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LARA: A location-based and augmented reality assistive system for underground utilities' networks through GNSS

机译:LARA:通过GNSS为地下公用事业网络提供基于位置的增强现实辅助系统

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In everyday life, in advance to an excavation project, there is an actual prerequisite and a by regulation in many countries, to pinpoint all the underground utilities located in the project's area. In addition, it is so crucial for the clients, the public and private utilities, to have a real representation of the water, electricity, gas, sewerage, etc. underground networks. As the practice shows, there is a constant and growing demand for the accurate positioning of the underground utilities in order to facilitate both the utilities' and the construction companies avoid damages to the existing infrastructure. Such a damage may cause a loss of thousands of euros. It is true that many problems may arise when the digging machine operator starts digging the ground, but the most dangerous is the gas line explosions, fires or even electrocution in electric lines, water lines bursts, etc. This can be very dangerous for all the field workers in the project's area but also for the property owners; even for the people just passing nearby the area. At the same time, such a development is extremely costly either for the public or the private company or for both. For years now there is a tangible market request for solutions that are able to effectively handle underground utilities' geospatial data and support the missions of utilities and construction companies in the real working environment. Innovative and edge technologies such as Global Navigation Satellite Systems (GNSS), sensors, Geographic Information Systems (GIS) and geodatabases, Augmented and Virtual Reality (AR/VR) can be used for monitoring, documenting and managing the utility-based geospatial and other data. In addition to this, these technologies are able to offer an intuitive 3D augmented visualization and navigation/positioning environment that can support anyone interested in the field. LARA project, a H2020 co-funded project by the European Commission, eavesdrops these market needs and now is developing a software and hardware-based system called LARA. Understanding the real market necessities of the utilities and construction players, a group of partners, from academia and research, SMEs and end users, is implementing this multidisciplinary project. Within LARA project, the consortium partners are evolving a mobile (tablet) device to support the utility management professionals and workers on the field and under real conditions. The LARA hand-held and mobile device is incorporating state-of-the-art technologies in the domain of positioning and sensors (GNSS), AR and 3D GIS geo-databases. The vision of LARA system is to guide the utility field workers in their daily business; to help them ‘see’ beneath the ground by rendering the complexity of the 3D models of the underground grid such as water, gas, sewerage and electricity. The notion is to integrate the novel components of existing technologies so as to develop an integrated navigation/positioning and information system which coordinates GNSS, AR, 3D GIS and geodatabases on a mobile platform for monitoring, documenting and managing utility infrastructures on-site. In practice, the first prototype is ready and the forthcoming period it will be tested in the real environment. The ability and profits from the LARA system use, will be tested in two case studies scheduled during project lifetime. The two pilot applications are scheduled in Kozani (Greece) and the United Kingdom (Birmingham) with various underground utilities. The methodology for system testing has already been defined while the first results from the pilot application (Kozani, Greece) are coming the forthcoming period.
机译:在日常生活中,开挖项目之前,在许多国家/地区都有实际的先决条件和法规,以查明位于项目区域的所有地下公用事业。此外,对于客户,公共和私人公用事业来说,拥有水,电,气,污水等地下网络的真实代表至关重要。如实践所示,对地下公用事业的准确定位存在不断增长的需求,以便利公用事业公司和建筑公司避免破坏现有基础设施。这种损坏可能会造成数千欧元的损失。的确,当挖掘机操作员开始挖掘地面时,可能会出现许多问题,但最危险的是燃气管线爆炸,火灾甚至电气线路中的触电死亡,供水管线爆裂等。这对于所有人员来说都是非常危险的。项目区域内的现场工作人员,也包括物业所有者的现场工作人员;即使是刚刚经过该地区的人。同时,对于公众或私人公司或两者而言,这样的发展都是极其昂贵的。多年来,市场对解决方案有切实的市场要求,这些解决方案能够有效处理地下公用事业的地理空间数据,并在实际工作环境中支持公用事业和建筑公司的使命。全球导航卫星系统(GNSS),传感器,地理信息系统(GIS)和地理数据库,增强和虚拟现实(AR / VR)等创新和前沿技术可用于监视,记录和管理基于实用程序的地理空间以及其他数据。除此之外,这些技术还能够提供直观的3D增强的可视化以及导航/定位环境,可以为对该领域感兴趣的任何人提供支持。 LARA项目是由欧盟委员会共同资助的H2020项目,可以窃听这些市场需求,现在正在开发一种基于软件和硬件的系统,称为LARA。为了了解公用事业和建筑业者的实际市场需求,来自学术界和研究机构,中小企业和最终用户的一组合作伙伴正在实施此多学科项目。在LARA项目中,财团合作伙伴正在开发一种移动(平板电脑)设备,以支持实地和实际条件下的公用事业管理专业人员和工人。 LARA手持式和移动设备在定位和传感器(GNSS),AR和3D GIS地理数据库领域整合了最新技术。 LARA系统的愿景是指导公用事业现场工作者的日常业务;通过渲染地下网格的3D模型(例如水,天然气,污水和电力)的复杂性来帮助他们“看到”地下。想法是集成现有技术的新颖组件,以便开发一个集成的导航/定位和信息系统,该系统在移动平台上协调GNSS,AR,3D GIS和地理数据库,以在现场监视,记录和管理公用事业基础设施。实际上,第一个原型已经准备就绪,即将在实际环境中进行测试。 LARA系统使用的能力和收益将在项目生命周期内安排的两个案例研究中进行测试。这两个试点应用程序计划通过各种地下设施在科萨尼(希腊)和英国(伯明翰)使用。在试验性应用程序(希腊科扎尼)的第一个结果即将到来之时,已经定义了系统测试的方法。

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