셀 기반의 배터리 시스템 에뮬레이터
    1.
    发明授权
    셀 기반의 배터리 시스템 에뮬레이터 有权
    基于电池的电池系统仿真器

    公开(公告)号:KR101127898B1

    公开(公告)日:2012-03-21

    申请号:KR1020110137571

    申请日:2011-12-19

    Inventor: 이태경 정창모

    Abstract: PURPOSE: A cell based battery system emulator is provided to independently develop and test a BMS(Battery Management System) algorithm by separating a BMS algorithm mounting unit from a BMS hardware interface unit of which interfaces are connected by communication. CONSTITUTION: A multi cell battery model performing unit(500) calculates a cell output voltage value by modeling a cell satisfying a requested battery pack voltage on a multi cell basis A multi cell hardware interface unit(400) converts a calculated cell output voltage value to a physical cell voltage value practically inputted to a BMS. The BMS(300) is interfaced with a cell output voltage of the multi cell hardware interface unit. A battery pack voltage emulator(200) emulates a battery pack voltage requested by a calculated cell voltage of the multi cell battery model performing unit as a real battery voltage value.

    Abstract translation: 目的:提供一种基于单元的电池系统仿真器,通过将BMS算法安装单元与通过通信连接的BMS硬件接口单元进行分离,独立开发和测试BMS(电池管理系统)算法。 构成:多单元电池模型执行单元(500)通过在多单元的基础上对满足所请求的电池组电压的单元进行建模来计算单元输出电压值。多单元硬件接口单元(400)将计算的单元输出电压值转换为 实际输入到BMS的物理单元电压值。 BMS(300)与多单元硬件接口单元的单元输出电压接口。 电池组电压仿真器(200)将由多单元电池模型执行单元的计算单元电压请求的电池组电压模拟为实际电池电压值。

    궤도차량용 결박장치
    2.
    发明授权
    궤도차량용 결박장치 有权
    用于跟踪车辆的锁定装置

    公开(公告)号:KR100927988B1

    公开(公告)日:2009-11-24

    申请号:KR1020080123518

    申请日:2008-12-05

    Inventor: 이명천 정창모

    Abstract: PURPOSE: A locking device for a tracked vehicle is provided to increase work efficiency and minimize a binding material. CONSTITUTION: A locking device for a tracked vehicle comprises first and second sleepers(110,120). The first sleeper has an inclined part(111) and is inserted between a floor and endless track to restrict the movement of an orbit car. The second sleeper supports the side part of the endless track. A base part(112) of the first sleeper is contacted to the floor. The base part is recessed. The second sleeper includes a connecting part(121) and a supporting part(122). The connecting part includes a through hole and is inserted into the recessed part. The supporting part supports the side part of the endless track and has a staple-shaped cross section with an opening(125).

    Abstract translation: 目的:提供一种用于跟踪车辆的锁定装置,以提高工作效率并最大限度地减少装订材料。 构成:用于跟踪车辆的锁定装置包括第一和第二轨枕(110,120)。 第一轨枕具有倾斜部分(111)并且插入在地板和环形履带之间以限制轨道车辆的运动。 第二个睡眠者支持无尽轨道的侧面部分。 第一枕木的基部(112)与地板接触。 基部凹进。 第二轨枕包括连接部分(121)和支撑部分(122)。 连接部包括通孔并插入到凹部中。 支撑部分支撑环形轨道的侧部并具有带有开口(125)的钉状横截面。

    차동 변속 통합형 전기 추진 동력 전달 장치 및 그 운용 방법
    4.
    发明授权
    차동 변속 통합형 전기 추진 동력 전달 장치 및 그 운용 방법 有权
    具有集成差分的电力传输及其操作方法

    公开(公告)号:KR101564632B1

    公开(公告)日:2015-11-02

    申请号:KR1020130113751

    申请日:2013-09-25

    Inventor: 정창모 이태경

    CPC classification number: Y02T10/7005

    Abstract: 본발명은차동변속통합형전기추진동력전달장치및 그운용방법에관한것으로서, 보다상세하게는전기추진시스템/차량관련기술분야로서다수의전기모터로부터추진동력을입력받아정상모드, 비상모드, 독립모드, 확장모드등 다양한추진모드를제공해주는차동변속통합형전기추진동력전달장치및 그운용방법에 관한것이다. 이를위해, 본발명은적어도 2개이상구비되는전기모터, 상기각각의전기모터에연결되고, 각전기모터의구동력을공급받는동력전달장치및 상기동력전달장치에각각연결되어구동력을공급받는복수개의구동장치를포함하는것을특징으로하는차동변속통합형전기추진동력전달장치를제공한다.

