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    • 31. 发明授权
    • 필드 서버를 이용한 웹 기반 기상 감시 시스템
    • 基于WEB的天气监测系统
    • KR101041517B1
    • 2011-06-16
    • KR1020100122315
    • 2010-12-02
    • 부경대학교 산학협력단
    • 오재호김도용김진영
    • G01W1/00H04W84/18
    • G01W1/10G01W1/02G01W2001/006G01W2203/00G06T2207/30192
    • PURPOSE: A web-based weather monitoring system is provided to ensure excellent profitability and extendability since a sensor network is based and to enable the observation in a wide region since a standard weather information sharing function is added. CONSTITUTION: A web-based weather monitoring system using a field server comprises: at least one field server(100) transmitting the solar-radiation amount, CO2, temperature, humidity, and data of observed images to an agent through a network; and an integrated agent(200). The integrated agent comprises a data collection unit, a processing unit for changing the collected data to a network common data form, a central control unit for storing the processed data in weather monitoring database, and a sharing processing unit distributing data.
    • 目的:提供基于网络的天气监测系统,以确保传感器网络为基础的优异的盈利能力和可扩展性,并且能够在广泛的区域实现观测,因为增加了标准的天气信息共享功能。 构成:使用现场服务器的基于网络的天气监测系统包括:至少一个现场服务器(100),通过网络将代理的太阳辐射量,CO2,温度,湿度和数据传输到代理; 和综合代理(200)。 集成代理包括数据收集单元,用于将收集的数据改变为网络公共数据形式的处理单元,用于将处理数据存储在天气监视数据库中的中央控制单元,以及分发数据的共享处理单元。
    • 32. 发明授权
    • 구면좌표계 섹터자료 처리용 정교한 등방성 디지털 필터
    • 用于处理球面坐标系统的数据的等分数字过滤器
    • KR100981983B1
    • 2010-09-13
    • KR1020090084984
    • 2009-09-09
    • 부경대학교 산학협력단
    • 정형빈
    • G06T5/00
    • G06T5/20G06F17/14G06T1/00G06T2207/30192
    • PURPOSE: A delicate isotropy digital filter for processing sector data of a spherical coordinate system is provided to filter or restore 3D spatial data of a sector area of a spherical coordinate system using a sector area double Fourier series spectral method. CONSTITUTION: An area of sector data of a spherical coordinate system, expressed by a longitude range and a latitude range, is expanded. A boundary condition is set(S1). The sector data, to be filtered, is converted to satisfy the boundary condition. The sector data satisfies the boundary condition by a filtering equation(S2). The sector data is expanded with a Fourier series(S3).
    • 目的:提供一种用于处理球面坐标系的扇区数据的精细各向同性数字滤波器,以使用扇区双傅里叶级数谱法滤波或恢复球面坐标系的扇区区域的3D空间数据。 构成:扩展了由经度范围和纬度范围表示的球面坐标系的扇区数据区域。 设定边界条件(S1)。 要过滤的扇区数据被转换为满足边界条件。 扇区数据通过滤波方程(S2)满足边界条件。 扇区数据用傅立叶级数扩展(S3)。
    • 33. 发明公开
    • 하늘상태 자동관측 시스템 및 방법
    • 用于自然观测天气条件的系统和方法
    • KR1020100042711A
    • 2010-04-27
    • KR1020080101823
    • 2008-10-17
    • (주)뉴멀티테크
    • 권중장
    • G01W1/00G01W1/10G01W1/08
    • Y02A90/14G01W1/10G01S17/95G01W1/02G01W2001/006G06T7/40G06T19/00G06T2207/30192
    • PURPOSE: A sky state automatic observation system and a method thereof are provided to obtain observational data in real time and to offer exact observation information about the sky state through 3D information acquisition of the cloud. CONSTITUTION: A sky state automatic observation system comprises: a camera(110); a cloud image acquisition part(130) which includes a camera and a laser(120) and obtains 3D cloud video information from the camera; a cloud domain extraction part(140) using a texture interpretation of the obtained cloud image; a 3D distance information map configuration part(150); a cloud observation information extraction part(160); and a control part(170) controlling the camera, the laser, and rest elements.
