Computer Vision-Based Construction Process Sensing for Cyber-Physical Systems: A Review.

Sensors (Basel)

Department of Structural Engineering, Tongji University, 1239 Siping, Shanghai 200092, China.

Published: August 2021


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Cyber-physical systems (CPSs) are generally considered to be the next generation of engineered systems. However, the actual application of CPSs in the Architecture, Engineering and Construction (AEC) industry is still at a low level. The sensing method in the construction process plays a very important role in the establishment of CPSs. Therefore, the purpose of this paper is to discuss the application potential of computer vision-based sensing methods and provide practical suggestions through a literature review. This paper provides a review of the current application of CPSs in the AEC industry, summarizes the current knowledge gaps, and discusses the problems with the current construction site sensing approach. Considering the unique advantages of the computer vision (CV) method at the construction site, the application of CV for different construction entities was reviewed and summarized to achieve a CV-based construction site sensing approach for construction process CPSs. The potential of CPS can be further stimulated by providing rich information from on-site sensing using CV methods. According to the review, this approach has unique advantages in the specific environment of the construction site. Based on the current knowledge gap identified in the literature review, this paper proposes a novel concept of visual-based construction site sensing method for CPS application, and an architecture for CV-based CPS is proposed as an implementation of this concept. The main contribution of this paper is to propose a CPS architecture using computer vision as the main information acquisition method based on the literature review. This architecture innovatively introduces computer vision as a sensing method of construction sites, and realizes low-cost and non-invasive information acquisition in complex construction scenarios. This method can be used as an important supplement to on-site sensing to further promote the automation and intelligence of the construction process.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400116PMC
http://dx.doi.org/10.3390/s21165468DOI Listing

Publication Analysis

Top Keywords

construction site
20
construction process
16
construction
13
sensing method
12
method construction
12
literature review
12
site sensing
12
computer vision
12
sensing
9
computer vision-based
8

Similar Publications

Constructing heterogeneous dual-site catalysts is anticipated for oxygen evolution reaction (OER). However, compared to the adsorbate evolution mechanism (AEM), the triggering oxide pathway mechanism (OPM) for catalysts poses challenges due to elusive structural evolution and low intrinsic activity. Herein, considering the distinct adsorption propensity of heterogeneous Ni-Fe sites toward differential intermediates (OH-O), the PO-induced deep reconstruction triggers a dual-site Ni-Fe discrepant oxide pathway mechanism (DOPM) for R-PO-NiCoFeOOH.

View Article and Find Full Text PDF

The farthest-color Voronoi diagram (FCVD) is defined on a set of points in the plane, where each point is labeled with one of colors. The colored points constitute a family of clusters (sets) of points in the plane whose farthest-site Voronoi diagram is the FCVD. The diagram finds applications in problems related to facility location, shape matching, data imprecision, and others.

View Article and Find Full Text PDF

Knowledge of the association between wellbeing and substance use disorder (SUD) treatment outcomes can guide recovery definitions, measurement strategies, and intervention development. This study recruited individuals in treatment for SUD (N = 81, M=39 years old, 53% female, 26% BIPOC). Wellbeing indicators included positive affect, serenity, flourishing, satisfaction with life, gratitude, quality of life, commitment to sobriety, and confidence staying sober.

View Article and Find Full Text PDF

Tendon/ligament (T/L) injuries sustained during motion are highly prevalent and severely impact athletes' careers and quality of life. Current treatments, including autografts, allografts, and synthetic ligaments, have limitations such as donor site morbidity, immune rejection, and biomechanical mismatch, especially under dynamic loading conditions encountered in motion. 3D bioprinting offers a revolutionary approach for constructing patient-specific T/L grafts.

View Article and Find Full Text PDF

Introduction: Public engagement is critical to the conservation of industrial heritage sites, yet the psychological mechanisms underlying support behaviors remain understudied. This study investigates how perceived value, environmental sustainability awareness, social identity, and perceived government support shape the public's willingness to participate in and financially support industrial heritage conservation. Particular attention is given to the mediating role of place attachment.

View Article and Find Full Text PDF