    자가복구형 배터리 및 이의 제어방법, 자가복구형 배터리 시스템
    5.
    发明授权
    자가복구형 배터리 및 이의 제어방법, 자가복구형 배터리 시스템 有权
    自我养护电池及其控制方法,自我养护电池系统

    公开(公告)号:KR101147937B1

    公开(公告)日:2012-06-01

    申请号:KR1020110137570

    申请日:2011-12-19

    Inventor: 이태경 정창모

    Abstract: PURPOSE: A self-healing battery is provided to physically separate abnormal cells from a battery system through a switching part safely, thereby recovering battery function. CONSTITUTION: A self-healing battery system(100) comprises: a battery pack(110) equipped with a switching part(130) corresponding to a plurality of respective cells; a sensing part(120) sensing the state of the battery pack; a detection part(230) formed to detect abnormal cells in the plurality of cells by using sensed information; an interface part(220) converting the sensed information to a recognizable signal, and transmitting the signal to the detection part; and a control part controlling the switching part corresponding to the abnormal cells in order to form a current path detouring the abnormal cells.

    Abstract translation: 目的:提供自愈电池,通过安全切换部件将异​​常电池与电池系统物理分离,从而恢复电池功能。 构成:自愈电池系统(100)包括:电池组(110),其配备有对应于多个相应电池的开关部分(130); 感测部分(120),感测电池组的状态; 形成为通过使用感测信息来检测多个单元中的异常单元的检测部(230) 接口部分(220)将感测到的信息转换成可识别信号,并将该信号发送到检测部分; 以及控制部分,控制对应于异常小区的切换部分,以形成迂回异常小区的电流路径。

    차동 변속 통합형 전기 추진 동력 전달 장치 및 그 운용 방법
    6.
    发明公开
    차동 변속 통합형 전기 추진 동력 전달 장치 및 그 운용 방법 有权
    具有集成差分的电力传输及其操作方法

    公开(公告)号:KR1020150042307A

    公开(公告)日:2015-04-21

    申请号:KR1020130113751

    申请日:2013-09-25

    Inventor: 정창모 이태경

    Abstract: 본발명은차동변속통합형전기추진동력전달장치및 그운용방법에관한것으로서, 보다상세하게는전기추진시스템/차량관련기술분야로서다수의전기모터로부터추진동력을입력받아정상모드, 비상모드, 독립모드, 확장모드등 다양한추진모드를제공해주는차동변속통합형전기추진동력전달장치및 그운용방법에 관한것이다. 이를위해, 본발명은적어도 2개이상구비되는전기모터, 상기각각의전기모터에연결되고, 각전기모터의구동력을공급받는동력전달장치및 상기동력전달장치에각각연결되어구동력을공급받는복수개의구동장치를포함하는것을특징으로하는차동변속통합형전기추진동력전달장치를제공한다.

    Abstract translation: 本发明涉及一种具有集成的差动变速器的电力传动装置及其操作方法,更具体地说,涉及一种具有集成差动传动装置的电动动力传递装置及其操作方法,其提供各种推进 作为与电动系统或车辆相关的技术领域,通过从多个电动机接收推进动力来进行模式,例如正常模式,紧急模式,独立模式,膨胀模式等。 为了实现这一点,具有集成差分变速器的电动动力传递装置包括:至少两个电动机; 连接到每个电动机的动力传递装置,每个电动机被供给每个电动机的驱动力; 以及连接到被提供有驱动电力的每个电力传输装置的多个驱动装置。

    전력변환 에뮬레이터 기반의 개방형 SIL 시스템
    7.
    发明授权
    전력변환 에뮬레이터 기반의 개방형 SIL 시스템 有权
    基于功率仿真器的开放系统集成实验室系统

    公开(公告)号:KR101325594B1

    公开(公告)日:2013-11-06

    申请号:KR1020130101651

    申请日:2013-08-27

    Abstract: A power conversion emulator based open system integration lab (SIL) system of the present invention provides a power hardware-in-the-loop simulation (PHILS) environment and an SIL operating environment in an open architecture for various platforms of a power level including an open hardware-in-the-loop simulation (HILS) with an existing signal level by including an open platform (1000) providing a power conversion emulator based open architecture; and dramatically reduces development time and costs compared to the existing system by performing a platform time-varying load characteristic test including a platform controller, components, platform dynamics in a laboratory in a development stage. [Reference numerals] (1000) Open platform;(1100) Platform control device;(1110) UP scale controller HIL simulator;(1120) Trouble shooting controller;(1200) Open down dispersing interface;(1210) Open communication network;(1220) Open signal network;(1230) Open electricity network;(1300) Platform PHILS copy device;(1310) DC electricity conversion emulator;(1320) AC electricity conversion emulator;(1330) Platform real component;(1400) Driving system copy device;(1410) Dynamo;(1420) Gear box;(2000) Platform copy device;(3000) SIL driving device