    • 目的:提供天空自动观测系统及其方法,以实时获取观测数据,并通过云的3D信息获取提供关于天空状态的精确观测信息。 构成:天空状态自动观察系统包括:照相机(110); 云图像获取部分(130),其包括相机和激光器(120),并从相机获取3D云视频信息; 使用所获得的云图像的纹理解释的云域提取部分(140) 3D距离信息映射配置部(150); 云观测信息提取部(160); 以及控制相机,激光器和休息元件的控制部分(170)。
    • 38. 发明授权
    • 투명 디스플레이를 이용한 선박용 영상 개선 시스템
    • 使用透明显示器的船舶图像增强系统
    • KR101456439B1
    • 2014-10-31
    • KR1020130121696
    • 2013-10-14
    • 한국해양과학기술원
    • 전태병
    • G06T5/00
    • G06T5/002G02B27/01G02B2027/0138G02B2027/014G06T2207/10016G06T2207/30192
    • The present invention relates to a system to enhance an image for a vessel, capable of assisting safe vessel sailing by outputting a clear image through a transparent display after removing the noise resulting from a weather condition such as a fog, a sea fog, and heavy snows; as a transparent display is installed in a window of a vessel wheelhouse, and image processing is performed for image information of a camera having a high magnification lens. According to the present invention, the system to enhance the image for the vessel includes: an image information acquiring unit to acquire the information of an image having a resolution provided in a predetermined range in a movement direction of the vessel in real time; an image information converting unit to convert analog image information acquired from the image information acquiring unit into digital image information; an image information correcting unit to correct repeated regions having the same resolution from the digital image information; an image information filtering unit to filter weather noises from the digital image information corrected by the image information correcting unit; a plurality of display units installed in the window of the vessel wheelhouse to display image information filtered through the image information filtering unit; and an image information control unit to perform a control operation such that synchronized digital image information is divided and outputted based on the positions of the display units provided on the window of the wheelhouse.
    • 本发明涉及一种增强船舶图像的系统,能够在消除由天气条件如雾,海雾和沉重的噪音引起的噪音之后,通过透明显示屏输出清晰图像来帮助安全船只航行 大雪; 作为透明显示器安装在船舶驾驶室的窗口中,并且对具有高倍率透镜的照相机的图像信息进行图像处理。 根据本发明,用于增强船舶图像的系统包括:图像信息获取单元,用于获取在船舶运动方向上实时地具有在预定范围内提供的分辨率的图像的信息; 图像信息转换单元,将从图像信息获取单元获取的模拟图像信息转换为数字图像信息; 图像信息校正单元,用于从数字图像信息中校正具有相同分辨率的重复区域; 图像信息滤波单元,用于从由图像信息校正单元校正的数字图像信息中过滤天气噪声; 多个显示单元,安装在容器驾驶室的窗口中,以显示通过图像信息过滤单元过滤的图像信息; 以及图像信息控制单元,用于执行控制操作,使得基于设置在驾驶室的窗口上的显示单元的位置来分割和输出同步的数字图像信息。
    • 40. 发明公开
    • 동아시아 여름철 몬순 강수의 물리 통계 예측 시스템 및 방법
    • 东亚夏季降水物理预报系统与方法
    • KR1020140082534A
    • 2014-07-02
    • KR1020120152628
    • 2012-12-24
    • 부산대학교 산학협력단
    • 서경환손준혁
    • G01W1/14
    • G01W1/14G01W1/10G06T2207/30192
    • The present invention relates to an objective method to focus on a physical phenomenon affecting interannual variability of East Asian summer monsoon precipitation and to predict East Asian monsoon precipitation by using surface sea temperature (SST), which is a correlated boundary force. A prediction system comprises an EOF analysis unit, which performs EOF analysis of East Asia and determines air mass arrangement correlated to July monsoon precipitation and a front; an area selecting unit, which shows a correlation map of global sea surface temperatures by a diagram and selects a high correlation area by using preceding three time series from the EOF analysis; a time determining unit, which determines four areas and a time physically correlated to East Asian monsoon among high correlation areas; and a prediction factor re-determination unit, which re-determines a prediction factor in order to predict East Asian July precipitation; and a statistical model building unit, which builds a statistical model by using a multiple regression equation.
    • 本发明涉及一种重点关注影响东亚夏季风降水年际变率的物理现象,并通过使用作为相关边界力的地面海温(SST)预测东亚季风降水。 一个预测系统包括一个EOF分析单元,对东亚进行EOF分析,并确定与7月季风降水和前沿相关的空气质量布置; 区域选择单元,其通过图示出全球海面温度的相关图,并且通过使用来自EOF分析的前三个时间序列来选择高相关区域; 时间确定单元,确定高相关区域之间的东亚季风的四个区域和时间物理相关; 和预测因子重新确定单位,重新确定预测因子,以预测东亚7月份降水; 和统计模型建立单元,通过使用多元回归方程构建统计模型。