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    • 1. 发明授权
    • 수준측량을 위한 측지측량용 토털스테이션 장치
    • 用于校平的大地测量全站仪设备
    • KR101813563B1
    • 2018-01-30
    • KR1020170090428
    • 2017-07-17
    • 태양정보시스템(주)
    • 박숙희
    • G01C5/02G01C15/00G01S5/02F16M11/32
    • G01C5/02F16M11/32G01C15/00G01S5/02
    • 본발명은수준측량을위한측지측량용토털스테이션장치에관한것으로, 대차를구비하여토털스테이션을장착한상태에서기계수가직접견인하거나차량에의하여견인하여간편하게이동할수 있으며, 하나의관측점에서다음관측점까지의이동을신속하게할 수있으며, 수평유지수단을구비하여토털스테이션이자동적으로수평을유지하게됨과아울러지면에견고하고안정되게고정되어측지측량작업을효율적으로수행할수 있도록함과아울러보호수단을구비하여토털스테이션장치가넘어지더라도토털스테이션을보호할수 있고, 강우또는강설시토털스테이션을보호할수 있음은물론토털스테이션에대한좌표입력과측량결과확인이가능하게되도록한 것이다.
    • 本发明涉及一种总站装置用于调平的测地调查,并简单地通过由车辆牵引,在以下视点的视点移动kkajiui设置有配备了总台机器可以直接从hansangtae牵引平衡或移动 并提供一个水平保持单元,用于自动保持全站仪的水平位置,并牢固牢固地固定在地面上,从而可以高效地执行大地测量操作, 即使在电台翻滚的情况下,它也可以保护全站仪,全站仪在降雨或降雪的情况下可以得到保护,并且可以协调全站仪的输入和测量结果。
    • 2. 发明授权
    • 원격으로 오류 수정이 가능한 수치지도 시스템 및 이를 이용한 수치지도 제작방법
    • 数字地图系统,用于纠正错误和使用它的制造方法
    • KR101228292B1
    • 2013-01-31
    • KR1020120076065
    • 2012-07-12
    • 태양정보시스템(주)
    • 조성환
    • G06Q50/10G06Q50/30G09B29/00
    • G06Q50/10G06Q50/30G09B29/00
    • PURPOSE: A digital map system for remotely modifying an error and a digital map manufacturing method using the same are provided to significantly reduce an error rate of an error of digital map manufacture by overlapped remote control while performing quick remote control. CONSTITUTION: Digital map modules(120) receive digital information to make a digital map. A central control module(110) senses errors of the digital map modules to generate warning information. Remote control units(140) generate error codes corresponding to the errors. The remote control units transmits the generated error codes to a personal terminal(200). [Reference numerals] (110) Central control module; (120) Digital map module; (140) Remote control unit; (AA) Network; (BB) Remote control command
    • 目的:提供用于远程修改错误的数字地图系统和使用该数字地图制造方法的数字地图制造方法,以便在执行快速遥控时显着降低重叠遥控器上的数字地图制作错误的错误率。 规定:数字地图模块(120)接收数字信息以制作数字地图。 中央控制模块(110)感测数字地图模块的错误以产生警告信息。 遥控单元(140)生成与错误对应的错误代码。 遥控单元将生成的错误代码发送到个人终端(200)。 (附图标记)(110)中央控制模块; (120)数字地图模块; (140)遥控器; (AA)网络; (BB)远程控制命令
    • 3. 发明授权
    • 휴대 단말기를 이용하여 구조물의 크기를 측정하는 측량시스템 및 측량 방법
    • 使用便携式终端可以测量结构尺寸的检测系统和方法
    • KR100878779B1
    • 2009-01-14
    • KR1020080026254
    • 2008-03-21
    • 태양정보시스템(주)
    • 조성환
    • H04W4/00G06Q50/10H04B1/40
    • A measurement system for measuring the size of a structure by using a portable terminal and a measurement method thereof are provided to perform the measurement more quickly and freely. A portable terminal(10) comprises a photographing unit(11), a focal distance calculating unit(12), a distance measuring unit(13) and a data transmitting unit(14). The photographing unit takes the picture of a structure to obtain a structure image. The focal distance calculating unit calculates the focal distance of the photographing unit, namely, the distance from a lens of the photographing unit to an image sensor. The distance measuring unit measures the distance from the photographing unit to the structure. The data transmitting unit transmits data obtained from the portable terminal or data stored in the terminal to a measurement server(20). The measurement server comprises an image processing unit(21), a size calculating unit(22) and a data receiving unit(23). The image processing unit extracts an edge from the structure image which the portable terminal provides, and then detects the length of the extracted edge. The size calculating unit calculates the size of the structure based on the output data of the image processing unit and the data provided from the terminal.
