This paper investigates two methods of displacement estimation using sampled acceleration and orientation data from a 6 degrees of freedom (DOF) Inertial Measurement Unit (IMU), with the application to sporting training and rehabilitation. Currently, the use of low cost IMUs for this particular application is very impractical due to the accumulation of errors from various sources. Previous studies and projects that have applied IMUs to similar applications have used a lower number of DOF, or have used higher accuracy navigational grade IMUs. Solutions to the acceleration noise accumulation and gyroscope angle error problem are proposed in this paper. A zero velocity update algorithm (ZUPT) is also developed to improve the accuracy of displa...
Inertial Measurement Units (IMUs) are becoming more and more popular in human motion tracking applic...
Miniature inertial measurement units (IMUs) have become popular in the field of biomechanics as an a...
A Drift-Free 3D Orientation and Displacement estimation method (DFOD) based on a single inertial mea...
The purpose of this study was to identify a reliable algorithm to estimate the inclination of a trun...
Inertial measurement units (IMUs) offer the possibility to capture the lower body kinematics of play...
Background: Inertial measurement units (IMUs) offer the possibility to capture the lower body motion...
Inertial measurement units are commonly used to estimate the orientation of sections of sections of ...
Gait analysis is relevant to a broad range of clinical applications in areas of orthopedics, neurosu...
The current technologies and methodologies used for physical activity monitoring and ambulatory moti...
Motion tracking based on commercial inertial measurements units (IMUs) has been widely studied in th...
This paper introduces a method for the robust estimation of foot clearance during walking, using a s...
AbstractThe continuous sensing of kinematics provides an opportunity to monitor changes in sporting ...
The amount of inertial measurement unit (IMU)-based motion analysis systems on the market rises. Due...
The study of human biomechanics has broad applications in human health, worker safety, warfighter pe...
Inertial measurement units (IMUs) have been widely used to provide accurate location and movement me...
Inertial Measurement Units (IMUs) are becoming more and more popular in human motion tracking applic...
Miniature inertial measurement units (IMUs) have become popular in the field of biomechanics as an a...
A Drift-Free 3D Orientation and Displacement estimation method (DFOD) based on a single inertial mea...
The purpose of this study was to identify a reliable algorithm to estimate the inclination of a trun...
Inertial measurement units (IMUs) offer the possibility to capture the lower body kinematics of play...
Background: Inertial measurement units (IMUs) offer the possibility to capture the lower body motion...
Inertial measurement units are commonly used to estimate the orientation of sections of sections of ...
Gait analysis is relevant to a broad range of clinical applications in areas of orthopedics, neurosu...
The current technologies and methodologies used for physical activity monitoring and ambulatory moti...
Motion tracking based on commercial inertial measurements units (IMUs) has been widely studied in th...
This paper introduces a method for the robust estimation of foot clearance during walking, using a s...
AbstractThe continuous sensing of kinematics provides an opportunity to monitor changes in sporting ...
The amount of inertial measurement unit (IMU)-based motion analysis systems on the market rises. Due...
The study of human biomechanics has broad applications in human health, worker safety, warfighter pe...
Inertial measurement units (IMUs) have been widely used to provide accurate location and movement me...
Inertial Measurement Units (IMUs) are becoming more and more popular in human motion tracking applic...
Miniature inertial measurement units (IMUs) have become popular in the field of biomechanics as an a...
A Drift-Free 3D Orientation and Displacement estimation method (DFOD) based on a single inertial mea...