This paper introduces a novel double-differential vector phase-locked loop (DD-VPLL) for Global Navigation Satellite Systems (GNSS) that leverages carrier phase position solutions as well as base station measurements in the estimation of rover tracking loop parameters. The use of double differencing alleviates the need for estimating receiver clock dynamics and atmospheric delays; therefore, the navigation filter consists of the baseline dynamic states only. It is shown that using vector processing for carrier phase tracking leads to a significant enhancement in the receiver sensitivity compared to using the conventional scalar-based tracking loop (STL) and vector frequency locked loop (VFLL). The sensitivity improvement of 8 to 10 dB compa...
International audienceIn urban environments, standalone GNSS receivers can be strongly affected to t...
The performance of GPS degrades significantly in urban canyons and in indoor environments. There has...
International audienceThe upcoming Global Navigation Satellite Systems (GNSS) are being designed to ...
This paper introduces a novel double-differential vector phase-locked loop (DD-VPLL) for Global Navi...
A novel differential vector phase-locked loop (DVPLL) is derived that takes GNSS code-phase and carr...
Copyright © 2012 Pedro A. Roncagliolo et al. This is an open access article distributed under the Cr...
An implementation of a robust vector phase-locked loop (VPLL) for joint tracking of carrier phase fr...
An implementation of a robust vector phase-locked loop (VPLL) for joint tracking of carrier phase fr...
In standard GNSS receivers scalar tracking is used to track the satellite signals. In this approach ...
For the tracking of high-dynamic satellite navigation signals, the conventional scalar tracking loop...
In order to track the carrier phases of Global Navigation Satellite Systems (GNSS) signals in signal...
In order to track the carrier phases of Global Navigation Satellite Systems (GNSS) signals in signal...
Carrier phase estimation in real-time Global Navigation Satellite System (GNSS) receivers is usually...
A robust implementation of a partitioned vector tracking for GNSS carrier phase signals is presented...
Carrier phase estimation in real-time Global Navigation Satellite System (GNSS) receivers is usually...
International audienceIn urban environments, standalone GNSS receivers can be strongly affected to t...
The performance of GPS degrades significantly in urban canyons and in indoor environments. There has...
International audienceThe upcoming Global Navigation Satellite Systems (GNSS) are being designed to ...
This paper introduces a novel double-differential vector phase-locked loop (DD-VPLL) for Global Navi...
A novel differential vector phase-locked loop (DVPLL) is derived that takes GNSS code-phase and carr...
Copyright © 2012 Pedro A. Roncagliolo et al. This is an open access article distributed under the Cr...
An implementation of a robust vector phase-locked loop (VPLL) for joint tracking of carrier phase fr...
An implementation of a robust vector phase-locked loop (VPLL) for joint tracking of carrier phase fr...
In standard GNSS receivers scalar tracking is used to track the satellite signals. In this approach ...
For the tracking of high-dynamic satellite navigation signals, the conventional scalar tracking loop...
In order to track the carrier phases of Global Navigation Satellite Systems (GNSS) signals in signal...
In order to track the carrier phases of Global Navigation Satellite Systems (GNSS) signals in signal...
Carrier phase estimation in real-time Global Navigation Satellite System (GNSS) receivers is usually...
A robust implementation of a partitioned vector tracking for GNSS carrier phase signals is presented...
Carrier phase estimation in real-time Global Navigation Satellite System (GNSS) receivers is usually...
International audienceIn urban environments, standalone GNSS receivers can be strongly affected to t...
The performance of GPS degrades significantly in urban canyons and in indoor environments. There has...
International audienceThe upcoming Global Navigation Satellite Systems (GNSS) are being designed to ...