby maximizing the effect of vivid media reproduction.
Abstract:
A system and a method for controlling synchronization of media and a multi device for an SMMD(Single Media Single Device) based media service are provided to offer a realistic media with reality to a user by synchronizing and controlling one device or more around the user when reproducing the media. A meta data managing unit(150) analyzes the ne-media and extracts the meta data. A synchronization controlling unit(104) comprises a synchronization information table and stores the data required for the control extracted from the meta data. When reproducing the media, the synchronization control unit controls one device or more by referring to the synchronization information table. A device profile managing unit(109) generates and manages the profile of the device inside the home network.
Abstract:
본 발명은 광대역 통합망을 이용한 융합 서비스 제공 시스템 및 그 방법에 관한 것이다. 본 발명은, 가입자가 단말을 이용하여 광대역 통합망의 융합 서비스 제어 시스템에 접속하면 상기 융합 서비스 제어 시스템이 서비스 목록을 상기 단말로 전송하고, 상기 가입자가 서비스를 선택하면 상기 융합 서비스 제어 시스템이 상기 가입자가 선택한 융합 서비스를 제공할 수 있는 응용 서버의 존재 여부를 확인하여, 상기 융합 서비스 제어 시스템이 상기 융합 서비스를 제공할 수 있는 응용 서버가 존재하면 상기 응용 서버로 접속하여 상기 융합 서비스를 상기 단말로 전송하고, 응용 서버가 존재하지 않으면 상기 융합 서비스 제어 시스템이 상기 융합 서비스를 제작하여 상기 단말로 전송한다. 본 발명에 의하면, 광대역 통합망을 통해 융합 서비스를 제공함으로써 서비스 제공자가 만든 서비스 컨텐츠를 제공할 뿐만 아니라 광대역 통합 망에서 직접 서비스 가입자가 원하는 통신방송 융합 서비스, 네트워크 융합 서비스를 신속히 제공한다. 통신방송, 융합 서비스, 광대역 통합망
Abstract:
A broadcast routing path selection method using GA(Genetic Algorithm) in an ad hoc network is provided to efficiently use resources of a network to the maximum during data transmission in the ad hoc network by using the GA. Plural nodes that constitute an ad hoc network are defined as one chromosome, and the chromosome is expressed in pairs(sequence, power) for each node(S300). A sequence-based crossover and a power-based crossover are conducted for parent nodes adjacent to a source node of the nodes, to generate child nodes(S302-S314). A mutation process is carried out for the parent nodes and the child nodes(S316-S328). Power information and each piece of node sequence information of the chromosome are converted into broadcast routing tree information to determine relay nodes, and power of the relay nodes is determined(S330-S334). A broadcast routing path is selected by using the power and the number of the relay nodes.
Abstract:
PURPOSE: A method for setting a point to multipoint routing path based on a PNNI(Private Network-Network Interface) in an ATM system is provided to search the best path up to a source node from an add party reception node, and to determine a firstly met node as a branch node, thereby reducing a process of retrieving and calculating a path of a routing information table. CONSTITUTION: A system inputs a routing request(405), and inputs call ID information, routing request type information, and called party number information. The system analyzes the called party number information, and obtains a destination node(410). The system analyzes the routing type information, and decides whether the decided information is a point to point routing request or a point to multipoint routing request(415). If the point to multipoint routing request, the system obtains an existing path corresponding to a call ID(420), and decides whether the existing path corresponding to the call ID is generated(425). If so, the system decides whether the same cross point as a node existing on the searched existing path is generated(430). If so, the system completes the best path by reversely attaching the best stored path node information(435). The system stores the completed best path(440), and outputs the best routing path information(445).
Abstract:
PURPOSE: A method for managing a PNNI(Private network-Network Interface) node in an ATM(Asynchronous Transfer Mode) switching system is provided to configure and eliminate a node through a simple command, if a variation is generated in the node during system operation. CONSTITUTION: Node information database is configured with a sequential structure as many as the number of nodes capable of being included in a system. A number analysis database is configured with a dual linked list. A reachable address database is configured with a sequential structure. Node information is configured and registered in the node information database, and the performance of a routing protocol is indicated. According to the request of eliminating an optional node in a PNNI(Private network-Network Interface) network, node information is eliminated from the node information database, and the performance of a routing protocol is indicated.