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    • 21. 发明公开
    • 무선 주파수 인식 범위 분석 방법 및 시스템
    • 用于分析无线电频率识别区域的方法和系统
    • KR1020090027535A
    • 2009-03-17
    • KR1020070092822
    • 2007-09-12
    • 동국대학교 산학협력단
    • 이용한
    • G06K17/00G06K5/00
    • G01S13/42G01R31/2822G06K7/0095
    • A method and a system for analyzing a radio frequency identification zone are provided to analyze an RFID zone through a simple operation in an environment in which a real RFID system is installed, thereby displaying the analysis result to a user. A plurality of RFID tags(40) is installed at an RFID panel(30). An RFID reader(20) is installed at a location predefined for identification zone analysis or a specific site where a reader is used. The RFID reader radiates radio frequency signals through antennas of the RFID reader to the RFID tags according to a control signal inputted from an analyzer(10). The RFID reader receives the identifying information received from RFID tags and outputs the identifying information to the analyzer. The analyzer analyzes the radio frequency identification zone of the RFID reader by using the identifying information of the RFID tags inputted from the RFID reader.
    • 提供一种用于分析射频识别区域的方法和系统,以在安装真实RFID系统的环境中通过简单的操作来分析RFID区域,从而将分析结果显示给用户。 多个RFID标签(40)安装在RFID面板(30)上。 RFID读取器(20)安装在用于识别区域分析预定义的位置或使用读取器的特定位置。 RFID读取器根据从分析器(10)输入的控制信号将射频信号通过RFID读取器的天线辐射到RFID标签。 RFID读取器接收从RFID标签接收的识别信息,并将识别信息输出到分析器。 分析仪利用从RFID阅读器输入的RFID标签的识别信息,分析RFID阅读器的射频识别区域。
    • 22. 发明授权
    • 제품의 품질 추론 방법 및 시스템
    • 质量控制方法和产品系统
    • KR101263410B1
    • 2013-05-10
    • KR1020120021196
    • 2012-02-29
    • 동국대학교 산학협력단
    • 이용한이경훈
    • G06F19/00G06F17/30G06Q10/04
    • G06F19/00G06F17/30G06Q10/04
    • PURPOSE: A product quality interference method and a system are provided to monitor the quality status of the product by defining the forecast rule information of the product by using the ontology technology, and to rapidly process the subsequent processes. CONSTITUTION: A product quality inference method is comprised of the followings: an ontology modeling step(S210) which models an ontology for the quality reference information about a product; a forecast rule modeling step(S220) which defines the forecast rule information by using the ontology quality reference information of the product and performs the modeling; a quality monitoring step(S230) which mutually matches the forecast rule information and the processing condition which is measured when performing the process of the product, and monitors the quality status of the product; and a subsequent processes indication step(S240) which indicates to perform the subsequent processes of the product based on the monitoring result of the quality status. [Reference numerals] (AA) Start; (BB) End; (S210) Model ontology for quality reference information about an injection molding product; (S220) Define forecast rule information by using the ontology quality reference information of the injection molding product and perform modeling; (S230) Match the forecast rule information and a processing condition which is measured when performing the process of the injection molding product and monitor the quality status of the injection molding product; (S240) Indicate to perform subsequent processes of the injection molding product based on a monitoring result of the quality status; (S250) Arrange the forecast rule information in a tree structure and generate new forecast rule information for the quality of the injection molding product according to the arrangement state; (S260) Store the ontology quality reference information, forecast rule information, monitoring result and a factory condition of the injection molding product
    • 目的:通过使用本体技术定义产品的预测规则信息,并快速处理后续流程,提供产品质量干扰方法和系统来监控产品的质量状况。 构成:产品质量推理方法包括以下内容:本体建模步骤(S210),其为产品的质量参考信息建模本体; 预测规则建模步骤(S220),其通过使用产品的本体质量参考信息来定义预测规则信息并执行建模; 质量监视步骤(S230),其与预测规则信息和执行产品的处理时测量的处理条件相匹配,并且监视产品的质量状态; 以及随后的处理指示步骤(S240),其指示基于质量状态的监视结果执行产品的后续处理。 (附图标记)(AA)开始; (BB)结束; (S210)关于注塑产品的质量参考信息的模型本体; (S220)通过使用注塑产品的本体质量参考信息定义预测规则信息,并进行建模; (S230)匹配预测规则信息和执行注射成型品的处理时测定的处理条件,并监视注塑产品的质量状态; (S240)基于质量状态的监视结果,指示进行注射成型品的后续处理; (S250)根据布置状态,将预测规则信息安排在树状结构中,生成注塑产品质量的新预测规则信息; (S260)存储注塑产品的本体质量参考信息,预测规则信息,监控结果和出厂条件
    • 24. 发明授权
    • EPC 글로벌 네트워크 상에서의 품질 추적 시스템 및 방법
    • 跟踪EPC全球网络对象质量的系统与方法
    • KR100995666B1
    • 2010-11-19
    • KR1020090062605
    • 2009-07-09
    • 동국대학교 산학협력단
    • 이종태이용한
    • G06Q10/08G06Q50/04
    • Y02P90/30G06Q10/08G06Q50/04
    • PURPOSE: A system and a method of tracing quality of an object in an EPC global network are provided to drastically reduce loads of an existing object search server and a history information management server by a separate quality tracing server. CONSTITUTION: At least one object information server(22) includes EPC(Electronic Product Code) of an object and object information and distribution history information of the EPC information. A quality tracing server(21) obtains a defective product or the first EPC information in an event related to the defective product from the object information server. The quality tracing server obtains event list information of the first EPC and event list information of the second EPC from the object information server. The quality tracing server provides a tracing result of the product to a user server(20).
