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    • 1. 发明授权
    • 센서 인터페이스 보드 자동 인식 기능을 갖는 데이터 분석장치
    • 传感器接口板自动配置功能的数据分析系统
    • KR101386250B1
    • 2014-04-21
    • KR1020130071858
    • 2013-06-21
    • 와이피피 주식회사한국전력공사
    • 백종만어수영강정원최원석윤재상이태호최병태김연환이두영손석만김형석김동환배용채조철환조성태김희수이욱륜구재량김범수손태하최광범조문수정재철
    • G06F17/00
    • G06K19/0716
    • Disclosed is a data analysis system with a function for automatically recognizing a sensor interface board, which is capable of automatically setting up an analysis program by automatically recognizing a specific sensor interface board when the specific sensor interface board is mounted to the data analysis system in a plug-and-play manner. The data analysis system of the present invention includes: a sensor interface board consisting of an independent board according to types and characteristics of a sensor, and having an identifier (ID) set up therein; and a data analysis system configured to acquire and analyze a sampling frequency of a signal, provided by the sensor interface board, in a predetermined cycle. Thus, the data analysis system with a function for automatically recognizing a sensor interface board can determine types and characteristics of a sensor by recognizing an ID of a sensor interface board mounted in the plug-and-play manner, and can analyze an acquired sampling frequency by automatically setting up an analysis program corresponding to the sensor interface board. [Reference numerals] (120) Signal conversion unit; (130) Main processor; (150) Communications interface; (210) Sensor; (220) ID setting unit; (AA) Attachment and detachment; (BB) Signal stabilization unit 1; (CC) Signal stabilization unit 2; (DD) Signal stabilizing unit N; (EE) Analysis program 1; (FF) Analysis program 2; (GG) Analysis program N
    • 公开了一种具有自动识别传感器接口板的功能的数据分析系统,其能够通过在特定传感器接口板安装到数据分析系统时自动识别特定的传感器接口板来自动设置分析程序 即插即用的方式。 本发明的数据分析系统包括:由根据传感器的类型和特性的独立板组成的传感器接口板,其中设置有标识符(ID); 以及数据分析系统,被配置为以预定周期获取和分析由传感器接口板提供的信号的采样频率。 因此,具有用于自动识别传感器接口板的功能的数据分析系统可以通过以即插即用的方式识别传感器接口板的ID来确定传感器的类型和特性,并且可以分析所获取的采样频率 通过自动设置与传感器接口板相对应的分析程序。 (附图标记)(120)信号转换单元; (130)主处理器; (150)通信接口; (210)传感器; (220)ID设定单位; (AA)附件和拆卸; (BB)信号稳定单元1; (CC)信号稳定单元2; (DD)信号稳定单元N; (EE)分析程序1; (FF)分析程序2; (GG)分析程序N
    • 3. 发明公开
    • 발전기 권선 흡습 감시 장치 및 방법
    • 用于监测发电机定子绕水吸收的装置和方法
    • KR1020130035767A
    • 2013-04-09
    • KR1020110100292
    • 2011-09-30
    • 한국전력공사
    • 배용채김희수이욱륜이두영
    • G01R31/06G01R31/34G01N27/02
    • PURPOSE: A generator winding moisture-absorption monitoring device and a method thereof are provided to be installed in a necessary measurement position regardless of the thickness change of a winding insulating material and to prevent errors due to the surface roughness by being installed inside of an insulating paint in which the winding surface roughness is determined. CONSTITUTION: An electrode(110) measures the moisture absorption state of a winding insulating material. A driving circuit box(120) is connected to the electrode, receives measurement results from the electrode, and converts the measurement results into an electrical signal. A connection line(130) electrically connects a winding moisture-absorption monitoring unit(100) with a second winding moisture-absorption monitoring unit(200). The surface of the first winding moisture-absorption monitoring unit is able to form a coating layer(140) by a coating treatment, is installed by closely adhering to the surface of the winding insulating material, and repaints insulation paint thereon.
