The objective of this paper is to present a personalisable human ergonomics framework that integrates a method for real-time identification of a human model and an ergonomics monitoring function. The human model is based on a floating base structure and on a Statically Equivalent Serial Chain (SESC) model used for the estimation of the whole-body centre of Mass (CoM). A recursive linear regression algorithm (i.e., Kalman filter) is developed to achieve the online identification of the SESC parameters. A visual feedback provides a minimum set of suggested human poses to speed up the identification process, while enhancing the model accuracy based on a convergence value. The online ergonomics monitoring function computes and displays the ov...
To assess ergonomic aspects of a (future) workplace already in the design phase where no physical pr...
This work presents an intuitive graphic interface to make its users aware of potentially risky body ...
Manual Material Handling (MMH) activities represent a large portion of the workers’ tasks in the ter...
The objective of this paper is to present a personalisable human ergonomics framework that integrate...
The objective of this paper is to present a mathematical tool for real-time tracking of whole-body c...
In this work, we propose an online method to detect and approximately locate an external load induce...
The objective of this paper is to present a mathematical tool for real-time tracking of whole-body ...
This dataset was created as a part of the study presented in IEEE Transactions on Human-Machine Syst...
In this paper, we present a biomechanical analysis of the upper body, which includes upper-limb, nec...
This paper aims at the development of a unified method for online identification and tracking of a k...
International audienceA human's center of mass (CoM) trajectory is useful to evaluate the dynamic st...
To assess ergonomic aspects of a (future) workplace already in the design phase where no physical pr...
This work presents an intuitive graphic interface to make its users aware of potentially risky body ...
Manual Material Handling (MMH) activities represent a large portion of the workers’ tasks in the ter...
The objective of this paper is to present a personalisable human ergonomics framework that integrate...
The objective of this paper is to present a mathematical tool for real-time tracking of whole-body c...
In this work, we propose an online method to detect and approximately locate an external load induce...
The objective of this paper is to present a mathematical tool for real-time tracking of whole-body ...
This dataset was created as a part of the study presented in IEEE Transactions on Human-Machine Syst...
In this paper, we present a biomechanical analysis of the upper body, which includes upper-limb, nec...
This paper aims at the development of a unified method for online identification and tracking of a k...
International audienceA human's center of mass (CoM) trajectory is useful to evaluate the dynamic st...
To assess ergonomic aspects of a (future) workplace already in the design phase where no physical pr...
This work presents an intuitive graphic interface to make its users aware of potentially risky body ...
Manual Material Handling (MMH) activities represent a large portion of the workers’ tasks in the ter...