대기오염 스마트 알람 장치
    121.
    发明公开
    대기오염 스마트 알람 장치 有权
    大气污染智能报警装置

    公开(公告)号:KR1020150101851A

    公开(公告)日:2015-09-04

    申请号:KR1020140023659

    申请日:2014-02-27

    CPC classification number: G01W1/00 G01J3/00 G01N21/94 G01W2201/00 G01W2203/00

    Abstract: 본 발명의 대기오염 스마트 알람 장치는, 대기를 관측한 실측 자료로부터 적어도 한 종류 이상의 오염물질 농도에 대한 심각도 지표를 산출하는 지표화 유니트와 사용자 입력에 따라 임계 지표가 설정되며, 설정된 상기 임계 지표와 상기 심각도 지표를 비교하여 결과에 따라 알림 메시지를 생성하는 유저 유니트를 포함한다.

    Abstract translation: 本发明涉及一种大气污染智能报警装置。 本发明的装置包括以下部件:计算从大气观测的实际数据导出的至少一种以上种类的污染物浓度的严重度指标的指标单位,以及根据大气观测的实际数据产生通知信息的用户单元 根据用户的输入设置关键指标的结果,然后对设定的关键指标和严重性指标进行比较。

    데이터마이닝 기법을 활용한 초단기 기상예보 시스템 및 그 기법
    122.
    发明公开
    데이터마이닝 기법을 활용한 초단기 기상예보 시스템 및 그 기법 无效
    短期天气预报系统及其采用数据采矿技术的方法

    公开(公告)号:KR1020150085313A

    公开(公告)日:2015-07-23

    申请号:KR1020140005042

    申请日:2014-01-15

    Abstract: 본발명은현 기상예보시스템인수치예보모델(NWP)을이용한예보가아닌장기간의과거기상DB를실시간수집되는기상정보와의데이터마이닝기법을활용한초단기간기상예보기법에관한것으로, 7일전부터현시점까지의 7일간의기상정보(A)를수집하고, 수집된 A기간의기상정보와과거 10년간누적된기상정보중 A기간과동일한기간(월일)의전후 30일동안의동일시간대데이터를추출하는 1단계; 추출된 B 초기일부터 1일간격으로 7일간의기상정보와 A기간의기상정보와의피어슨상관분석을실시하여 60개기간중 가장상관계수가높은 3개의기간을추출하고이를평균(C)하는 2단계; C의기상정보를활용하여현시점이후 1~10시간에대한초단기예보를생산하는 3단계; 를통해기존의수치예보모델에서기상예보를생산하기위한장비리소스와모델수행시간측면에서의한계점을보완하여저비용으로신속하게초단기예보를제공한다.

    Abstract translation: 本发明与使用数值天气预报(NWP)的预测不同,当前天气预报系统涉及使用长期过去天气数据库的数据挖掘技术的最短期天气预报系统和收集的天气信息 包括:将7天天气信息(A)从7天前收集到当前位置的第一步,并在相同时间段(月,日)之前和之后提取相同时区的数据约30天, 作为收集期间天气信息(A)和过去十年积累的天气信息的期间(A); 在提取的初始日(B)与1天的间隔的7天天气信息和周期(A)的天气信息之间进行Pearson相关分析的第二步,提取具有最高相关系数的3个周期 60个周期,平均周期(C); 使用来自平均周期(C)的天气信息的第三步骤,并且在当前点之后产生1至10小时的最短期天气预报。 通过上述步骤,本发明可以通过通过常规数字天气预报和模型执行时间来补偿用于产生天气预报的装置资源的限制,以低成本立即提供最短期天气预报。

    라디오존데 실시간 위치 표현 방법 및 시스템
    123.
    发明公开
    라디오존데 실시간 위치 표현 방법 및 시스템 无效
    实时放射性核素位置呈现方法与系统

    公开(公告)号:KR1020150064820A

    公开(公告)日:2015-06-12

    申请号:KR1020130149605

    申请日:2013-12-04

    CPC classification number: Y02A90/14 G01W1/08 G01W2201/00

    Abstract: 라디오존데실시간위치표현방법및 시스템이제공된다. 본발명의실시예에따른라디오존데위치표현방법은, 라디오존데의위치데이터와수집데이터를획득하여 3D 지도에라디오존데의위치를표시하고수집데이터를부가적으로제공한다. 이에의해, 기상관련사용자들이소유하고있는스마트기기또는컴퓨터를통해라디오존데의실시간위치및 해당위치에서의수집데이터를모니터링하고활용할수 있게된다.