    • 提供了一种用于通过使用便携式终端来测量结构的尺寸的测量系统及其测量方法,以更快速和自由地执行测量。 便携式终端(10)包括拍摄单元(11),焦距计算单元(12),距离测量单元(13)和数据发送单元(14)。 拍摄单元拍摄结构的图片以获得结构图像。 焦距计算单元计算拍摄单元的焦距,即从拍摄单元的镜头到图像传感器的距离。 距离测量单元测量从拍摄单元到结构的距离。 数据发送单元将从便携式终端获得的数据或存储在终端中的数据发送到测量服务器(20)。 测量服务器包括图像处理单元(21),尺寸计算单元(22)和数据接收单元(23)。 图像处理单元从便携式终端提供的结构图像中提取边缘,然后检测提取的边缘的长度。 尺寸计算单元基于图像处理单元的输出数据和从终端提供的数据来计算结构的尺寸。
    • 6. 发明授权
    • 측량 속성 정보가 자동으로 변경되는 측량 시스템
    • 具有自动变更功能的调查系统
    • KR101223252B1
    • 2013-01-17
    • KR1020120076068
    • 2012-07-12
    • 태양정보시스템(주)
    • 조성환
    • G01S19/12
    • PURPOSE: A measuring system changing measurement property data automatically by using a VRS server is provided to measure a precise position by using an indication object, a building, the position of an underground utilities, and pre-recorded error data even in case of using a GPS receiving module. CONSTITUTION: A measuring system changing measurement property data automatically comprises the following steps: A measurement terminal(100) comprises a communication module(110), a GPS module(120), and a laser distance measuring module(130). The communication module transmits and receives measurement property data. A GPS module produces the position of the measurement terminal from a GPS satellite. The laser distance measuring module obtains height data of the measurement terminal. A virtual reference point server(200) comprises A measurement data extracting unit(210), an integrating unit(220), an effective value selection module(230), an average calculation module(240), and a standard of deviation calculation module(250). The measurement data extracting unit distinguishes the measurement data projected onto a touch screen module, and extracts the measurement data in each domain. The integrating unit integrates the position data with each of the matching measurement data. The effective selection module receives the position data about a repeatedly measured fixed object of the measurement terminal, and selects values within a pre-set range of error as effective position data values. The average calculation module calculates an average value to the effective position data selected from the effective selection module. The standard deviation calculation module produces a standard deviation by using the average position data value produced in the average calculation module, and the effective position data measured values. [Reference numerals] (110) Communication module; (120) GPS module; (130) Laser distance measuring module; (140) Driving distance measuring module; (150) Touch screen module; (160) Automatic updating module; (210) Measurement data extracting unit; (220) Integrating unit; (230) Effective value selection module; (240) Average calculation module; (250) Standard deviation calculation module; (260) Measurement data management database unit; (AA) Network
    • 目的:通过使用VRS服务器自动更改测量属性数据的测量系统用于通过使用指示对象,建筑物,地下工具的位置和预先记录的错误数据来测量精确位置,即使在使用 GPS接收模块。 一种测量终端(100),包括通信模块(110),GPS模块(120)和激光距离测量模块(130)。 通信模块发送和接收测量属性数据。 GPS模块从GPS卫星产生测量终端的位置。 激光距离测量模块获取测量终端的高度数据。 虚拟参考点服务器(200)包括测量数据提取单元(210),积分单元(220),有效值选择模块(230),平均计算模块(240)和偏差计算模块标准( 250)。 测量数据提取单元区分投影到触摸屏模块上的测量数据,并提取每个域中的测量数据。 积分单元将位置数据与每个匹配测量数据进行集成。 有效选择模块接收关于测量终端的重复测量的固定对象的位置数据,并且将预设误差范围内的值选择为有效位置数据值。 平均计算模块计算从有效选择模块中选择的有效位置数据的平均值。 标准差计算模块通过使用平均计算模块中生成的平均位置数据值和有效位置数据测量值来产生标准偏差。 (附图标记)(110)通信模块; (120)GPS模块; (130)激光测距模块; (140)行驶距离测量模块; (150)触摸屏模块; (160)自动更新模块; (210)测量数据提取单元; (220)集成单元; (230)有效值选择模块; (240)平均计算模块; (250)标准差计算模块; (260)测量数据管理数据库单元; (AA)网络
    • 7. 发明授权
    • 항공사진의 도화 및 고도를 이용한 주거용 구조물의 분류방법
    • 住房建筑分类方法使用空间照片和高度绘图
    • KR100842011B1
    • 2008-06-27
    • KR1020070060448
    • 2007-06-20
    • 태양정보시스템(주)
    • 조성환
    • G06F17/40G06F19/00G06Q50/10
    • G06F17/30858G06F17/30241G06F17/3082
    • A method for classifying housing constructions by plotting an aerial photograph and using an altitude is provided to offer information such as a development status, a residential type, and a residential population of a resident area by constructing a structure image database and an image attribute database after classification of the residential area and using the altitude of the housing constructions. An image of a predetermined area is captured by using an aircraft equipped with an altimeter and an aerial camera. A database is constructed by assigning a search index to the captured image, setting a target area to classify housing constructions in the captured image, and inputting attribute information of the captured image through a user interface. A computer removes noise from the target area, characterizes a pattern and an altitude of the housing constructions included in the target area, and normalizes brightness of the housing constructions. The computer classifies the preprocessed housing constructions based on the pattern, the brightness, and the altitude. The classified housing constructions are stored in a housing construction image database based on the search index. The housing constructions include a single house, row houses, and an apartment.
