This research proposes a novel in-motion fine alignment algorithm for vehicular dead reckoning (DR) with odometer-aided strapdown inertial navigation system (SINS) while the map matching result is used for a group of landmark points to estimate misalignment angles. The proposed algorithm is designed based on principle of similarity, that is, trajectory of DR is similar to the true trajectory that the main difference between these two trajectories is rotation and scale. Further, the results from map matching are introduced as a group of landmark points to estimate the residual of azimuth error angle after coarse alignment and the scale factor error of the odometer. It is theoretically proved that the alignment effectiveness based on the resu...
The errors of inertial sensors affect the navigation accuracy of the strapdown inertial navigation s...
It is a challenge to achieve high accuracy navigation for land vehicles without the aid of global na...
Analytic alignment is a type of self-alignment for a Strapdown inertial navigation system (SINS) tha...
An improved coarse alignment (ICA) algorithm is proposed in this paper with a focus on improving ali...
In the strap-down inertial navigation system (SINS), the initial attitude matrix is acquired through...
For a running freely land-vehicle strapdown inertial navigation system (SINS), the problems of self-...
Iterative algorithms based on saved data have been researched for strapdown inertial navigation syst...
Along with the development of computer technology and informatization, the unmanned vehicle has beco...
In this paper, an innovative inertial navigation system (INS) mechanization and the associated Kalma...
Doppler velocity log (DVL) aided strapdown inertial navigation system (SINS) is a common navigation ...
An improved method of gyrocompass alignment for strap-down inertial navigation system (SINS) on movi...
This paper presents a new method for rapid transfer alignment of strapdown inertial navigation syste...
Initial alignment is always a key topic and difficult to achieve in an inertial navigation system (I...
In the initial alignment process of strapdown inertial navigation system (SINS), large initial misal...
Several types of navigation systems have been considered for automotive navigation. These systems mu...
The errors of inertial sensors affect the navigation accuracy of the strapdown inertial navigation s...
It is a challenge to achieve high accuracy navigation for land vehicles without the aid of global na...
Analytic alignment is a type of self-alignment for a Strapdown inertial navigation system (SINS) tha...
An improved coarse alignment (ICA) algorithm is proposed in this paper with a focus on improving ali...
In the strap-down inertial navigation system (SINS), the initial attitude matrix is acquired through...
For a running freely land-vehicle strapdown inertial navigation system (SINS), the problems of self-...
Iterative algorithms based on saved data have been researched for strapdown inertial navigation syst...
Along with the development of computer technology and informatization, the unmanned vehicle has beco...
In this paper, an innovative inertial navigation system (INS) mechanization and the associated Kalma...
Doppler velocity log (DVL) aided strapdown inertial navigation system (SINS) is a common navigation ...
An improved method of gyrocompass alignment for strap-down inertial navigation system (SINS) on movi...
This paper presents a new method for rapid transfer alignment of strapdown inertial navigation syste...
Initial alignment is always a key topic and difficult to achieve in an inertial navigation system (I...
In the initial alignment process of strapdown inertial navigation system (SINS), large initial misal...
Several types of navigation systems have been considered for automotive navigation. These systems mu...
The errors of inertial sensors affect the navigation accuracy of the strapdown inertial navigation s...
It is a challenge to achieve high accuracy navigation for land vehicles without the aid of global na...
Analytic alignment is a type of self-alignment for a Strapdown inertial navigation system (SINS) tha...