    Abstract translation: 提供了一种实时无线电探空仪位置呈现方法及其系统。 根据本发明的实施例,无线电探空仪位置呈现方法获得无线电探空仪的位置数据和收集数据,以在三维地图上呈现无线电探空仪的位置,并另外提供收集数据。 因此,通过与天气相关的用户的智能设备或计算机可以监视和利用无线电探空仪的实时位置和相关位置中的收集数据。

    유사태풍분석 예측 시스템 및 이를 이용한 유사태풍분석 예측 방법
    124.
    发明公开
    유사태풍분석 예측 시스템 및 이를 이용한 유사태풍분석 예측 방법 有权
    模拟台式分析预测系统及其仿真分析预测方法

    公开(公告)号:KR1020150054146A

    公开(公告)日:2015-05-20

    申请号:KR1020130136195

    申请日:2013-11-11

    Inventor: 이동현

    CPC classification number: G06Q50/26 G01W1/10 G01W2201/00

    Abstract: 유사태풍분석예측시스템및 이를이용한유사태풍분석예측방법을개시한다. 상기유사태풍분석예측시스템은외부로부터태풍에대한실측정보를수신하는태풍정보실측부(110); 과거에발생된태풍의바람장정보, 이동경로정보, 이동방향정보, 중심기압정보및 상기태풍의바람장정보, 이동경로정보, 이동방향정보, 중심기압정보를토대로생성된복수개의태풍모형들을저장한태풍정보 DB(130); 상기태풍정보실측부로부터제공된상기태풍에대한실측정보로부터바람장, 이동경로, 이동방향, 중심기압을기 설정된시간단위로산출하는태풍정보산출부(120); 상기태풍정보 DB에저장된바람장정보, 이동경로정보, 이동방향정보, 중심기압정보와상기태풍정보산출부에서산출된정보를비교한후, 상관도분석을통해각각의개별유사도를판단한후, 상기개별유사도판단부에서제공된개별유사도에따라상기바람장정보, 이동경로정보, 이동방향정보, 중심기압정보각각의변동가중치를부여하고, 상기변동가중치부의결과값에상응하는태풍정보와매칭되는태풍정보를상기데이터베이스내에저장된복수개의태풍모형에서선택하는유사태풍비교처리부(140); 및상기개별유사도판단부, 상기변동가중치부, 상기매칭부각각의결과값을수치화하여외부에표시하는정보표시부(150)를포함한다.

    Abstract translation: 披露了类似的台风分析预报系统和类似的台风分析预测方法。 类似的台风分析预报系统包括:台风信息测量单元(110)从外部接收关于台风的实际测量信息; 存储有过去台风的风场信息的台风信息DB(130),移动路线信息,移动方向信息,中央压力信息以及基于风场信息产生的多个台风模式,移动路线信息,移动方向信息, 和中央压力信息; 台风信息输出单元,根据由台风信息测量单元提供的关于台风的实际测量信息,以预定时间单位输出风场,移动路线,移动方向和中心压力; 将台风信息DB中存储的风场信息,移动路线信息,移动方向信息和中央压力信息与台风信息输出单元输出的输出信息进行比较的类似的台风比较处理单元(140) 通过相关图分析确定每个因素的个体相似度,根据个体相似度提供的个体相似度,对包括风场信息,移动路线信息,移动方向信息和中心压力信息的每个信息应用改变权重 确定单元,并且从存储在数据库中的多个台风模式中选择与对应于改变权重单元的结果值的台风信息相匹配的台风信息; 以及信息显示单元,显示个人相似性确定单元,改变权重单元和匹配单元的结果值作为数字化形式。

    실시간 앙상블 가뭄전망정보 관리방법
    125.
    发明授权
    실시간 앙상블 가뭄전망정보 관리방법 有权
    管理实时干预前景信息的方法

    公开(公告)号:KR101440932B1

    公开(公告)日:2014-09-25

    申请号:KR1020140005358

    申请日:2014-01-16

    Inventor: 배덕효 손경환

    CPC classification number: G06Q50/26 G01W1/02 G01W1/10 G01W2201/00

    Abstract: A real-time ensemble drought forecast information management method according to an embodiment of the present invention may comprise a step of selecting the number of ensemble members for drought forecasts, a step of producing multiple pieces of ensemble drought forecast information, and a step of evaluating the pieces of ensemble drought forecast information, wherein the management method produces and evaluates ensemble drought forecast information by using a real-time drought monitoring and forecast system. By configuring as above, a drought forecast system can be converted from a single system into an ensemble system, and drought forecast information can be produced in real time not only in drought monitoring.

