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    • 6. 发明公开
    • 낙뢰의 이동경로 감시 시스템
    • 监控照明运动路径的系统
    • KR1020120131497A
    • 2012-12-05
    • KR1020110049702
    • 2011-05-25
    • 주식회사 케이티
    • 박민수
    • G01W1/16G01S17/95
    • Y02A90/19G01W1/16G01W2201/00G08B21/10
    • PURPOSE: A system for monitoring the movement path of lightning is provided to improve the efficiency of communication facility recovery by monitoring the movement path of lightning using lightning detected signals. CONSTITUTION: A lightning detecting device(20) includes a broadband antenna, an amplitude limiting unit, an amplifying unit, a matching unit, a controlling unit, and a transmitting unit. The broadband antenna receives lightning signals. The amplitude limiting unit limits the amplitude of the received lightning signals in a predetermined threshold. The amplifying unit amplifies the amplitude limited lightning signals. The matching unit matches the amplified lightning signals to a lightning monitoring device. The controlling unit transmits alarming signals to the lightning monitoring device if the intensity of the amplified lightning signals is excess to a reference value. The transmitting unit transmits the matched lightning signals and transmits the alarming signals to the lightning monitoring device. [Reference numerals] (10) First to n-th lightning detecting unit; (20) Lightning detecting device
    • 目的:提供一种用于监测雷电移动路径的系统,通过使用雷电检测信号监测雷电的移动路径,提高通信设备恢复的效率。 构成:雷电检测装置(20)包括宽带天线,限幅单元,放大单元,匹配单元,控制单元和发送单元。 宽带天线接收雷电信号。 振幅限制单元将接收到的雷电信号的振幅限制在预定阈值。 放大单元放大限幅雷电信号。 匹配单元将放大的雷电信号与雷电监测装置相匹配。 如果放大的雷击信号的强度超过参考值,则控制单元将报警信号发送到雷电监测装置。 发射单元发送匹配的雷电信号,并将报警信号发送到雷电监测装置。 (附图标记)(10)第一至第n雷电检测单元; (20)雷电检测装置
    • 7. 发明公开
    • 선박 레이더를 이용하여 국지 강수를 추정하는 시스템 및 그 추정방법
    • 使用船舶雷达评估雨水的系统和方法
    • KR1020120040025A
    • 2012-04-26
    • KR1020100101525
    • 2010-10-18
    • 메테오르 주식회사
    • 김광호김박사강동환권병혁서대일
    • G01W1/14B63J99/00G01S17/95
    • Y02A90/19G01W1/10G01S13/956G01W2203/00
    • PURPOSE: A system for estimating localized rainfall based on a vessel radar and an estimating method of the same are provided to scan and observe regions based on a plan position indicator(PPI) method. CONSTITUTION: A system for estimating localized rainfall based on a vessel radar includes a vessel radar(100), a fence, an analog to digital(AD) converter, and a localized rainfall estimating server(300). The vessel radar scans and observes a target area based on a PPI method. The fence is installed around the vessel radar and reflects downward beam generated from the vessel radar and eliminates clutter from the beam. The AD converter converts signals from the vessel radar and generates radar reflection signals. The radar reflection signals are transmitted from the AD converter to the localized rainfall estimating server. The localized rainfall estimating server reflects transmitted radar reflection signals to rainfall information generating algorithm generates the rainfall information of the target area.