    • 提供一种通过绘制航空照片和使用高度对住房建筑进行分类的方法,通过构建结构图像数据库和图像属性数据库,提供驻留区域的开发状态,住宅类型和住宅种类等信息 住宅区分类和房屋建筑高度的使用。 通过使用配备有高度计和航空照相机的飞行器来捕获预定区域的图像。 通过为捕获的图像分配搜索索引来设置数据库,设置目标区域以对拍摄图像中的房屋构造进行分类,以及通过用户界面输入捕获图像的属性信息。 计算机从目标区域去除噪声,表征包括在目标区域中的壳体结构的图案和高度,并且使住房结构的亮度正常化。 计算机根据模式,亮度和高度对预处理的房屋结构进行分类。 分类的房屋结构根据搜索索引存储在房屋建筑图像数据库中。 住房建筑包括单一房屋,排屋和公寓。
    • 9. 发明授权
    • 3차원 수치지도를 제작하기 위하여 항공사진 DB로부터건물의 3차원 데이터를 획득하는 방법
    • 从摄影数据库获取三维建筑数据的方法
    • KR100782152B1
    • 2007-12-07
    • KR1020070075977
    • 2007-07-27
    • 태양정보시스템(주)
    • 조성환
    • G06T17/05G06T17/00
    • G06T17/05G06T2207/10032
    • A method for obtaining 3-dimensional building data from an aerial photograph database for manufacturing a 3-dimensional digital map is provided to obtain the 3-dimensional data of all buildings easily on an aerial photograph and use the obtained 3-dimensional building data effectively in manufacturing the 3-dimensional digital map. From an aerial photograph database, a photographing point and reference point of an aerial photograph, and a first lower end point, a first projection point and a second projection point for a specific building(20) are extracted. By using the extracted coordinates, coordinates for a second lower end point, a first upper end point and a second upper end point of the specific building are calculated. After that, the coordinates for the first lower end point, the first projection point and the second projection point of the specific building and coordinates for the second lower end point and the first and second upper end points of the specific building are stored in a building data database.
    • 提供从用于制造三维数字地图的航空照片数据库获得三维建筑物数据的方法,以便在航空照片上容易地获得所有建筑物的三维数据,并且有效地使用获得的三维建筑数据 制造三维数字地图。 从航空照片数据库中,提取空中照片的拍摄点和参考点,以及用于特定建筑物(20)的第一下端点,第一投影点和第二投影点。 通过使用提取的坐标,计算特定建筑物的第二下端点,第一上端点和第二上端点的坐标。 之后,特定建筑物的第一下端点,第一投影点和第二投影点的坐标以及特定建筑物的第二下端点和第一和第二上端点的坐标存储在建筑物中 数据库。
    • 10. 发明授权
    • 측지측량과 동시에 수치지도의 속성자료를 수정할 수 있는측지측량 방법
    • 可以校正数字地图属性数据的地质调查方法
    • KR100782150B1
    • 2007-12-07
    • KR1020070074806
    • 2007-07-25
    • 태양정보시스템(주)
    • 조성환
    • G06Q50/10G01C11/02
    • G01C11/02G06Q50/10
    • A geodetic surveying method capable of correcting attribute data of a digital map simultaneously with a geodetic survey is provided to correct the attribute data without checking agreement of the attribute data through a separate survey by directly using geodetic survey equipment. A GIS(Geographic Information System) server receives the attribute data of a predetermined polygon included in the digital map from a digital map database of the geodetic survey equipment(S31). An attribute data processor of the geodetic survey equipment checks the agreement between the attribute data of the predetermined polygon and field information of a place in which the geodetic survey equipment is placed, and corrects the attribute data based on the information inputted through the input part if the attribute data is not coincident(S33). If an agreement checking value and the attribute data are corrected in the geodetic survey equipment, the corrected attribute data of the predetermined polygon is transmitted to the digital map database of the GIS server(S35).
    • 提供了能够通过大地测量同时校正数字地图的属性数据的大地测量方法,通过直接使用大地测量设备,通过单独的测量来校正属性数据,而无需检查属性数据的一致性。 GIS(地理信息系统)服务器从大地测量设备的数字地图数据库接收数字地图中包含的预定多边形的属性数据(S31)。 大地测量设备的属性数据处理器检查预定多边形的属性数据与放置大地测量设备的场所的场信息之间的一致性,并根据通过输入部分输入的信息来校正属性数据,如果 属性数据不一致(S33)。 如果在大地测量设备中校正了协议检查值和属性数据,则将预定多边形的校正后的属性数据发送到GIS服务器的数字地图数据库(S35)。