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METHOD FOR VISUALIZATION SAFETY DIAGNOSIS INFORMATION BASED AUGMENTED REALITY OF BRIDGE STRUCTURE AND SYSTEM THEREOF

机译:基于可视化安全诊断信息的桥梁结构增强现实方法及系统

摘要

PURPOSE: the data that a kind of safety check information visualization methods and its system realize real-time monitoring are sent to control centre in the unconfined current time of the related milli of wired or wireless network and position. The Xi System can not only examine whole bridge, but its component and certain points, it passes through sensor important parts or point, should be by safety bridge. Synchronous using GPS, the position which accurately puts a certain sensor increases data accuracy and sends by sensor. Measurement has just become easy examiner and is based on wireless network, such as WCDMA or Wi-Fi network at any given time from any. Moreover, system can even check that those parts can hardly reach under normal circumstances through deployment 3D augmented realities application. ;CONSTITUTION: server extracts mode using one group of internal factor in the database of measurement data, and calculates the bearing capacity of bridge, using certain bridge inspection algorithm. Then, in the database of server analysis weather conditions pattern, estimation is possible to be damaged to bridge due to flood, drought, gales and frost, and is stored in the database. When user select Android OS-based augmented realities (AR) apply mobile device, initialize the application program, and by its basic options, the GPS module of mobile device determines the current location of user. The server being connected with the device, by communication module, user downloads the measurement data of the bridge from server ongoing basis. The state of the AP applied images bridge GPS location and measurement data after the combination on the screen of a 3D AR mobile device. Various sensors are highlighted using display list to be located at the position of bridge using subscriber interface module and inquire user to select one of them. According to the user's choice, using the sensor for showing that details is selected. ;The 2013 of copyright KIPO submissions;[Reference numerals] (1) location sensors; (2) sensor historic and management data; (AA) Android market; (BB) Android applies; (CC) GPS satellite; (DD) RSS data communicates; (EE) GPS coordinate (WGS 84); User (FF) interface; (GG) wire/wireless communication; (HH) date is measured; Sensor positions (II); (JJ) measuring device; (KK) acceleration transducer; (LL) anemovane; (MM) strain sensing device; (NN) temperature and moisture sensors; (OO) displacement sensor
机译:目的:将一种安全检查信息可视化方法及其系统实现的实时监控的数据在有线或无线网络的相关毫安无限制的当前时间和位置发送到控制中心。 Xi系统不仅可以检查整个电桥,而且其组成和某些点,它通过传感器的重要部位或点,都应由安全电桥来完成。使用GPS同步,精确放置某个传感器的位置可以提高数据精度并由传感器发送。测量已经变得很容易了,它基于无线网络,例如WCDMA或Wi-Fi网络,可以随时随地进行测量。此外,系统甚至可以通过部署3D增强现实应用程序检查在正常情况下很难到达那些部分。 ;组成:服务器使用测量数据数据库中的一组内部因素提取模式,并使用某些桥梁检查算法来计算桥梁的承载能力。然后,在服务器分析天气状况模式的数据库中,估计可能会因洪水,干旱,大风和霜冻而损坏桥梁,并将其存储在数据库中。当用户选择基于Android OS的增强现实(AR)应用移动设备时,初始化应用程序,并通过其基本选项,移动设备的GPS模块确定用户的当前位置。与设备连接的服务器通过通讯模块,用户从服务器正在进行的基础上下载网桥的测量数据。在3D AR移动设备的屏幕上进行组合后,AP应用图像的状态将GPS位置和测量数据桥接在一起。使用用户界面模块,使用显示列表突出显示各种传感器,使其位于桥的位置,并询问用户选择其中之一。根据用户的选择,选择用于显示细节的传感器。 ; 2013年版权KIPO提交的文件; [参考数字](1)位置传感器; (2)传感器的历史和管理数据; (AA)Android市场; (BB)适用Android; (CC)GPS卫星; (DD)RSS数据进行通信; (EE)GPS坐标(WGS 84);用户(FF)界面; (GG)有线/无线通讯; (HH)日期被测量;传感器位置(II); (JJ)测量装置; (KK)加速度传感器; (LL)mov烷; (MM)应变感应装置; (NN)温度和湿度传感器; (OO)位移传感器

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