    • 目的:发电机绕组吸湿监测装置及其方法被设置在必要的测量位置,而不管绕组绝缘材料的厚度变化如何,并且通过安装在绝缘材料内部来防止由于表面粗糙度引起的误差 确定绕组表面粗糙度的涂料。 构成:电极(110)测量绕组绝缘材料的吸湿状态。 驱动电路箱(120)连接到电极,接收来自电极的测量结果,并将测量结果转换成电信号。 连接线(130)将绕线吸湿监测单元(100)与第二卷绕吸湿监测单元(200)电连接。 第一绕线吸湿监测单元的表面能够通过涂覆处理形成涂层(140),通过紧密地附着在绕组绝缘材料的表面上并在其上重新涂覆绝缘涂料而安装。
    • 4. 发明公开
    • 비상베어링 및 이를 이용한 플라이휠 에너지 저장장치
    • 紧急轴承和使用其的飞行器能源储存装置
    • KR1020130032601A
    • 2013-04-02
    • KR1020110096300
    • 2011-09-23
    • 한국전력공사
    • 배용채이욱륜김희수이두영
    • F03G3/08F16C17/20F16C32/04F16C19/02
    • F16C32/0442F16C39/02F16C2361/55F03G3/08F16C17/20F16C19/02F16C32/0402
    • PURPOSE: An emergency bearing and a flywheel energy storing device using the same are provided to maintain the structure of the emergency bearing at a maximum steady state when ascending a flywheel and the emergency bearing seating. CONSTITUTION: An emergency bearing of a flywheel energy storing device comprises a rotating shaft(110), an upper emergency bearing(140), a lower emergency bearing(150), a supporter(160), and an actuator(170). The rotary shaft is joined by penetrating through the flywheel. The upper emergency bearing is formed to be positioned at a first gap away from the upper part of the rotary shaft. The lower emergency bearing is formed to be positioned at a second gap away from the lower part of the rotary shaft. The supporter surrounds the exterior surface of the upper emergency bearing. The actuator is formed on the top of the supporter.
    • 目的:提供一种紧急轴承和使用其的飞轮储能装置,用于在飞轮和紧急轴承座上升时将紧急轴承的结构保持在最大稳定状态。 构成:飞轮储能装置的紧急轴承包括旋转轴(110),上部紧急轴承(140),下部紧急轴承(150),支撑件(160)和致动器(170)。 旋转轴通过飞轮连接。 上部紧急轴承形成为位于远离旋转轴的上部的第一间隙处。 下部紧急轴承形成为位于远离旋转轴的下部的第二间隙处。 支撑件围绕上部紧急轴承的外表面。 致动器形成在支撑件的顶部。
    • 6. 发明公开
    • 터빈 블레이드 어셈블리
    • 涡轮叶片组件
    • KR1020120032686A
    • 2012-04-06
    • KR1020100094140
    • 2010-09-29
    • 한국전력공사
    • 이두영배용채김희수이욱륜
    • F01D5/14F01D5/22
    • F01D5/22F01D5/14F01D9/04F01D25/24F05D2220/30
    • PURPOSE: A turbine blade assembly is provided to extend the service life of turbine blades and prevent damage to the turbine blades by reducing the dynamic stress of airfoils. CONSTITUTION: A turbine blade assembly(100) comprises a root(110), an airfoil(120), and a cover(130). The airfoil is extended from the root. Both ends of the cover are radially multilevel. The cover comprises connection parts(132a,132b), first multilevel parts(131a,131b), and second multilevel parts(133a,133b). The connection part is extended from the airfoil. The first multilevel part is projected from one end of the connection part. The second multilevel part is radially projected from the other end of the connection part.
    • 目的:提供涡轮叶片组件以延长涡轮叶片的使用寿命,并通过减小翼型的动态应力来防止对涡轮叶片的损坏。 构成:涡轮叶片组件(100)包括根部(110),翼型件(120)和盖子(130)。 机翼从根部伸出。 盖的两端是径向多层的。 盖子包括连接部件(132a,132b),第一多级部件(131a,131b)和第二多级部件(133a,133b)。 连接部分从机翼延伸。 第一个多层部分从连接部分的一端伸出。 第二多级部件从连接部件的另一端径向地突出。