A sensor fusion algorithm of a conventional MEMS IMU with semi-simulated cold atom interferometer (CAI) sensor values, based on an ESEKF, is demonstrated, and its performance is analyzed under different boundary conditions. CAI sensor values are generated from real navigation grade RLG IMU measurements. The MEMS IMU sensor data is used as input to a navigation strapdown algorithm. The developed ESEKF is able to track different systematic error terms, such as bias components, relative to the CAI reference. Dynamic and static experiments are recorded, with 10 repetitions. The drift of the MEMS strapdown + ESEKF (filtered) navigation solution is compared to the drift of a MEMS-only (unfiltered) strapdown navigation solution, with respect to a ...
The importance of research in Inertial Navigation Systems (INS) has been growing in recent years. Us...
Inertial sensing based on cold atom technologies has been proposed as a possible answer to the limit...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...
This article discusses chances and challenges of using cold atom interferometers in inertial navigat...
This paper explores a way of combining conventional inertial sensors with cold atom interferometers ...
Inertial navigation systems (INS) using cold-atom interferometry are currently under development, an...
The analysis presents the performance of navigation application driven with MEMS and FOG inertial se...
High precision Cold Atom Interferometers (CAI) are in development to supplement or replace conventio...
We present an alternative technique for estimating the response of a cold atom interferometer (CAI)....
International audienceThis work reviews the topic of rotation sensing with compact cold atom interfe...
The prospects of future satellite gravimetry missions to sustain a continuous and improved observati...
This paper proposes a position fixing method for autonomous navigation using partial gravity gradie...
The use of microelectro-mechanical systems (MEMS)-based inertial measurement units (IMUs) is widespr...
error modeling. SUMMARY Integrated INS/GPS systems provide continuous positioning information in any...
An accurate personal inertial navigation system under GPS-denied environment is highly critical for ...
The importance of research in Inertial Navigation Systems (INS) has been growing in recent years. Us...
Inertial sensing based on cold atom technologies has been proposed as a possible answer to the limit...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...
This article discusses chances and challenges of using cold atom interferometers in inertial navigat...
This paper explores a way of combining conventional inertial sensors with cold atom interferometers ...
Inertial navigation systems (INS) using cold-atom interferometry are currently under development, an...
The analysis presents the performance of navigation application driven with MEMS and FOG inertial se...
High precision Cold Atom Interferometers (CAI) are in development to supplement or replace conventio...
We present an alternative technique for estimating the response of a cold atom interferometer (CAI)....
International audienceThis work reviews the topic of rotation sensing with compact cold atom interfe...
The prospects of future satellite gravimetry missions to sustain a continuous and improved observati...
This paper proposes a position fixing method for autonomous navigation using partial gravity gradie...
The use of microelectro-mechanical systems (MEMS)-based inertial measurement units (IMUs) is widespr...
error modeling. SUMMARY Integrated INS/GPS systems provide continuous positioning information in any...
An accurate personal inertial navigation system under GPS-denied environment is highly critical for ...
The importance of research in Inertial Navigation Systems (INS) has been growing in recent years. Us...
Inertial sensing based on cold atom technologies has been proposed as a possible answer to the limit...
The interest in a higher spatial and temporal resolution of the Earth's gravity field is large in va...