    • 目的:提供跟踪EPC全球网络中的对象质量的系统和方法,通过单独的质量跟踪服务器大大减少现有对象搜索服务器和历史信息管理服务器的负载。 构成:至少一个对象信息服务器(22)包括对象的EPC(电子产品代码)和EPC信息的对象信息和分发历史信息。 质量跟踪服务器(21)在与对象信息服务器相关的有缺陷的产品的事件中获得缺陷产品或第一EPC信息。 质量跟踪服务器从对象信息服务器获取第一EPC的事件列表信息和第二EPC的事件列表信息。 质量跟踪服务器将产品的跟踪结果提供给用户服务器(20)。
    • 25. 发明授权
    • EPC 글로벌 네트워크 상에서 객체의 물류 이력정보를 추적하는 시스템 및 방법
    • 跟踪EPC全球网络对象分布信息的系统与方法
    • KR100959590B1
    • 2010-05-27
    • KR1020090062613
    • 2009-07-09
    • 동국대학교 산학협력단
    • 이종태이용한
    • G06Q10/08G06K17/00
    • G06Q10/0833G06K17/00G06K2017/0045
    • PURPOSE: A system and a method of tracing distribution information of object on EPC(Electronic Product Code) global network are provided to reduce the load of existing object searching server and history information management server by establishing an integrated tracking server on the EPC global network. CONSTITUTION: One or more object information servers(22) stores the object information of EPC information of object and the object information of the EPC information and distribution history information are stored as related to each other. The integrated tracking server(21) receives the first EPC event list information and the second EPC event list information from the object information server. In order to track the history of the specific EPC, the integrated tracking server offers the first EPC history information to the user server(20).
    • 目的:提供EPC(电子产品代码)全球网络跟踪分发信息的系统和方法,通过在EPC全球网络上建立集成跟踪服务器,减少现有对象搜索服务器和历史信息管理服务器的负担。 构成:一个或多个对象信息服务器(22)存储对象的EPC信息的对象信息,并且EPC信息和分发历史信息的对象信息彼此相关地存储。 集成跟踪服务器(21)从对象信息服务器接收第一EPC事件列表信息和第二EPC事件列表信息。 为了跟踪具体EPC的历史,集成跟踪服务器向用户服务器(20)提供第一个EPC历史信息。
    • 27. 发明公开
    • EPC 글로벌 네트워크 내 객체의 이동 추적방법
    • EPCGLOBAL网络和供应链网络过程中的对象运动变换方法分析方法
    • KR1020140029866A
    • 2014-03-11
    • KR1020120095914
    • 2012-08-30
    • 동국대학교 산학협력단
    • 이종태이용한강용신이경훈
    • G06Q10/08G06K7/10G06K19/07
    • G06Q10/0833G06K7/10099G06K19/0723
    • The present invention relates to an object motion tracking method within an electronic product code (EPC) global network and a supply chain process analyzing method using the same. More specifically, the object motion tracking method within an EPC global network comprises the following steps of: obtaining an EPC including a unique ID from an object which moves through a certain path; storing the EPC obtained from the object as an EPC event form in at least one object information server; and obtaining history information by simultaneously inquiring the EPC separately stored in at least one object information server, and tracking the moving object according to the result. By the configuration, the object motion tracking method within an EPC global network and the supply chain process analyzing method using the same can track a moving object by obtaining a unique EPC of the object whenever the object moves, storing the unique EPC in the object information server, and inquiring the EPC stored in the object information server. [Reference numerals] (AA) Start; (BB) End; (S110) Obtain an electronic product code (EPC) which is a unique ID from an object moving to multiple paths; (S120) Store the EPC obtained from the object as an EPC event form in at least one object information server; (S130) Obtain history information by simultaneously checking the EPC separately stored in at least one object information server, and track the moving object according to the result
    • 本发明涉及一种电子产品代码(EPC)全球网络内的物体运动跟踪方法及其使用的供应链过程分析方法。 更具体地,EPC全球网络内的对象运动跟踪方法包括以下步骤:从通过特定路径移动的对象获取包括唯一ID的EPC; 将从对象获得的EPC作为EPC事件表单存储在至少一个对象信息服务器中; 以及通过同时查询分别存储在至少一个对象信息服务器中的EPC并根据结果跟踪移动对象来获取历史信息。 通过该配置,EPC全球网络中的对象运动跟踪方法和使用该对象运动跟踪方法的供应链过程分析方法可以通过在对象移动时获得对象的唯一EPC来跟踪移动对象,将唯一EPC存储在对象信息中 服务器,并查询存储在对象信息服务器中的EPC。 (附图标记)(AA)开始; (BB)结束; (S110)从移动到多个路径的对象获取作为唯一ID的电子商品代码(EPC); (S120)将从对象获得的EPC作为EPC事件表单存储在至少一个对象信息服务器中; (S130)通过同时检查分别存储在至少一个对象信息服务器中的EPC来获取历史信息,并根据结果跟踪移动对象