会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 41. 发明申请
    • THREE-DIMENSIONAL CARTOGRAPHIC USER INTERFACE SYSTEM
    • 三维卡通用户界面系统
    • WO2006041937A2
    • 2006-04-20
    • PCT/US2005/035858
    • 2005-10-04
    • SOLID TERRAIN MODELINGFAULKNER, Lawrence, G.FISHER, Mark, E.LUTON, Justin
    • FAULKNER, Lawrence, G.FISHER, Mark, E.LUTON, Justin
    • G06F17/00
    • G09B25/06G06T17/05G09B29/001G09B29/10G09B29/12
    • A three-dimensional cartographic computer user interface system for enhancing geo­spatial comprehension and geographic information system user interactivity is disclosed. The system has at least one computer and operating system, user input means, and at least one positionable projection display means, including storage, retrieval and playback control means for the projected content. The system has user input device software responsive to input from at least one user input device which is operable on a three-dimensional user interface surface of the system, and software for the display and control of cartographic-related projected imagery, and software for the display and control of three-dimensional user interface-related content superimposed within the cartographic-related projected imagery. The system includes at least one cartographic map having at least one surface portion which is three-dimensionally shaped to represent topographic terrain of at least one geographical location and optionally includes a substantially planar surface onto which cartographic-related content is projected.
    • 公开了一种用于增强地理空间理解和地理信息系统用户交互性的三维制图计算机用户界面系统。 该系统具有至少一个计算机和操作系统,用户输入装置和至少一个可定位的投影显示装置,包括用于投影内容的存储,检索和重放控制装置。 该系统具有响应于至少一个用户输入设备的输入的用户输入设备软件,其可在系统的三维用户界面上操作,以及用于显示和控制与制图相关的投影图像的软件,以及用于 显示和控制与制图相关的投影图像叠加的三维用户界面相关内容。 该系统包括至少一个制图,其具有至少一个表面部分,其三维成形以表示至少一个地理位置的地形地形,并且可选地包括投影制图相关内容的基本平坦的表面。
    • 46. 发明公开
    • A SYSTEM FOR EVALUATING THE CURRENT EVOLUTIONARY STATUS OF EVENTS OR PROCESSES IN A GEOGRAPHICAL REGION AND FOR GENERATING AND VISUALIZING PREDICTIONS OF THE EVOLUTIONARY DYNAMICS IN TIME AND SPACE
    • 评估系统进化事件或过程的当前状态了地理位置及时空准备和进化动力学的预测可视化
    • EP2652044A1
    • 2013-10-23
    • EP11810818.2
    • 2011-12-16
    • CSI Ricerca & Ambiente SrlBuscema, Paolo Massimo
    • BUSCEMA, Paolo MassimoSCIBETTA, Roberto
    • C09B29/12
    • G09B29/12
    • A system for evaluating the current evolutionary status of events or processes in a geographical region and for generating and visualizing predictions of the evolutionary dynamics in time and space. The said system operates by means of a virtual model which is directed to the simulation of a process or of an event which takes place in a geophysical territory, the territory being described by a two or three dimensional geometrical map, the said virtual model is in the form of a suite of executable programs which can be loaded in the working memory of a processing unit and executed by the said processing unit on demand; a representation of the status and of the evolution of the process at certain time being in the form of a graphical representation displayed on a screen; The event or process which the system evaluates and for which the said system generates and visualizes the evolutionary dynamics in time and space is the landslide in a certain geographical territory for monitoring and prediction giving a strong decision support system to the territorial authority and specialist teams; The computed current condition of the landslide dynamics in whole territory based on the data obtained for certain geographical points distributed on the territory and highlight the said status by means of one or more graphical outputs or the computed evolution of the process or event at a certain time instant is visualized as a grid which is deformed according to the geographical positions of the points in time and which is registered and superimposed to a two or three dimensional map or aerial or satellite image of the territory; the condition of the event or process, namely of the landslide, is determined by means of the displacements measures of certain number of sensors placed on the territory taken at different time.
