A Drift-Free 3D Orientation and Displacement estimation method (DFOD) based on a single inertial measurement unit (IMU) is proposed and validated. Typically, body segment orientation and displacement methods rely on a constant- or zero-velocity point to correct for drift. Therefore, they are not easily applicable to more proximal segments than the foot. DFOD uses an alternative single sensor drift reduction strategy based on the quasi-cyclical nature of many human movements. DFOD assumes that the quasi-cyclical movement occurs in a quasi-2D plane and with an approximately constant cycle average velocity. DFOD is independent of a constant- or zero-velocity point, a biomechanical model, Kalman filtering or a magnetometer. DFOD reduces orienta...
Inertial measurement units are gaining importance in the field of gait analysis and human motion tra...
This paper presents a novel orientation estimate approach named inertial guided visual sample consen...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
A Drift-Free 3D Orientation and Displacement estimation method (DFOD) based on a single inertial mea...
In this article, a self-contained procedure to estimate the vertical, medial–lateral, and anterior–p...
In the medical field, there is a need for small ambulatory sensor systems for measuring the kinemati...
This study aimed to introduce and validate a new method to estimate and correct the orientation drif...
This study aimed to introduce and validate a new method to estimate and correct the orientation drif...
The present study was aimed at evaluating the Empirical Mode Decomposition (EMD) method to estimate ...
BACKGROUND: The present study aimed at devising a data processing procedure that provides an optimal...
This paper presents a novel orientation estimate scheme using Inertial Guided Visual SAmple Consensu...
The article of record as published may be found at https://doi.org/10.1109/TIM.2011.2179830A foot mo...
The ability to capture joint kinematics in outside-laboratory environments is clinically relevant. I...
Today the Global Positioning System (GPS) is widely used in the estimation of position. But the GPS ...
The accuracy in orientation tracking attainable by using inertial measurement units (IMU) when measu...
Inertial measurement units are gaining importance in the field of gait analysis and human motion tra...
This paper presents a novel orientation estimate approach named inertial guided visual sample consen...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
A Drift-Free 3D Orientation and Displacement estimation method (DFOD) based on a single inertial mea...
In this article, a self-contained procedure to estimate the vertical, medial–lateral, and anterior–p...
In the medical field, there is a need for small ambulatory sensor systems for measuring the kinemati...
This study aimed to introduce and validate a new method to estimate and correct the orientation drif...
This study aimed to introduce and validate a new method to estimate and correct the orientation drif...
The present study was aimed at evaluating the Empirical Mode Decomposition (EMD) method to estimate ...
BACKGROUND: The present study aimed at devising a data processing procedure that provides an optimal...
This paper presents a novel orientation estimate scheme using Inertial Guided Visual SAmple Consensu...
The article of record as published may be found at https://doi.org/10.1109/TIM.2011.2179830A foot mo...
The ability to capture joint kinematics in outside-laboratory environments is clinically relevant. I...
Today the Global Positioning System (GPS) is widely used in the estimation of position. But the GPS ...
The accuracy in orientation tracking attainable by using inertial measurement units (IMU) when measu...
Inertial measurement units are gaining importance in the field of gait analysis and human motion tra...
This paper presents a novel orientation estimate approach named inertial guided visual sample consen...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...