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Impacts of BeiDou stochastic model on reliability: overall test, w-test and minimal detectable bias

机译:北斗随机模型对可靠性的影响:总体测试,W检测和最小可检测偏差

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摘要

Extensive studies have concluded that the GNSS observations are heteroscedastic and physically correlated. Typically, the observation precisions are elevation dependent and between-frequency cross-correlations and time correlations exist. The influence of these stochastic characteristics on the GNSS positioning has been numerically well understood. However, their influence on the statistic tests of reliability has been rarely studied. We will systematically study the influence of GNSS stochastic characteristics on the statistic tests involved in reliability. With BeiDou as an example, the realistic elevation-dependent model, cross-correlations and time correlations are estimated. Then their impacts on the reliability are numerically analyzed by comparing with the empirical stochastic model where the stochastic characteristics, i.e., elevation-dependent precisions, cross-correlations and time correlations, are not adequately specified. Besides the overall test and w-test, the minimal detectable bias (MDB) and the separability of two w-test statistics are examined. The results show that the realistic elevation-dependent model will reduce probabilities of both false alarm and wrong detection for both overall test and w-test. Introducing the cross-correlations and time correlations properly can obtain the realistic MDBs together with reasonable separability measures, which all are helpful for users to make objective decisions in quality control of real GNSS applications.
机译:广泛的研究已经得出结论,GNSS观察结果是异源和物理相关的。通常,观察精度是升高相关的,并且存在之间的频率互相关和时间相关性。这些随机特性对GNSS定位的影响已经数量地理解。然而,它们对可靠性统计测试的影响已经很少已经研究过。我们将系统地研究GNSS随机特性对可靠性统计学测试的影响。通过北斗作为示例,估计了逼真的依赖模型,互相关和时间相关性。然后,通过与随机特性,即升高依赖性精度,交叉相关性和时间相关性的经验随机模型进行比较,通过比较了对可靠性对可靠性的影响。除了整体测试和W检验之外,检查了最小的可检测偏差(MDB)和两个W检测统计的可分离性。结果表明,逼真的升高依赖模型将降低误报和错误检测的概率对整体测试和W检验。介绍互相关和时间相关性可以正确地获得现实的MDB,以及合理的可分离措施,这一切都有助于用户对真实GNSS应用的质量控制进行客观决策。

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