paper-with-me

Papers

Single point positioning using full and fractional pseudorange measurements from GPS and BDS

2020-11-25

In conventional global navigation satellite system (GNSS) receivers, usually full pseudorange measurements are required to complete a single point position fix. However, to obtain full pseudorange measurements takes longer time than for fractional pseudorange measurements. Considering such a fact, in order to shorten the time to first fix and improve the position accuracy during cold or warm start of a dual-constellation GNSS receiver, we propose a positioning algorithm using full and fractional pseudorange measurements from the two navigational constellations. This method uses four full pseudorange measurements from one constellation along with fractional ones from either or both constellations to obtain a potentially rapid position result with an identical accuracy to that of the conventional positioning method using full measurements. Tests with simulated and real Global Positioning System (GPS) and BeiDou Navigation Satellite System (BDS) data demonstrate that the proposed method can generate correct single point position solutions and the position error is identical with the result from the conventional approach using the full pseudorange measurements.

📄 PDF Abstract BibTeX arXiv:2011.12892

Code (1)

zhaosh05/GPS-BDS-mixed-positioning 공식 구현

Tasks

Position

Similar Papers 제목 키워드 기반

A priori knowledge-free fast positioning approach for BeiDou receivers

2022-11-22 · Sihao Zhao, Xiaowei Cui, Mingquan Lu

A Global Navigation Satellite System (GNSS) receiver usually needs a sufficient number of full pseudorange measurements to obtain a position solution. However, it is time-consuming to acquire full pseudorange information…

Position

Pseudorange Rigidity and Solvability of Cooperative GNSS Positioning

2024-01-10 · Colin Cros, Pierre-Olivier Amblard, Christophe Prieur, Jean-François da Rocha

Global Navigation Satellite Systems (GNSS) are a widely used technology for positioning and navigation. GNSS positioning relies on pseudorange measurements from satellites to receivers. A pseudorange is the apparent dist…

RNN-Based GNSS Positioning using Satellite Measurement Features and Pseudorange Residuals

2023-06-08 · Ibrahim Sbeity, Christophe Villien, Benoît Denis, E. Veronica Belmega

In the Global Navigation Satellite System (GNSS) context, the growing number of available satellites has lead to many challenges when it comes to choosing the most accurate pseudorange contributions, given the strong imp…

PrNet: A Neural Network for Correcting Pseudoranges to Improve Positioning with Android Raw GNSS Measurements

2023-09-16 · Xu Weng, Keck Voon Ling, Haochen Liu

We present a neural network for mitigating biased errors in pseudoranges to improve localization performance with data collected from mobile phones. A satellite-wise Multilayer Perceptron (MLP) is designed to regress the…

Set-Based Position Ambiguity Reduction Method for Zonotope Shadow Matching in Urban Areas Using Estimated Multipath Errors

2025-02-16 · Sanghyun Kim, Jiwon Seo

In urban areas, the quality of global navigation satellite system (GNSS) signals deteriorates, leading to reduced positioning accuracy. To address this issue, 3D-mapping-aided (3DMA) techniques, such as shadow matching a…

Position