Spatially and geometrically accurate laser scans are essential in modelling infrastructure for applications in civil, mining and transportation. Monitoring of underground or indoor environments such as mines or tunnels is challenging due to unavailability of a sensor positioning framework, complicated structurally symmetric layouts, repetitive features and occlusions. Current practices largely include a manual selection of discernable reference points for georeferencing and coregistration purpose. This study aims at overcoming these practical challenges in underground or indoor laser scanning. The developed approach involves automatically and uniquely identifiable three dimensional unique identifiers (3DUIDs) in laser scans, and a 3D registration (3DReG) workflow. Field testing of the method in an underground tunnel has been found accurate, effective and efficient. Additionally, a method for automatically extracting roadway tunnel profile has been exhibited. The developed 3DUID can be used in roadway profile extraction, guided automation, sensor calibration, reference targets for routine survey and deformation monitoring.
翻译:监测地下或室内环境,如地雷或隧道等,由于没有传感器定位框架、结构对称结构结构复杂、特征重复和隔离,因此具有挑战性。目前的做法主要包括人工选择可识别的地理参照和共同登记参考点。本研究的目的是克服地下或室内激光扫描中的这些实际挑战。发达的方法涉及激光扫描中自动和可识别的三维独特识别码(3DUIDs)和3D登记(3DREG)工作流程。在地下隧道中对这种方法进行实地测试已经发现准确、有效和高效。此外,还展示了自动提取道路隧道剖面图的方法。开发的3DUID可用于道路剖面图的提取、引导自动化、传感器校准、常规勘测和变形监测参考目标。