    Abstract translation: 根据本发明的实施例的实时综合干旱预报信息管理方法可以包括选择用于干旱预报的合奏成员数量的步骤,产生多条合奏干旱预报信息的步骤,以及评估步骤 综合干旱预报信息,其中管理方法通过实时干旱监测和预报系统生成和评估综合干旱预报信息。 通过配置,干旱预报系统可以从单一系统转换为整体系统,干旱预报信息不仅可以在干旱监测中实时生成。

    오염관리 시스템
    126.
    发明公开
    오염관리 시스템 有权
    污染管理系统

    公开(公告)号:KR1020140058728A

    公开(公告)日:2014-05-15

    申请号:KR1020120124142

    申请日:2012-11-05

    Applicant: 안산시

    CPC classification number: G06Q50/26 G01W1/10 G01W2201/00 H04N7/18 H04Q2209/43

    Abstract: The present invention relates to a contamination management system. The contamination management system according to the embodiment of the present invention includes: one or more contamination state sensing units which transmit collected contamination information to the outside; a weather information management unit which stores weather information; and a central control unit which manages the contamination information and the weather information about a corresponding region received from the contamination state sensing unit and the weather information management unit, predicts the change of the contamination state of the corresponding region, and transmits the predicted information to the corresponding region.

    Abstract translation: 本发明涉及污染管理系统。 根据本发明实施例的污染物管理系统包括:一个或多个污染状态检测单元,其将收集的污染信息传送到外部; 天气信息管理单元,其存储天气信息; 以及中央控制单元,其管理从污染状态感测单元和天气信息管理单元接收的关于相应区域的污染信息和天气信息,预测相应区域的污染状态的变化,并将预测信息发送到 相应的区域。

    환경 모니터링 시스템
    127.
    发明公开
    환경 모니터링 시스템 有权
    环境监测系统

    公开(公告)号:KR1020140058727A

    公开(公告)日:2014-05-15

    申请号:KR1020120124141

    申请日:2012-11-05

    Applicant: 안산시

    CPC classification number: G06Q50/26 G01W1/10 G01W2201/00

    Abstract: The present invention relates to an environment monitoring system, including: a fixed measurement unit for sensing environmental state information in the atmosphere of a corresponding area by being installed in a facility or a structure; a movable measurement unit for sensing the environmental state information in the atmosphere for a movement section by being installed in a moving object; and a control server which controls the fixed measurement unit and the movable measurement unit, and receives the environmental state information sensed from the fixed measurement unit and the movable measurement unit. By this, the system can grasp the density of pollutants more rapidly, by sampling and analyzing a specimen on the spot in real-time, and can realize an effective and systematic management method about the pollutants on the basis of the same. Also, the system of the present invention can realize efficient environmental state sensing by predicting the atmosphere pollution state and the pollution diffusion range etc synthetically by measuring weather data such as wind direction, wind velocity, temperature and humidity which are most important elements in diffusion of the pollutants in the atmosphere by using a meteorological equipment of the fixed measurement unit and the movable measurement unit. Also, the system of the present invention can manage a bad smell pollution area by transmitting the pollutants state information measured from the movable measurement unit and the fixed measurement unit to the control server through a network in real-time, and calculating scientific statistics by storing and analyzing the measurement information collected in real-time, and can realize more efficient measurement and management, in establishing a policy for bad smell management.

