International audienceThis paper introduces a method for the robust estimation of foot clearance during walking , using a single inertial measurement unit (IMU) placed on the subject ' s foot. The proposed solution is based on double integration and drift cancellation of foot acceleration signals. The method is insensitive to misalignment of IMU axes with respect to foot axes. Details are provided regarding calibration and signal processing procedures. Experimental validation was performed on 10 healthy subjects under three walking conditions : normal , fast and with obstacles. Foot clearance estimation results were compared to measurements from an optical motion capture system. The mean error between them is significantly less than 15% und...
We present a novel method of estimating gait altitude by using the acceleration and angular velocity...
We present a novel method of estimating gait altitude by using the acceleration and angular velocity...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
This paper introduces a method for the robust estimation of foot clearance during walking, using a s...
This paper introduces a method for the robust estimation of foot clearance during walking, using a s...
Certain patient populations such as amputees are at a higher risk of falling when walking due to the...
Certain patient populations such as amputees are at a higher risk of falling when walking due to the...
This paper presents an accurate, robust, wearable measurement system for foot clearance estimation a...
A method for assessing maximum foot clearance (maxFCl) during overground walking and obstacle passin...
Tripping is considered a major cause of fall in older people. Therefore, foot clearance (i.e., heigh...
© 2010 Edgar CharryAs a promising alternative to laboratory constrained video capture systems in stu...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
Foot clearance parameters provide useful insight into tripping risks during walking. This paper pro...
Foot clearance parameters provide useful insight\ud into tripping risks during walking. This paper p...
We present a novel method of estimating gait altitude by using the acceleration and angular velocity...
We present a novel method of estimating gait altitude by using the acceleration and angular velocity...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
This paper introduces a method for the robust estimation of foot clearance during walking, using a s...
This paper introduces a method for the robust estimation of foot clearance during walking, using a s...
Certain patient populations such as amputees are at a higher risk of falling when walking due to the...
Certain patient populations such as amputees are at a higher risk of falling when walking due to the...
This paper presents an accurate, robust, wearable measurement system for foot clearance estimation a...
A method for assessing maximum foot clearance (maxFCl) during overground walking and obstacle passin...
Tripping is considered a major cause of fall in older people. Therefore, foot clearance (i.e., heigh...
© 2010 Edgar CharryAs a promising alternative to laboratory constrained video capture systems in stu...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
Foot clearance parameters provide useful insight into tripping risks during walking. This paper pro...
Foot clearance parameters provide useful insight\ud into tripping risks during walking. This paper p...
We present a novel method of estimating gait altitude by using the acceleration and angular velocity...
We present a novel method of estimating gait altitude by using the acceleration and angular velocity...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...