BDS-3 RTK/UWB semi-tightly coupled integrated positioning system in harsh environments

IF 2.7 3区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY Measurement Science and Technology Pub Date : 2023-12-21 DOI:10.1088/1361-6501/ad180f
Peipei Dai, Sen Wang, Tianhe Xu, Nazi Wang, Min Li, Jianping Xing, F. Gao
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Abstract

Abstract Real-time kinematic (RTK) positioning is a commonly used technique in modern industry, which is limited by problems such as signal occlusion, attenuation, and multipath, especially in complex urban canyons. To maintain the consistency of centimeter-level accuracy, we adopt the ultra-wideband (UWB) enhanced BDS-3 RTK positioning algorithm. This paper proposed a semi-tightly coupled (STC) BDS-3 RTK/UWB integration positioning model. This model realizes the UWB and BDS-3 complement each other and integrate information in the position domain. Besides, height constraint is imposed on UWB positioning to mitigate the effect of poor positioning of UWB in height components. To verify the effectiveness of the above algorithm, we have compared and analyzed the positioning performance of the semi-tightly coupled BDS-3 RTK/UWB integration model and single BDS-3 RTK model in different occlusion environments. The positioning performance of static and kinematic of BDS-3 RTK/UWB STC based on different number of UWB anchors is further analyzed. The real-world experiment results show that the positioning accuracy of theproposed method can reach centimeter-level. Moreover, the proposed model can obtain more accurate positioning results than those of using single system, and it shows more obvious advantages, especially in the occlusion environment. In the occlusion environment, the RMS in the east, north, and up directions is improved from (0.629 m, 0.325 m, 1.160 m) of the BDS-3-only to (0.075 m, 0.074 m, 0.029 m). This study can provide a reference for the future development of high-precision, real-time, continuous positioning, navigation, and timing in complex urban environments.
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适用于恶劣环境的 BDS-3 RTK/UWB 半紧密耦合集成定位系统
摘要 实时运动学(RTK)定位是现代工业中常用的一种技术,它受到信号遮挡、衰减和多径等问题的限制,尤其是在复杂的城市峡谷中。为了保持厘米级精度的一致性,我们采用了超宽带(UWB)增强型 BDS-3 RTK 定位算法。本文提出了一种半紧密耦合(STC)BDS-3 RTK/UWB 集成定位模型。该模型实现了 UWB 和 BDS-3 在位置域的互补和信息集成。此外,还对 UWB 定位施加了高度限制,以减轻 UWB 在高度分量中定位不佳的影响。为了验证上述算法的有效性,我们对比分析了半紧密耦合的 BDS-3 RTK/UWB 集成模型和单一 BDS-3 RTK 模型在不同遮挡环境下的定位性能。进一步分析了基于不同 UWB 锚点数量的 BDS-3 RTK/UWB STC 的静态和运动定位性能。实际实验结果表明,所提方法的定位精度可达厘米级。而且,与使用单一系统相比,所提出的模型能获得更精确的定位结果,特别是在闭塞环境下,优势更为明显。在遮挡环境下,东、北、上三个方向的有效值由 BDS-3 单一系统的(0.629 m、0.325 m、1.160 m)提高到(0.075 m、0.074 m、0.029 m)。这项研究可为未来在复杂城市环境中发展高精度、实时、连续定位、导航和授时提供参考。
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来源期刊
Measurement Science and Technology
Measurement Science and Technology 工程技术-工程:综合
CiteScore
4.30
自引率
16.70%
发文量
656
审稿时长
4.9 months
期刊介绍: Measurement Science and Technology publishes articles on new measurement techniques and associated instrumentation. Papers that describe experiments must represent an advance in measurement science or measurement technique rather than the application of established experimental technique. Bearing in mind the multidisciplinary nature of the journal, authors must provide an introduction to their work that makes clear the novelty, significance, broader relevance of their work in a measurement context and relevance to the readership of Measurement Science and Technology. All submitted articles should contain consideration of the uncertainty, precision and/or accuracy of the measurements presented. Subject coverage includes the theory, practice and application of measurement in physics, chemistry, engineering and the environmental and life sciences from inception to commercial exploitation. Publications in the journal should emphasize the novelty of reported methods, characterize them and demonstrate their performance using examples or applications.
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