    Abstract translation: 环境监测系统技术领域本发明涉及一种环境监测系统,包括:固定测量单元,用于通过安装在设施或结构中来检测相应区域的大气中的环境状态信息; 可移动测量单元,用于通过安装在移动物体中来检测运动部分的大气中的环境状态信息; 以及控制服务器,其控制固定测量单元和可移动测量单元,并且接收从固定测量单元和可移动测量单元感测的环境状态信息。 系统可以通过实时对现场样本进行抽样分析,更快地掌握污染物的密度,并能够对污染物进行有效的系统管理。 此外,本发明的系统还可以通过测量诸如风向,风速,温度和湿度等天气数据来综合地预测大气污染状态和污染扩散范围等来实现有效的环境状态感知,这些天气数据是扩散中最重要的元素 通过使用固定测量单元和可移动测量单元的气象设备对大气中的污染物。 此外,本发明的系统可以通过网络实时地将从可移动测量单元和固定测量单元测量的污染物状态信息传输到控制服务器来管理不良气味污染区域,并通过存储来计算科学统计 分析实时收集的测量信息,实现更有效的测量和管理,制定不良气味管理政策。

    지상기온 산출 시스템 및 그 방법
    128.
    发明公开
    지상기온 산출 시스템 및 그 방법 有权
    表面温度计算系统及其方法

    公开(公告)号:KR1020140058255A

    公开(公告)日:2014-05-14

    申请号:KR1020120125043

    申请日:2012-11-06

    Inventor: 오재호 정유림

    CPC classification number: G06Q50/26 G01W1/10 G01W2201/00 G06F17/10

    Abstract: The present invention relates to a system and a method for calculating a surface temperature and, more specifically, to a system and a method for calculating a surface temperature, which generate detailed surface temperature forecasts for the Korean Peninsula by considering a temperature lapse rate based on a high-resolution topography with a surface temperature prediction of the global model. The system and the method for calculating a surface temperature of the present invention can calculate a detailed quantitative surface temperature even if the global model is reduced to a high-resolution small scale model.

    Abstract translation: 本发明涉及一种用于计算表面温度的系统和方法,更具体地,涉及一种用于计算表面温度的系统和方法,其通过考虑基于以下的温度下降速率来生成朝鲜半岛的详细表面温度预测 具有全球模型表面温度预测的高分辨率地形。 本发明的系统和计算表面温度的方法即使将全局模型降低到高分辨率小尺度模型也可以计算详细的定量表面温度。

    고해상도 격자형 미래기후변화 시나리오 자료 생성 방법
    129.
    发明授权
    고해상도 격자형 미래기후변화 시나리오 자료 생성 방법 有权
    基于估计的估计模型的方法

    公开(公告)号:KR101335078B1

    公开(公告)日:2013-12-03

    申请号:KR1020120107237

    申请日:2012-09-26

    CPC classification number: Y02A90/16 G06F17/5009 G01W1/00 G01W2201/00 G06F17/10

    Abstract: A method for generating scenario data of high resolution grid on future climatic change according to the present invention comprises the steps of: generating observed climate data of high resolution grid by applying collected current climate data to an MK-PRISM model; calculating an observed climate value in a day by using the generated observed climate data of high resolution grid; generating current climate data of high resolution grid and future climate data by objectively analyzing the current climate data and future climate data simulated in a regional climate model; calculating a model climate value in a day by using the generated current climate data of high resolution grid; generating the variation of a future climate scenario in the regional climate model by using the calculated model climate value; combining the calculated observed climate value and the generated future climate scenario variation; and performing climatological correction by each variable of combined results. According to the present invention, the method is capable of resolving solving systematic errors and seasonal variations in a climatic change scenario data of low resolution simulated in the regional climate model and providing reliable information by generating future climatic change scenario data of high resolution grid in which climate properties are reflected according to the high resolution geographical information greater than in a range of 1 km. [Reference numerals] (AA) Start;(BB) End;(S101) Generating observed climate data of high resolution grid by using a PRISM model;(S102) Calculating observed climate data by using the observed climate data of high resolution grid;(S103) Generating current climate data and future climate data of high resolution grid by using the objective analysis of current climate data and future climate data discussed at a regional climate model;(S104) Calculating a model climate value by using the generated current climate data and future climate data of high resolution grid;(S105) Generating the variation amount of a future climate scenario of the regional climate model by using the calculated model climate value;(S106) Combining the observed climate value and the variation amount of the future climate scenario;(S107) Correcting each variable of the combined result climatologically