    Abstract translation: 本发明的基于电力转换仿真器的开放式系统集成实验室(SIL)系统在功率级的各种平台的开放式架构中提供电源硬件在环模拟(PHILS)环境和SIL操作环境,包括 通过包括提供基于开放架构的电源转换仿真器的开放平台(1000),开放硬件在环模拟(HILS),具有现有的信号电平; 并且通过在开发阶段通过执行平台时变负载特性测试(包括平台控制器,组件,平台动态)在实验室中大大减少开发时间和成本。 (1000)开放平台;(1100)平台控制装置;(1110)UP秤控制器HIL模拟器;(1120)故障排除控制器;(1200)打开分散界面;(1210)打开通信网络;(1220 )开放信号网络;(1230)开放电力网络;(1300)平台PHILS复制设备;(1310)直流电力转换仿真器;(1320)交流电力转换仿真器;(1330)平台实际组件;(1400)驱动系统复制设备 ;(1410)发电机;(1420)齿轮箱;(2000)平台复印装置;(3000)SIL驱动装置

    레이저 빔의 입사 방향 판별 시스템 및 그 방법
    8.
    发明授权
    레이저 빔의 입사 방향 판별 시스템 및 그 방법 有权
    用于确定激光束到达角度的系统及其方法

    公开(公告)号:KR101386637B1

    公开(公告)日:2014-04-18

    申请号:KR1020130002229

    申请日:2013-01-08

    CPC classification number: G01J1/4257 G01J1/0411 G01M11/005 H01J3/14

    Abstract: An embodiment of the present invention relates to a system to determine the incident direction of a laser beam and a method thereof. The present invention determines the incident direction of a laser beam based on the output value (or strength) of each of detector cells after focusing the incident laser beam on a specific position of an arrangement detector by refracting the incident laser beam with a lens. For the aforementioned, the incident direction determining system of a laser beam according to the embodiment includes: lens which collects the laser beam which is emitted in an arbitrary direction; an arrangement detector which outputs a signal which corresponds to the laser beam which focuses on a detector cell by independently reacting depending on the position of the laser beam which is collected from the lens; and a control unit which processes the signal which is outputted from the arrangement detector, converts signal-processed data from analog to digital, and calculates an incident angle of the incident laser beam based on the converted data. [Reference numerals] (100) Lens; (200) Arrangement detector; (300) Control unit

    Abstract translation: 本发明的实施例涉及一种确定激光束的入射方向的系统及其方法。 本发明基于通过用透镜折射入射激光束将入射激光束聚焦在布置检测器的特定位置之后的每个检测器单元的输出值(或强度)来确定激光束的入射方向。 对于上述,根据实施例的激光束的入射方向确定系统包括:收集沿任意方向发射的激光束的透镜; 输出与根据从透镜收集的激光束的位置独立地反应而聚焦在检测器单元上的激光束对应的信号的布置检测器; 以及控制单元,其处理从布置检测器输出的信号,将信号处理的数据从模拟转换为数字,并且基于转换的数据计算入射的激光束的入射角。 (附图标记)(100)透镜; (200)排列检测器; (300)控制单元

    지방족 니트로화합물의 분해 방법 및 장치
    9.
    发明公开
    지방족 니트로화합물의 분해 방법 및 장치 失效
    用于分解二氧化钛化合物的方法和装置

    公开(公告)号:KR1020070027031A

    公开(公告)日:2007-03-09

    申请号:KR1020050079372

    申请日:2005-08-29

    CPC classification number: C02F1/72 C02F1/66 C02F9/00 C02F2305/02

    Abstract: A method and an apparatus for decomposing aliphatic nitro compounds are provided to simultaneously process the total nitrogen component together with the decomposition of organic matter, thereby reducing the manufacturing cost of the apparatus. A waste water mixer(17) mixes waste water including aliphatic nitro compounds, additives and dilution water. An oxidizer compression device(16) compresses the oxidizer above the pressure of a reactor and injects continuously a regular amount of oxidizer. A heat exchanger(21) heats the waste water by the treatment water and cools simultaneously. A waste water pre-heater(22) heats the waste water to the reaction temperature. A reactor(23) performs an oxidation decomposition reaction of the waste water. A cooler(24) cools the treatment water below 100 degrees centigrade. A decompression device(25) decompresses the pressure of the treatment water discharged from the cooler below 10 atmospheric pressure. A gas-liquid separator(26) separates the decompressed treatment water into gas and liquid phases. A pH measuring device(27) measures pH of the treatment water. A dilution water storage tank(18) projects the treatment water into the waste water mixer.

    Abstract translation: 提供用于分解脂族硝基化合物的方法和装置,以同时处理总氮成分以及有机物的分解,从而降低装置的制造成本。 废水混合器(17)将包括脂肪族硝基化合物,添加剂和稀释水在内的废水混合。 氧化剂压缩装置(16)将氧化剂压缩至高于反应器的压力并连续注入常规量的氧化剂。 热交换器(21)通过处理水加热废水并同时冷却。 废水预热器(22)将废水加热至反应温度。 反应器(23)进行废水的氧化分解反应。 冷却器(24)冷却低于100摄氏度的处理水。 减压装置(25)将从冷却器排出的处理水的压力减压到低于10大气压。 气液分离器(26)将减压处理水分离成气相和液相。 pH测量装置(27)测量处理水的pH。 稀释储水箱(18)将处理水投入到废水混合器中。

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