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    • 1. 发明授权
    • 연료전지용 기액분리장치
    • 用于燃料电池的液体气体分离器
    • KR101389756B1
    • 2014-04-28
    • KR1020130037926
    • 2013-04-08
    • 엘아이지넥스원 주식회사(주)대영오앤이
    • 이진우문현석서종오
    • H01M8/04
    • The present invention relates to a liquid-gas separator for fuel cell, which includes a fuel-mixing unit for supplying liquid fuel to an electricity generator for generating electricity and a liquid-gas separating unit for separating gas from the fuel collected from the electricity generator. The liquid-gas separating unit includes a separator main body; an inlet for supplying the collected fuel into the separator main body; a gas outlet which penetrates through the upper part of the separator main body and discharges gas; a liquid outlet which penetrates through the lower part of the separator main body and discharges liquid; and a holder unit which is installed in the separator main body, the center part of which protrudes upwards and combines with the gas outlet, and the edge part of which is extended from the center part in all directions and is located below the inlet. The fuel-mixing part includes a mixer main body and a plate unit which is located in the mixer main body and can float on liquid fuel if the inside of the mixer main body is filled with the liquid fuel.
    • 本发明涉及一种用于燃料电池的液气分离器,其包括用于向发电机供应液体燃料的燃料混合单元和用于从发电机收集的燃料中分离气体的液体气体分离单元 。 液体气体分离单元包括分离器主体; 用于将收集的燃料供给到分离器主体中的入口; 气体出口,其穿过分离器主体的上部并排出气体; 液体出口,其穿过分离器主体的下部并排出液体; 以及保持单元,其安装在分离器主体中,其中心部分向上突出并与气体出口组合,并且其边缘部分在中心部分沿所有方向延伸并位于入口下方。 燃料混合部分包括混合器主体和板单元,其位于混合器主体中并且如果混合器主体的内部充满液体燃料,则能够浮动在液体燃料上。
    • 2. 发明公开
    • 개질 장치
    • 改装装置
    • KR1020140132669A
    • 2014-11-18
    • KR1020140036725
    • 2014-03-28
    • 엘아이지넥스원 주식회사
    • 이진우
    • H01M8/06H01M8/04
    • 본 발명은 개질 장치에 관한 것이다. 본 발명은 연료를 수용하는 연료수용부; 및 상기 연료수용부 내부에 위치하고 촉매가 코팅된 히팅코일을 구비하며, 상기 촉매를 이용하여 상기 연료를 개질하여 수소를 비롯한 가스를 생성시키는 가열부;를 포함한다. 본 발명에 따르면, 촉매를 표면에 코팅한 히팅코일에 의해 연료의 연소온도에 도달하는 시간을 단축시킬 수 있다.
    • 公开了一种重整装置。 本发明的重整装置包括:容纳燃料的燃料容纳单元; 以及加热单元,其配备有设置在燃料容纳单元中并涂覆有催化剂的加热线圈,并且通过重整燃料产生包括氢的气体。 根据本发明,通过涂覆有催化剂的加热线圈可以减少直到达到燃料燃烧温度的时间。
    • 3. 发明授权
    • 항법 교란 신호 제거용 항법 신호 처리 장치
    • 用于消除导航扰动信号的导航信号处理装置
    • KR101750503B1
    • 2017-06-23
    • KR1020160116540
    • 2016-09-09
    • 엘아이지넥스원 주식회사
    • 이진우강행익
    • G01S19/01
    • G01S19/015
    • 본발명은위성항법시스템에서교란신호(jamming signal)를제거하고항법신호만을항법수신기에전달하여재밍에도불구하고위성항법수신기의동작을정상화시키는항법교란신호제거용항법신호처리장치에관한것이다. 종래의위성항법항재밍장치는장착된플랫폼이일정한자세로운행하는경우에는플랫폼의특정위치에장착하여동작시켜도운행구간동안위성항법항재밍장치의동작에아무런문제가없다. 그러나, 운행시자세변화가심한플랫폼에위성항법항재밍장치가장착된경우에는동체의회전등에따라동체가특정방향의위성항법신호를가리기때문에항법신호를정상적으로수신하지못하는경우가발생한다. 본발명은유도무기나무인기등의플랫폼이운항시자세변화가심하여내부나외부에위성항법수신기를장착한위성항법항재밍장치의항법신호수신성능이열화되거나최악의경우동작이불가능해질경우에이를해결하기위한교란신호제거용항법신호처리장치를제안하는것을목적으로한다.