    Abstract translation: 根据本发明的用于生成未来气候变化的高分辨率网格的场景数据的方法包括以下步骤:通过将收集的当前气候数据应用于MK-PRISM模型来产生高分辨率网格的观测气候数据; 通过使用生成的高分辨率网格观测气候数据计算一天观测到的气候值; 通过客观分析区域气候模式模拟的当前气候数据和未来气候数据,形成高分辨率电网和未来气候数据的当前气候数据; 通过使用高分辨率网格生成的当前气候数据计算一天的气候模式值; 通过使用计算的模型气候值,在区域气候模式中产生未来气候情景的变化; 将观测到的气候值与产生的未来气候情景变化相结合; 并通过组合结果的每个变量执行气候校正。 根据本发明,该方法能够解决区域气候模型模拟的低分辨率气候变化情景数据中的系统误差和季节变化,并通过生成高分辨率网格的未来气候变化情景数据提供可靠信息,其中 气候属性根据高分辨率地理信息反映,大于1公里的范围。 (附图标记)(AA)开始;(BB)结束;(S101)使用PRISM模型生成高分辨率网格观测气候数据;(S102)使用观测到的高分辨率网格气候数据计算观测气候数据;( S103)通过对目前气候数据和区域气候模式中讨论的未来气候数据的客观分析,生成目前气候数据和高分辨率电网未来气候数据;(S104)利用现有的气候数据计算气候模型, 高分辨率电网的未来气候数据;(S105)利用计算出的模型气候值,生成区域气候模式未来气候情景的变化量;(S106)将观测到的气候值与未来气候情景的变化量相结合 ;(S107)在气候学上校正组合结果的每个变量

    지상 기상관측 자료의 수평 기상장 산출 시스템 및 그 방법
    130.
    发明授权
    지상 기상관측 자료의 수평 기상장 산출 시스템 및 그 방법 有权
    基于地基的气象数据的水平场检测系统和方法

    公开(公告)号:KR101285804B1

    公开(公告)日:2013-07-12

    申请号:KR1020120009556

    申请日:2012-01-31

    CPC classification number: Y02A90/15 G01W1/02 G01W2201/00 G06Q50/26

    Abstract: PURPOSE: A horizontal field calculation system of weather observation data and a method thereof are provided to convert a transverse Mercator (TM) coordinate into a latitude longitude coordinate, express weather field contour on a map, and extract the same latitude weather variable change of constant intervals. CONSTITUTION: A weather field topography generation module (100) generates topography data of a domain by reprocessing a weather field which is extracted from a geo statistical (GS) program. A weather field generation module (200) generates a weather field by using the extracted weather field and the topography data. The weather field topography generation module includes a coordinate system conversion module (110) and a topography data generation module (120). The coordinate system conversion module converts TM coordinate information of an X axis and a Y axis for a grid in a domain which is included in a file of the GS program from a TM coordinate system to a latitude longitude coordinate system. The topography data generation module generates topography data corresponding to latitude longitude coordinate information by using topographic maps (TOPO) information. [Reference numerals] (100) Weather field topography generation module; (110) Coordinate system conversion module; (120) Topography data generation module; (200) Weather field generation module; (210) 2D weather material extraction module; (220) Weather field boundary generation module; (230) Weather field boundary storage module; (300) Weather variable extraction module; (310) Equivalent interval setting module; (320) Same latitude lattice setting module; (330) Same latitude lattice point weather variable extraction module; (340) Weather variable variation graph generation module; (350) Weather variable variation graph storage module

    Abstract translation: 目的:提供天气观测数据的水平场计算系统及其方法,将横向墨卡托(TM)坐标转换为纬度经度坐标,在地图上表达天气场轮廓,并提取相同的纬度天气变化常数 间隔。 构成:天气场地貌生成模块(100)通过再处理从地理统计(GS)程序提取的气象场来生成域的地形数据。 天气场产生模块(200)通过使用提取的气象场和地形数据产生气象场。 气象场地形生成模块包括坐标系转换模块(110)和地形数据生成模块(120)。 坐标系转换模块将包括在GS程序的文件中的域中的网格的X轴和Y轴的TM坐标信息从TM坐标系转换为纬度经度坐标系。 地形数据生成模块通过使用地形图(TOPO)信息生成与纬度经度坐标信息对应的地形数据。 (附图标记)(100)气象场地形生成模块; (110)坐标系转换模块; (120)地形数据生成模块; (200)天气场生成模块; (210)2D天气材料提取模块; (220)天气场边界生成模块; (230)天气场边界储存模块; (300)天气变量提取模块; (310)等效间隔设定模块; (320)同纬度网格设定模块; (330)纬度相同的点阵天气变量提取模块; (340)天气变量变化图生成模块; (350)天气变量变化图存储模块

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