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    Exploring the Quantitative Impact of Localization Accuracy on Localization-Based Safety Monitoring’s Performance on a Construction Jobsite

    Source: Journal of Computing in Civil Engineering:;2019:;Volume ( 033 ):;issue: 006
    Author:
    Hainan Chen
    ,
    Xiaowei Luo
    DOI: 10.1061/(ASCE)CP.1943-5487.0000852
    Publisher: American Society of Civil Engineers
    Abstract: The construction industry continues to be one of the industries with the highest accident rate. With the recent advancement of computing and sensing technologies, more efforts have been made in the field of context-aware autonomous job site monitoring, which can automatically track and evaluate the worker’s behavior and job site conditions in real time to issue warnings for unsafe behaviors and conditions on sites. The location of an entity (e.g., worker, equipment, or material) is one of the core information for context-aware management. Therefore, a large number of recent studies focus on exploring different approaches to improve the localization technologies’ accuracy, robustness, and convenience of deployment. However, systematic knowledge is missing on how the localization algorithm’s accuracy affects the construction safety monitoring’s performance. To quantify the impact in this paper, first, a localization system accuracy model and three safety clearance models are proposed as the base. Second, a Monte Carlo simulation model is designed as an abstract representation for localization systems. By conducting the simulation, the effects of the localization errors on safety monitoring performance are quantitatively analyzed. A case of a tower crane scenario is investigated as a demonstration. With the simulation data, a regression model is established, indicating that the precision and recall of the location-based safety decision making are not only related to the accuracy of the localization system but also related to the size of the safety zones. With the proposed model, the impacts of a given localization system on the location-based safety decision making can be quantified without the actual deployment, offering a more straightforward evaluation tool of the localization system.
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      Exploring the Quantitative Impact of Localization Accuracy on Localization-Based Safety Monitoring’s Performance on a Construction Jobsite

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    contributor authorHainan Chen
    contributor authorXiaowei Luo
    date accessioned2019-09-18T10:40:29Z
    date available2019-09-18T10:40:29Z
    date issued2019
    identifier other%28ASCE%29CP.1943-5487.0000852.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4260120
    description abstractThe construction industry continues to be one of the industries with the highest accident rate. With the recent advancement of computing and sensing technologies, more efforts have been made in the field of context-aware autonomous job site monitoring, which can automatically track and evaluate the worker’s behavior and job site conditions in real time to issue warnings for unsafe behaviors and conditions on sites. The location of an entity (e.g., worker, equipment, or material) is one of the core information for context-aware management. Therefore, a large number of recent studies focus on exploring different approaches to improve the localization technologies’ accuracy, robustness, and convenience of deployment. However, systematic knowledge is missing on how the localization algorithm’s accuracy affects the construction safety monitoring’s performance. To quantify the impact in this paper, first, a localization system accuracy model and three safety clearance models are proposed as the base. Second, a Monte Carlo simulation model is designed as an abstract representation for localization systems. By conducting the simulation, the effects of the localization errors on safety monitoring performance are quantitatively analyzed. A case of a tower crane scenario is investigated as a demonstration. With the simulation data, a regression model is established, indicating that the precision and recall of the location-based safety decision making are not only related to the accuracy of the localization system but also related to the size of the safety zones. With the proposed model, the impacts of a given localization system on the location-based safety decision making can be quantified without the actual deployment, offering a more straightforward evaluation tool of the localization system.
    publisherAmerican Society of Civil Engineers
    titleExploring the Quantitative Impact of Localization Accuracy on Localization-Based Safety Monitoring’s Performance on a Construction Jobsite
    typeJournal Paper
    journal volume33
    journal issue6
    journal titleJournal of Computing in Civil Engineering
    identifier doi10.1061/(ASCE)CP.1943-5487.0000852
    page04019035
    treeJournal of Computing in Civil Engineering:;2019:;Volume ( 033 ):;issue: 006
    contenttypeFulltext
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