    • 目的:提供一种基于船舶雷达估计局部降雨的系统及其估计方法,用于基于平面位置指示器(PPI)方法扫描和观察区域。 构成:基于船只雷达估计局部降雨的系统包括船舶雷达(100),围栏,模拟(AD)转换器和局部降雨估计服务器(300)。 船舶雷达基于PPI方法扫描并观察目标区域。 篱笆安装在船只雷达周围,并反射从船只雷达产生的向下的波束,并消除波束的杂波。 AD转换器转换来自船只雷达的信号,并产生雷达反射信号。 雷达反射信号从AD转换器传输到局部降雨估计服务器。 本地降雨估计服务器将发射的雷达反射信号反映到降雨信息生成算法中,生成目标区域的降雨信息。
    • 8. 发明公开
    • 라이다를 이용한 황사 판독방법
    • 使用激光的黄光读取方法
    • KR1020100097487A
    • 2010-09-03
    • KR1020090016450
    • 2009-02-26
    • 서울대학교산학협력단
    • 윤순창김상우박상천
    • G01S17/95G01W1/08
    • Y02A90/19
    • PURPOSE: A method for reading yellow-dust using light detection and ranging(LIDAR) is provided to obtain accurate the vertical distribution of the yellow-dust by calculating the ratio of extinction coefficient and back scattering coefficient based on the comparison result of the optical thickness of aerosol. CONSTITUTION: Laser ray vertically radiates toward atmosphere through LIDAR. The intensity of back scattering light which is collected in the receiver of the LIDAR and the light returning time of the laser ray are measured. Based on the measurement result, aerosol extinction coefficient and depolarization ratio are calculated. The generation of yellow-dust and the distribution altitude of the yellow-dust are read through the calculated aerosol extinction coefficient and the depolarization ratio.
    • 目的:提供一种使用光检测和测距(LIDAR)读取黄尘的方法,通过计算消光系数和反散射系数的比例,根据光学厚度的比较结果,获得准确的黄色灰度垂直分布 的气溶胶。 规定:激光射线通过激光雷达垂直辐射向大气。 测量在LIDAR的接收器中收集的反射散射光的强度和激光的光返回时间。 根据测量结果计算气溶胶消光系数和去极化率。 通过计算出的气溶胶消光系数和去极化比,读取黄灰尘的产生和黄灰的分布高度。
    • 9. 发明授权
    • 기상레이더의 강수량 추정 방법
    • 天气雷达的雷达估计方法
    • KR100963532B1
    • 2010-06-15
    • KR1020090108153
    • 2009-11-10
    • 부경대학교 산학협력단
    • 이동인유철환장민강미영
    • G01W1/14G01S17/95
    • Y02A90/14Y02A90/19G01W1/14G01S13/02G01S13/95G01W1/10
    • PURPOSE: A rainfall estimation method of a weather radar is provided to improve the reliability of rainfall estimation with fast and real-time prediction capabilities by minimizing the errors of radar reflectivity and to prevent damage due to localized heavy rain. CONSTITUTION: A rainfall estimation method of weather radar comprises the following steps: converting radar data of polar coordinates as a three-dimensional rectangular coordinate system; setting the reflectivity of a disdrometer as a standard value in the rectangular coordinate system and identifying radar reflectivity which is located within a constant radius from the disdrometer; identifying an altitude which minimizes the difference of the reflectivity of the disdrometer and the radar reflectivity; calculating the ratio of the radar reflectivity to the reflectivity of the disdrometer(a bias correction factor); and producing the rainfall estimation using a Z-R relation equation after correcting the radar reflectivity. The Z-R equation is Z=aR^b. In the equation, Z is a factor of radar reflectivity.
    • 目的:提供天气雷达的降雨估计方法,通过最小化雷达反射率误差和防止局部大雨造成的损害,通过快速实时预报功能提高降雨估计的可靠性。 构成:天气雷达的降雨估算方法包括以下步骤:将极坐标雷达数据转换为三维直角坐标系; 将直径测量仪的反射率设置为直角坐标系中的标准值,并确定雷达反射率位于距离测量仪恒定半径范围内; 识别最大限度降低辐射计的反射率和雷达反射率的高度; 计算雷达反射率与辐射计反射率的比值(偏差校正因子); 并且在校正雷达反射率之后使用Z-R关系方程产生降雨估计。 Z-R方程为Z = aR ^ b。 在等式中,Z是雷达反射率的因子。