Abstract:
본 발명은 온톨로지를 이용한 비즈니스 규칙시스템 및 그 서비스 방법에 대한 것으로, 특히 클라이언트 컴퓨터의 요청에 의해 다수개의 DB 서버에 구축된 온톨로지로부터 비즈니스 서비스에 대해 기술된 온톨로지 데이터가 있는지를 검색하고, DB 서버로부터 온톨로지 데이터가 검색될 경우 클라이언트 컴퓨터는 해당 온톨로지 데이터를 제공받아 이를 분석하여 비즈니스 서비스 이용 방법을 습득하고, 클라이언트 컴퓨터는 규칙 서버에 입력 파라메타를 제공하여 비즈니스 서비스의 처리를 요청하고, 클라이언트의 요청에 따라 규칙 서버는 규칙 엔진에서 DB 서버로부터 비즈니스 지식 데이터를 제공받아 클라이언트 컴퓨터가 입력한 파라메타와 함께 요청한 규칙의 형태로 표현된 비즈니스 서비스를 처리한 후에, 규칙 서버의 규칙 엔진에서 비즈니스 � ��비스의 실행 결과를 클라이언트 컴퓨터에 전달한다. 그러므로 본 발명은 비즈니스 서비스 이용에 대해 기술된 온톨로지 데이터를 저장 및 관리하는 DB 서버를 네트워크 상에서 분산시킴으로써 각 시스템의 온톨로지 데이터 검색으로 내부 사내 네트워크를 벗어난 외부 네트워크까지 확장시켜 비즈니스 서비스를 효율적으로 클라이언트 컴퓨터에 제공할 수 있다.
Abstract:
PURPOSE: A system and a method for processing an asynchronous workflow are provided to reduce a work process time and improve the efficiency of business by managing dynamically changed routing information and asynchronously processing the workflow using a messaging system. CONSTITUTION: If an instance is generated(S10), workflow engine software starts a process operation from a start point of the instance(S20). If it is necessary for a work of a geographically distributed other workflow while the workflow instance is processed(S30), the workflow engine software transmits message information for requesting the process of work to a messaging server(S40). If the work request message is received, the messaging server judges a corresponding network server located in a remote place, and transmits the work request message to the corresponding network server(S50). A workflow engine software of the corresponding network server receives the work request message, reads workflow information included in the work request message, and generates a workflow instance(S60). The workflow engine software of the corresponding network server starts a process from a start point of the workflow instance(S70). If the processed result returns(S80), the engine software transmits a process result message to the messaging server(S90). The workflow engine software processes the processed result of the other workflow processed by the workflow engine software with reference to a progressing workflow process(S100).
Abstract:
PURPOSE: A dynamic routing method of a workflow system using a routing map is provided to manage established routing information as a routing map by analyzing a business process of a company and to support a routing information changing dynamically by using the routing map when a changing of pre-defined routing information is requested without modifying a process definition. CONSTITUTION: A user requests an execution of process instant to workflow engine software(111) using client software(121)(S201). The workflow engine software(111) requests the corresponding process instant information to a database(131) and obtains the information in accordance with a request of the client software(S202). The workflow engine software(111) requests routing information of the process instant to routing server information(112)(S203). The routing server information(112) requests routing information to the database(131) for a workflow(S204), and provides the obtained routing information to the workflow engine software(111) as a routing map form(S205). If the user requests a change of routing information using the client software(121)(S206), the workflow engine software(111) provides the routing map to the client software(121)(S207). The client software(121) changes the routing information and transmits the changed contents to workflow engine software(111)(S208). The workflow engine software(111) executes a process instant using the routing information and transmits the changed information to the routing server information(112)(S209). The routing server information(112) stores the changed information in the database(131)(S210).
Abstract:
PURPOSE: A component data management method and system is provided to reuse components produced in advance and geographically distributed based on a repository so that it can enhance a component reusability. CONSTITUTION: The method comprises several steps. A server receives an application component usage request signal from a client terminal(S1), and then transmits classification data on stored components to the client terminal(S2). The server determines whether the user requests detailed data on the classification data(S3), and transmits a component list and corresponding characteristics data to the client terminal if the user requests detailed data(S4). The server determines whether the user requests component data corresponding to the component list(S5), and transmits the component data to the client terminal(S6). In a case that there exists a change at the transmitted component data(S7), the server stores the classification data, the component list and the characteristics data corresponding to the component data(S8) and stores the corresponding component data at a repository(S9). In a case that a user requests the server to produce a new component not included in the component list, the server transmits data on a new component to a user for producing the new component. The server receives the new produced component data from the user and stores it.
