In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial systems by integrating a MEMS-IMU, barometer, and permanent magnet. Zero-velocity update (ZUPT) is a well-known algorithm to eliminate the accumulated error of foot-mounted inertial systems. However, the ZUPT stance phase detector using acceleration and angular rate is threshold-based, which may cause incorrect stance phase estimation in the running gait pattern. A permanent magnet-based ZUPT detector is introduced to solve this problem. Peaks extracted from the magnetic field strength waveform are mid-stances of stance phases. A model of peak-peak information and stance phase duration is developed to have a quantitative calculation method of stan...
The use of a low-cost MEMS-based Inertial Measurement Unit (IMU) provides a cost-effective approach ...
International audienceThe objective of this paper is to propose an energy-aware and gait corrected p...
This paper proposes a novel self-contained pedestrian tracking method using a foot-mounted inertial ...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...
Zero velocity update (ZUPT) is an effective way for pedestrian navigation in a GPS (Global Positioni...
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...
The wearable inertial/magnetic sensor based human motion analysis plays an important role in many bi...
The wearable inertial/magnetic sensor based human motion analysis plays an important role in many bi...
© 2014 The Royal Institute of Navigation. For indoor pedestrian navigation with a shoe-mounted inert...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
The recent development of compact, inexpensive sensors makes it possible to apply self-contained sen...
Pedestrian navigation systems (PNS) using foot-mounted MEMS inertial sensors use zero-velocity updat...
International audienceThe objective of this paper is to propose an energy-aware and gait corrected p...
The use of a low-cost MEMS-based Inertial Measurement Unit (IMU) provides a cost-effective approach ...
International audienceThe objective of this paper is to propose an energy-aware and gait corrected p...
This paper proposes a novel self-contained pedestrian tracking method using a foot-mounted inertial ...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...
Zero velocity update (ZUPT) is an effective way for pedestrian navigation in a GPS (Global Positioni...
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...
The wearable inertial/magnetic sensor based human motion analysis plays an important role in many bi...
The wearable inertial/magnetic sensor based human motion analysis plays an important role in many bi...
© 2014 The Royal Institute of Navigation. For indoor pedestrian navigation with a shoe-mounted inert...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
The recent development of compact, inexpensive sensors makes it possible to apply self-contained sen...
Pedestrian navigation systems (PNS) using foot-mounted MEMS inertial sensors use zero-velocity updat...
International audienceThe objective of this paper is to propose an energy-aware and gait corrected p...
The use of a low-cost MEMS-based Inertial Measurement Unit (IMU) provides a cost-effective approach ...
International audienceThe objective of this paper is to propose an energy-aware and gait corrected p...
This paper proposes a novel self-contained pedestrian tracking method using a foot-mounted inertial ...