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Use of the L2C signal for inversions of GPS radio occultation data in the neutral atmosphere

机译:L2C信号用于中性大气中GPS无线电掩星数据的反演

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Results from processing FORMOSAT-3/COSMIC radio occultations (RO) with the new GPS L2C signal acquired both in phase locked loop (PLL) and open loop (OL) modes are presented. Analysis of L2P, L2C, and L1CA signals acquired in PLL mode shows that in the presence of strong ionospheric scintillation not only L2P tracking, but also L1CA tracking often fails, while L2C tracking is most stable. The use of L2C improves current RO processing in the neutral atmosphere mainly by increasing the number of processed occultations (due to significant reduction in the number of L2 tracking failures) and marginally by a reduction in noise in statistics. The latter is due to the combination of reduced L2C noise (compared to L2P) and increased L1CA noise in those occultations where L2P would have failed. This result suggests application of OL tracking for L1CA and L2C signals throughout an entire occultation to optimally acquire RO data. Two methods of concurrent processing of L1CA and L2C RO signals are considered. Based on testing of individual occultations, these methods allow: (1) reduction in uncertainty of bending angles retrieved by wave optics in the lower troposphere and (2) reduction in small-scale residual errors of the ionospheric correction in the stratosphere.
机译:给出了用锁相环(PLL)和开环(OL)模式获取的新GPS L2C信号处理FORMOSAT-3 / COSMIC无线电掩星(RO)的结果。对以PLL模式获取的L2P,L2C和L1CA信号的分析表明,在强电离层闪烁的情况下,不仅L2P跟踪而且L1CA跟踪经常失败,而L2C跟踪最稳定。 L2C的使用主要通过增加处理的掩星数量(由于L2跟踪失败的数量显着减少)来改善当前RO处理,并且通过减少统计数据中的噪声来改善。后者是由于L2P失败的那些掩盖中L2C噪声减少(与L2P相比)和L1CA噪声增加的结合。该结果表明,在整个掩星过程中对L1CA和L2C信号进行OL跟踪,以最佳地获取RO数据。考虑了同时处理L1CA和L2C RO信号的两种方法。基于对单个掩星的测试,这些方法可以:(1)降低对流层下部由波光学系统获取的弯曲角的不确定性,以及(2)减小平流层中电离层校正的小规模残余误差。

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