Abstract:
A method for modeling a user intention based on human desire and a system thereof are provided to offer efficient, active and intelligent services in a ubiquitous environment by supporting provision of services where various user's intentions are reflected. A system for modeling a user intention based on human desire includes plural user intention model servers(410), plural ontology servers(420), a service providing device(430), a status information collector(440), and a remote machine(460). Each of user intention model servers is composed of a Bayesian network, includes a user intention model(412) for expressing a user's intention and a Bayesian network inference engine software(414) for analyzing the user intention model. Each of ontology servers includes an ontology(422) for describing the user's intention model, and an ontology inference engine software for inferring the user's intention by using the ontology and external input information. The user's intention can be used via the service providing device like a robot(432) or an agent(434). The remote machine is used for additionally extending the user's intention at a remote place.
Abstract:
본 발명에 의한 베이지안 네트워크와 상황정보를 이용하여 분산환경에서 서비스를 모델링하는 방법 및 그 시스템은 적어도 하나 이상의 서비스를 모델링하기 위한 시나리오를 구성하는 단계; 상기 시나리오를 기초로 상기 서비스를 특성별로 범주화하는 단계; 범주화된 서비스 모델간의 선후, 상하, 상관관계를 포함하는 상호 관계를 설정하는 단계; 및 상기 서비스 모델에 따른 서비스의 목표, 상황정보를 포함하는 정보들을 도출하여 상기 서비스 모델링을 완성하는 단계;를 포함하는 것을 특징으로 하며, 유비쿼터스 환경에서 디지털기반으로 다양한 서비스를 제공하는 서비스 제공자가 효율적이며 능동적으로 지능적인 서비스를 제공할 수 있으며, 확률기반으로 서비스 모델링을 할 수 있는 구체적인 지침 및 그 방법을 제공함으로써, 좀더 다양하고 효율적으로 지능적인 서비스를 모델링할 수 있도록 한다.
Abstract:
PURPOSE: A system and a method for processing an asynchronous workflow are provided to reduce a work process time and improve the efficiency of business by managing dynamically changed routing information and asynchronously processing the workflow using a messaging system. CONSTITUTION: If an instance is generated(S10), workflow engine software starts a process operation from a start point of the instance(S20). If it is necessary for a work of a geographically distributed other workflow while the workflow instance is processed(S30), the workflow engine software transmits message information for requesting the process of work to a messaging server(S40). If the work request message is received, the messaging server judges a corresponding network server located in a remote place, and transmits the work request message to the corresponding network server(S50). A workflow engine software of the corresponding network server receives the work request message, reads workflow information included in the work request message, and generates a workflow instance(S60). The workflow engine software of the corresponding network server starts a process from a start point of the workflow instance(S70). If the processed result returns(S80), the engine software transmits a process result message to the messaging server(S90). The workflow engine software processes the processed result of the other workflow processed by the workflow engine software with reference to a progressing workflow process(S100).
Abstract:
The present invention provides an infrared light type touch screen panel. The touch screen panel includes a screen operated in a touch method, light emitting elements emitting light to one side of the screen by being arranged on the other side of the screen, and light receiving elements sensing reflected light of the light emitted from the light emitting elements by being arranged on the same side of the light emitting elements.
Abstract:
A biological signal sensor apparatus worn on a user's body includes: a sensor unit for sensing physical states or movements of a user to generate biological signal data; a wireless communications unit for performing wireless data communications with a wireless sensor network to transmit the biological signal data; a sensor network protocol processing unit for processing protocols for end-to-end communications between the wireless communications unit and the wireless sensor network and for performing a mobility support procedure for the biological signal sensor apparatus; a processor for controlling the wireless data communications, the end-to-end communications, and the mobility support procedure to allow the biological signal sensor apparatus to serve as a mobile wireless sensor node; and a connection unit for connecting the sensor unit and the processor. The biological signal sensor apparatus serves as a mobile wireless sensor node in the wireless sensor network.
Abstract:
본 발명은 사용자의 의도를 추론하고 추론된 의도를 사용자에게 적합한 서비스 제공을 위한 단서로 이용하고자 하는 인간의 욕구에 기반한 사용자 의도 모델링 방법 및 그 시스템에 관한 것으로, 본 발명에 따른 인간의 욕구에 기반한 사용자 의도 모델링 방법은 사람의 의도를 표현하는 의도 모델링 단계와; 상기 의도 모델링 결과 및 외부입력 정보를 이용하여 실제 의도를 추론하는 의도 인식단계와; 원격에서 사용자 의도의 추가적인 확장을 수행하는 사용자 의도의 추가적인 확장 단계를 포함하는 것을 특징으로 하며, 따라서 본 발명에서는 행동/환경정보 등의 상황정보를 이용하여 사용자의 욕구를 분석하고 이를 이용하여 사용자 의도를 표현하여, 사용자의 상호에 맞는 서비스를 제공할 수 있다. 유비쿼터스, 사용자 의도, 온톨로지, 베이지안 네트워크, 추론엔진