    • 48. 发明公开
    • Determining elevation values in a geocoding system
    • einem Geokodierungssystem的Bestimmung vonHöhenwerten
    • EP1953730A1
    • 2008-08-06
    • EP07024720.0
    • 2007-12-20
    • Pitney Bowes, Inc.
    • Charlton, Berkley R.Takahashi, David G.Sears, Bryan D.Bourland II, Freddie J.
    • G09B29/12
    • G09B29/12
    • A system and method of determining elevation values includes inputting a location (30) into a geocoding system having a segment data set and determining the closest segment (33) in the data set to the location (30). A data set of elevation data the closest segment is accessed and a determination is made of an elevation value for each of two elevation points (35,36) associated with the closest segment (32). The elevation value of the location (30) is determined based on interpolation of the location (30) in relation to each the two elevation points (35,36) and the elevation value of each of the two elevation points (35,36). The determined elevation value for said input location (30) is output. The offset distance of the location from the closest segment may be determined and a slope applied to the offset distance to determine an elevation gain or loss for the location due to the offset distance of the location from the closest segment.
    • 确定高程值的系统和方法包括将位置(30)输入到具有段数据集的地理编码系统中,并且确定数据集中的最靠近的段(33)到位置(30)。 访问最近的段的高程数据的数据集,并且确定与最近的段(32)相关联的两个高程点(35,36)中的每一个的高程值。 基于位置(30)相对于两个高程点(35,36)中的每一个的高度值和两个高程点(35,36)中的每一个的高程值的内插来确定位置(30)的高程值。 输出所述输入位置(30)的所确定的仰角值。 可以确定位置与最近段之间的偏移距离,并且应用于偏移距离的斜率,以确定由于位置与最近段的偏移距离而导致的位置的高程增益或损失。
    • 50. 发明公开
    • Image processing apparatus, mark drawing method and program thereof
    • Bildverarbeitungsvorrichtung,Markierungsverfahren und entsprechendes Programm
    • EP1746391A1
    • 2007-01-24
    • EP06253760.0
    • 2006-07-18
    • SEGA CORPORATION
    • Fujiwara, Akihito c/o Sega CorporationHayashida, Yasuhiro c/o Sega CorporationAkazawa, Tsutomu c/o Sega CorporationWada, Akira c/o Sega Corporation
    • G01C21/36G08G1/0969
    • G01C21/3638G09B29/12
    • An image processing apparatus is disclosed. The image processing apparatus includes a unit that determines whether a distance (X) between a view point and a two-dimensional object (2a-2c) belongs to any of first through fourth areas (A 1 -A 4 ) which are classified in the order from a shortest distance to a longest distance (L), a unit that sets an image drawing size (S) of the object on the display (1) to be a maximum value (S max ) when the distance is in the first area (A 1 ), a unit that sets the image drawing size of the object on the display to be a value which continuously changes from the maximum value to a minimum value corresponding to the distance when the distance is in the second area (A 2 ), a unit that sets the image drawing size of the object on the display to be a minimum value (S min ) when the distance is in the third area (A 3 ), a unit that sets not to display the object on the display when the distance is in the fourth area (A 4 ), and a unit that two-dimensionally displays the object whose image drawing size (S) is set on the display (1).
    • 公开了一种图像处理装置。 图像处理装置包括确定视点和二维对象(2a-2c)之间的距离(X)是否属于第一至第四区域(A 1 -A 4)中的任一个的单元,其被分类为 从最短距离到最长距离(L)的顺序,将距离在第一区域中的显示器(1)上的对象的图像绘制尺寸(S)设置为最大值(S max)的单位 (A 1),将显示器上的物体的图像尺寸设定为从最大值连续变化到距离为第二区域(A 2)的距离的最小值的单位, ,当距离在第三区域(A 3)中时,将显示器上的对象的图像绘制大小设置为最小值(S min)的单元,设置在显示器上不显示对象的单元 距离在第四区域(A 4)中,以及二维地显示图像的对象的单位 ze(S)被设置在显示器(1)上。