A close-range photogrammetric model for tracking and performance-based forecasting earthmoving operations

Saif, W and Alshibani, A (2024) A close-range photogrammetric model for tracking and performance-based forecasting earthmoving operations. Construction Innovation, 24(1), pp. 164-195. ISSN 1471-4175

Abstract

Purpose: This paper aims to present a highly accessible and affordable tracking model for earthmoving operations in an attempt to overcome some of the limitations of current tracking models. Design/methodology/approach: The proposed methodology involves four main processes: acquiring onsite terrestrial images, processing the images into 3D scaled cloud data, extracting volumetric measurements and crew productivity estimations from multiple point clouds using Delaunay triangulation and conducting earned value/schedule analysis and forecasting the remaining scope of work based on the estimated performance. For validation, the tracking model was compared with an observation-based tracking approach for a backfilling site. It was also used for tracking a coarse base aggregate inventory for a road construction project. Findings: The presented model has proved to be a practical and accurate tracking approach that algorithmically estimates and forecasts all performance parameters from the captured data. Originality/value: The proposed model is unique in extracting accurate volumetric measurements directly from multiple point clouds in a developed code using Delaunay triangulation instead of extracting them from textured models in modelling software which is neither automated nor time-effective. Furthermore, the presented model uses a self-calibration approach aiming to eliminate the pre-calibration procedure required before image capturing for each camera intended to be used. Thus, any worker onsite can directly capture the required images with an easily accessible camera (e.g. handheld camera or a smartphone) and can be sent to any processing device via e-mail, cloud-based storage or any communication application (e.g. WhatsApp).

Item Type: Article
Uncontrolled Keywords: 3D data capturing; close-range photogrammetry; construction 4.0; cost and schedule forecasting; delaunay triangulation; digital camera; earthmoving operations; point cloud; productivity monitoring; smartphone
Index terms: aggregate, modelling, productivity, forecasting, inventory, monitoring, construction 4.0, earthmoving, estimation, point cloud, estimate, onsite, crew productivity, triangulation, performance-based, road construction, e-mail, validation, methodology
Subjects: analytical methods, digital engineering, construction operations, research methods, building construction, communication, professional development, materials science, research design and methodology, management, performance measurement, control systems, inventory management, civil engineering, financial and cost management, digital design, prediction and forecasting
Topics: Digital Applications, Business Strategy, Information Management, Cost Management, Engineering Principles, Site Management, Construction Technology, Supply Chain Management, Research Practice, Quality Management
Descriptive scope: 4 PCTA

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