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A new multipath mitigation method based on adaptive thresholding wavelet denoising and double reference shift strategy

机译:一种新的基于自适应阈值小波去噪和双参考换档策略的多径缓解方法

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Multipath disturbance is one of the major error sources in high-accuracy positioning for global navigation satellite system (GNSS). Although various methods based on software and hardware strategies have been developed to mitigate this error, they are still limited by different kinds of factors and the effect is not ideal. After analyzing the existing methods, a new single-difference sidereal filtering method, based on adaptive thresholding wavelet denoising and double reference shift strategy (ATDR), is proposed to mitigate multipath effects for static short-baseline GNSS applications. The key idea of the proposed method is the use of both the adaptive thresholding wavelet denoising to extract an accurate multipath correction model from the reference Day and the double reference shift strategy to mitigate multipath for subsequent Day 2 more accurately and efficiently. By applying the introduced adaptive thresholding method, the average improvement rate of the RMS values of the single-difference residuals can reach about 15.82% compared with the constant thresholding method. Moreover, after applying the proposed ATDR method, the 3D positioning precision is improved by about 37.73% for the single epoch mode with 30 s data sampling rate and about 31.22% for the continuous mode with 1 s high sampling rate compared with the original results. Even compared with the constant thresholding single orbital reference (CTSR) method, the improvement percentage is about 33.94% in single epoch mode and about 25.40% in continuous mode for 3D positioning precision, respectively. In conclusion, the results of the two experiments indicate that the proposed ATDR method performs much better than the CTSR method in mitigating multipath for different sampling rates and different processing modes in the measurement domain for GNSS static short-baseline postprocessing applications.
机译:多径干扰是全球导航卫星系统(GNSS)的高精度定位中的主要误差源之一。虽然已经开发了基于软件和硬件策略的各种方法来减轻此错误,但它们仍然受到不同类型的因素的限制,效果并不理想。在分析现有方法之后,提出了一种基于自适应阈值小波噪声和双参考换档策略(ATDR)的新的单差恒星滤波方法,以减轻静态短基线GNSS应用的多径效应。所提出的方法的关键思想是使用自适应阈值小波去噪,从参考日和双参考换档策略中提取精确的多径校正模型,以便更准确,有效地减轻多径。通过施加引入的自适应阈值化方法,与恒定阈值化方法相比,单差残留物的RMS值的平均提高率可以达到约15.82%。此外,在施加所提出的ATDR方法之后,3D定位精度为单纪元模式提高了约37.73%,对于具有30秒的数据采样率,与原始结果相比,连续模式具有约31.22%的连续模式约为31.22%。即使与恒定的阈值相比单轨道参考(CTSR)方法相比,单时单时,改善百分比为约33.94%,分别以3D定位精度的连续方式为约25.40%。总之,两个实验结果表明,所提出的ATDR方法比CTSR方法在减轻多径的CTSR方法中的不同采样率和用于GNSS静态短基线后处理应用程序的测量域中的不同处理模式进行了多大。

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