测绘通报 ›› 2025, Vol. 0 ›› Issue (12): 52-57.doi: 10.13474/j.cnki.11-2246.2025.1209

• 学术研究 • 上一篇    

一种基于码减载波的智能手机GNSS伪距差分定位选星策略

王华银, 邓健, 魏书恩, 李泽, 刘铸涛   

  1. 厦门理工学院计算机与信息工程学院, 福建 厦门 361024
  • 收稿日期:2025-04-18 发布日期:2025-12-31
  • 通讯作者: 邓健。E-mail:dengjian163@126.com
  • 作者简介:王华银(2001—),男,硕士生,主要研究方向为基于GNSS卫星定位技术的开发与应用。E-mail:huayinw@163.com
  • 基金资助:
    福建省自然科学基金(2022J011237);福建省住房和城乡建设科研开发和软科学研究项目(2025-K-66)

A code-minus-carrier-based satellite selection strategy for GNSS pseudorange differential positioning in smartphones

WANG Huayin, DENG Jian, WEI Shuen, LI Ze, LIU Zhutao   

  1. School of Computer and Information Engineering, Xiamen University of Technology, Xiamen 361024, China
  • Received:2025-04-18 Published:2025-12-31

摘要: 针对现有智能手机GNSS选星算法在复杂环境下适应性不足、计算复杂的问题,本文提出了一种基于码减载波的伪距差分定位选星策略。该方法首先在预设时间窗口内选取持续可见卫星构建初始子集;然后在此基础上采用滑动窗口均值法消除码减载波观测值中的整周模糊度,并据此构建观测质量评价指标;最后依据该指标进行筛选,形成质量最优的卫星子集用于定位。算例分析表明:在开阔环境下,华为P40与Mate40智能手机基于该选星策略的伪距差分定位精度与全星座定位相当;在遮挡环境中,相较于全星座定位,两款手机的整体定位精度分别提升20%~25%和30%~47%,且在动态复杂场景下表现出更强的稳定性和环境适应性。本文策略计算流程简单、易于实施,能够有效提升城市复杂环境下智能手机GNSS伪距差分定位的精度与可靠性。

关键词: 选星, 智能手机, 相对定位, 码减载波

Abstract: To address the limitations of existing satellite selection algorithms for smartphone GNSS pseudorange differential positioning,which include poor adaptability in complex environments and high computational complexity,this paper proposes a novel satellite selection strategy based on the code-minus-carrier observable.The method begins by identifying continuously visible satellites within a predefined time window to form an initial subset.A sliding-window averaging technique is then applied to remove the integer ambiguity component from the code-minus-carrier observations,enabling the construction of a quality evaluation metric.Satellites are subsequently screened using this metric to produce an optimized subset for positioning.Experiments were conducted in both open-sky and obstructed environments using Huawei P40 and Mate40 smartphones.Results demonstrate that in open-sky conditions,the proposed method achieves positioning accuracy comparable to that of full-constellation solutions.Under signal-obstructed conditions,it significantly improves overall positioning accuracy by 20%~25%for the P40 and 30%~47%for the Mate40,relative to the full-constellation approach.The method also exhibits enhanced stability and environmental adaptability in dynamic and challenging scenarios.With its straightforward computational process and ease of implementation,the proposed strategy offers an effective means to improve the accuracy and reliability of smartphone-based GNSS pseudorange differential positioning in complex urban environments.

Key words: satellite selection, smartphone, relative positioning, code-minus-carrier

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