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Ting Huang

Researcher at Hong Kong Polytechnic University

Publications -  29
Citations -  2332

Ting Huang is an academic researcher from Hong Kong Polytechnic University. The author has contributed to research in topics: Virtual prototyping & Construction management. The author has an hindex of 19, co-authored 29 publications receiving 1757 citations.

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Automatic Pixel-Level Crack Detection and Measurement Using Fully Convolutional Network

TL;DR: The spatial characteristics of cracks are significant indicators to assess and evaluate the health of existing buildings and infrastructures as mentioned in this paper, however, the current manual crack description is inadequate and outdated.
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Proactive behavior-based safety management for construction safety improvement

TL;DR: Wang et al. as discussed by the authors proposed an extension of the Behavior-Based Safety (BBS) approach, proactive behavior-based safety (PBBS), to improve construction safety.
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Practices and effectiveness of building information modelling in construction projects in China

TL;DR: In this paper, the authors examine current BIM practices in China, and assesses how various practices alter their effectiveness, finding that BIM use in the majority of the surveyed projects is seen to have positive outcomes, with the benefits of improved task effectiveness being more substantial than those related to efficiency improvement.
Journal Article

Practices and effectiveness of building information modelling in construction projects in China

TL;DR: The results reveal that in current practice BIM is principally employed as a visualization tool, and how it is implemented is significantly associated with project characteristics, which provides evidence that project characteristics significantly influence the success of BIM use.
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A virtual prototyping system for simulating construction processes

TL;DR: In this paper, the authors describe a virtual prototyping system called the Construction Virtual Prototyping (CVP) system, which is developed for modeling, simulation, analysis and VP of construction processes from digital design.