Pedestrian Dead Reckoning (PDR) by combining the Inertial Measurement Unit (IMU) and magnetometer is an independent navigation approach based on multiple sensors. Since the inertial component error is significantly determined by the parameters of navigation equations, the navigation precision may deteriorate with time, which is inappropriate for long-time navigation. Although the BeiDou (BD) navigation system can provide high navigation precision in most scenarios, the signal from satellites is easily degraded because of buildings or thick foliage. To solve this problem, a tightly-coupled BD/MEMS (Micro-Electro-Mechanical Systems) integration algorithm is proposed in this paper, and a prototype was built for implementing the integrated syst...
An accurate personal inertial navigation system under GPS-denied environment is highly critical for ...
In this paper, we compare two novel algorithms for pedestrian navigation based on signals collected ...
In this paper, a step estimation algorithm and the hardware module for pedestrian navigation system ...
Pedestrian Dead Reckoning (PDR) by combining the Inertial Measurement Unit (IMU) and magnetometer is...
This paper proposes a pedestrian dead reckoning (PDR) algorithm based on the strap-down inertial nav...
Global positioning system (GPS) offers a perfect solution to the 3-dimension(3D) navigation. However...
We introduce a MEMS-based pedestrian dead reckoning (PDR) system. A walking navigation algorithm for...
Inertial navigation systems for pedestrians are infrastructure-less and can achieve sub-meter accura...
Commonly used Global Navigation Satellite Systems (GNSS) are inappropriate as Location Based Service...
Providing an accurate and practical navigation solution anywhere with portable devices, such as smar...
In this paper we present a micro-electrical mechanical system (MEMS) based pedestrian navigation sy...
Mobile location-based services (MLBS) are attracting attention for their potential public and person...
This paper presents a pedestrian indoor navigation system based on the multi-sensor fusion and fuzzy...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...
Global Positioning System and Inertial Navigation System can be used to determine position and veloc...
An accurate personal inertial navigation system under GPS-denied environment is highly critical for ...
In this paper, we compare two novel algorithms for pedestrian navigation based on signals collected ...
In this paper, a step estimation algorithm and the hardware module for pedestrian navigation system ...
Pedestrian Dead Reckoning (PDR) by combining the Inertial Measurement Unit (IMU) and magnetometer is...
This paper proposes a pedestrian dead reckoning (PDR) algorithm based on the strap-down inertial nav...
Global positioning system (GPS) offers a perfect solution to the 3-dimension(3D) navigation. However...
We introduce a MEMS-based pedestrian dead reckoning (PDR) system. A walking navigation algorithm for...
Inertial navigation systems for pedestrians are infrastructure-less and can achieve sub-meter accura...
Commonly used Global Navigation Satellite Systems (GNSS) are inappropriate as Location Based Service...
Providing an accurate and practical navigation solution anywhere with portable devices, such as smar...
In this paper we present a micro-electrical mechanical system (MEMS) based pedestrian navigation sy...
Mobile location-based services (MLBS) are attracting attention for their potential public and person...
This paper presents a pedestrian indoor navigation system based on the multi-sensor fusion and fuzzy...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...
Global Positioning System and Inertial Navigation System can be used to determine position and veloc...
An accurate personal inertial navigation system under GPS-denied environment is highly critical for ...
In this paper, we compare two novel algorithms for pedestrian navigation based on signals collected ...
In this paper, a step estimation algorithm and the hardware module for pedestrian navigation system ...