Inertial measurement units (IMUs) enable orientation, velocity, and position estimation in several application domains ranging from robotics and autonomous vehicles to human motion capture and rehabilitation engineering. Errors in orientation estimation greatly affect any of those motion parameters. The present work explains the main challenges in inertial orientation estimation (IOE) and presents an extensive benchmark dataset that includes 3D inertial and magnetic data with synchronized optical marker-based ground truth measurements, the Berlin Robust Orientation Estimation Assessment Dataset (BROAD). The BROAD dataset consists of 39 trials that are conducted at different speeds and include various types of movement. Thereof, 23 trials ar...
With the recent technological advancement in low-cost wireless inertial motion trackers, measuring t...
In the past several years, IMU\u27s have been widely used to measure the orientation of a moving bod...
With the recent technological advancement in low-cost wireless inertial motion trackers, measuring t...
Inertial measurement units (IMUs) enable orientation, velocity, and position estimation in several a...
The miniaturization of inertial measurement units (IMUs) facilitates their widespread use in a growi...
The orientation of a magneto and inertial measurement unit (MIMU) is estimated by means of sensor fu...
The accuracy in orientation tracking attainable by using inertial measurement units (IMU) when measu...
<div><p>The accuracy in orientation tracking attainable by using inertial measurement units (IMU) wh...
We present a novel algorithm for online, real-time orientation estimation. Our algorithm integrates ...
We present a novel algorithm for online, real-time orientation estimation. Our algorithm integrates ...
Data files and example code for the BROAD benchmark for inertial orientation estimation. For more...
Magneto-Inertial Measurement Units (MIMUs) are a valid alternative tool to optical stereophotogramme...
Abstract Magneto-Inertial technology is a well-established alternative to optical motion capture fo...
Inertial measurement units (IMUs) are getting more and more incorporated into our lives due to their...
Magneto-Inertial technology is a well- established alternative to optical motion capture for human m...
With the recent technological advancement in low-cost wireless inertial motion trackers, measuring t...
In the past several years, IMU\u27s have been widely used to measure the orientation of a moving bod...
With the recent technological advancement in low-cost wireless inertial motion trackers, measuring t...
Inertial measurement units (IMUs) enable orientation, velocity, and position estimation in several a...
The miniaturization of inertial measurement units (IMUs) facilitates their widespread use in a growi...
The orientation of a magneto and inertial measurement unit (MIMU) is estimated by means of sensor fu...
The accuracy in orientation tracking attainable by using inertial measurement units (IMU) when measu...
<div><p>The accuracy in orientation tracking attainable by using inertial measurement units (IMU) wh...
We present a novel algorithm for online, real-time orientation estimation. Our algorithm integrates ...
We present a novel algorithm for online, real-time orientation estimation. Our algorithm integrates ...
Data files and example code for the BROAD benchmark for inertial orientation estimation. For more...
Magneto-Inertial Measurement Units (MIMUs) are a valid alternative tool to optical stereophotogramme...
Abstract Magneto-Inertial technology is a well-established alternative to optical motion capture fo...
Inertial measurement units (IMUs) are getting more and more incorporated into our lives due to their...
Magneto-Inertial technology is a well- established alternative to optical motion capture for human m...
With the recent technological advancement in low-cost wireless inertial motion trackers, measuring t...
In the past several years, IMU\u27s have been widely used to measure the orientation of a moving bod...
With the recent technological advancement in low-cost wireless inertial motion trackers, measuring t...