    • 本发明涉及一种导航信号处理装置用于不管干扰信号的去除来自卫星导航系统的干扰信号(干扰信号),以通过仅在导航的导航装置及导航移除干扰信号来归一化的导航装置的动作。 传统的导航设备,其中所述干扰,其中安装平台在恒定位置运行存在的情况下的操作没有问题,其中,在操作过程中,即使在操作部安装于平台上的导航设备的干扰的特定位置时。 然而,如果取向改变期间该站安装在抗干扰严重平台上的导航装置和盒体是无法接收通常是由于隐藏在特定方向上的卫星定位信号的GPS信号的发生是由于移动体的旋转。 在本发明的情况下,它被引导武器严重飞行过程中平台姿态的变化,如装备有导航装置上的内部或外部的卫星导航的抗干扰设备的木材流行退化导航信号的接收性能,或者是最坏的情况下的操作是不可能的它 并提供一种去除干扰信号的导航信号处理装置,以解决上述问题。
    • 4. 发明授权
    • 저온 시동 직접 메탄올 연료전지 시스템
    • 用于低温启动的DMFC系统
    • KR101666200B1
    • 2016-10-13
    • KR1020150183979
    • 2015-12-22
    • 엘아이지넥스원 주식회사
    • 이진우
    • H01M8/04H01M8/10
    • Y02E60/523
    • 직접메탄올연료전지시스템을공개한다. 본발명은복수개의센서, 연료인메탄올을저장하는연료탱크, 메탄올수용액과공기를인가받아화학반응을생성하여전기를발생하는스택, 스택으로부터미반응연료와화학반응부산물을인가받아분리하고, 연료탱크로부터메탄올용액을인가받아혼합하여메탄올수용액을생성하는기액분리기, 전력을공급받아발열하며, 연료탱크에서공급된메탄올가스와산화반응을발생하기위한촉매가코팅된금속발열체; 금속발열체로전력을공급하는이차전지및 시동초기에복수개의센서중 적어도하나의온도센서를통해감지되는온도를기설정된제1 기준온도와비교하여, 감지되는온도가제1 기준온도이하이면, 이차전지를제어하여금속발열체로전력을공급하고, 연료탱크의메탄올가스를금속발열체를통해기액분리기로인가되도록하는시동제어부를포함한다.
    • 7. 发明公开
    • 연료 개질 장치 및 연료 전지 시스템
    • 用于改装燃料的装置,以及用于装置的燃料电池系统
    • KR1020130120157A
    • 2013-11-04
    • KR1020120043203
    • 2012-04-25
    • 엘아이지넥스원 주식회사
    • 장덕진이진우김도연
    • H01M8/06H01M8/04H01M8/10C01B3/02
    • The present invention relates to a fuel cell system capable of being used for industry or leisure and a fuel reforming apparatus included in the system. The present invention suggests a fuel reforming apparatus, comprising: a gas generating unit which generates gas including a hydrogen component by reforming the supplied fuel using a catalyst; a hydrogen component extracting unit which extracts a hydrogen component by removing the rest of gas components except the hydrogen component from the gas; a direct heating unit which directly heats up the gas generating unit; and an indirect heating unit which has a pipe or cylindrical shape where the inside thereof is empty, and which is tightly attached to at least one surface of the hydrogen component extracting unit and heats up the inside of the hydrogen component extracting unit with fuel gas by combustion of fuel. According to the invention, time for reaching a starting temperature can be reduced. [Reference numerals] (AA) Inject water, air, DME;(BB) Outlet of reaction gas
    • 本发明涉及能够用于工业或休闲的燃料电池系统和包括在该系统中的燃料重整装置。 本发明提出一种燃料重整装置,包括:气体发生单元,其通过使用催化剂重整所供给的燃料而产生包括氢成分的气体; 氢成分提取单元,其从所述气体中除去除了氢成分以外的其余气体成分,从而提取氢成分; 直接加热气体发生单元的直接加热单元; 以及间隔加热单元,其具有内部为空的管状或圆筒形状,并且紧密附着在氢成分提取单元的至少一个表面上,并通过燃料气体加热氢成分提取单元的内部 燃料燃烧 根据本发明,可以减少达到起始温度的时间。 (附图标记)(AA)注入水,空气,DME;(BB)反应气体的出口
    • 8. 发明公开
    • 직접 시퀀스 코드분할다중접속 모뎀의 저피탐 설계방법
    • DS-CDMA MODEM的LPI / LPD方法
    • KR1020100052748A
    • 2010-05-20
    • KR1020080111591
    • 2008-11-11
    • 엘아이지넥스원 주식회사
    • 이병환이정배이진우김상훈안병선박정혁
    • H04B1/7103
    • H04B1/7103H04K3/827
    • PURPOSE: An LPI/LPD design method of the DS-CDMA modem is provided to conceal a transmission signal with noises by controlling the ratio of noise power density and noise power density through power control and processing gain control. CONSTITUTION: A link budget analysis, DS-SS(Direct Sequence-Spread Spectrum) design and modem control channel design are used for a LPI(Low Probability of Intercept)/LPD(Low Probability of Detection) design of a DS-CDMA(Direct Sequence-Code Division Multiple Access) modem. The link budget analysis decides the power characteristic of a transceiving channel. If the connection of terminals is operated by a operating station, a transmission signal power of the other party is controlled through the control channel among the terminals.
    • 目的:提供DS-CDMA调制解调器的LPI / LPD设计方法,通过功率控制和处理增益控制来控制噪声功率密度和噪声功率密度之比,从而通过噪声来隐藏传输信号。 构成:链路预算分析,DS-SS(直接序列扩频)设计和调制解调器控制信道设计用于DS-CDMA(直接)的LPI(低概率拦截)/ LPD(低概率检测)设计 序列码分多址)调制解调器。 链路预算分析决定了收发信道的功率特性。 如果终端的连接由操作台操作,则通过终端之间的控制信道来控制另一方的传输信号功率。