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Multipath Mitigation Technique Based on Modifications to GNSS Monitor Station Antennas Field

机译:基于改进的GNSS监测站天线场的多径缓解技术

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Monitor station is an important part of global navigation satellite system (GNSS) ground operating and control system. The quality of the observation data by GNSS monitor stations directly influences the precision of positioning, navigation and timing (PNT) provided by the GNSS system. Multipath effect is one of the major error factors, which causes the precision decrease and quality deterioration of observations. In general, both the GNSS receiver's multipath mitigation techniques based on hardware processing and the monitor system multipath mitigation techniques based on data post-processing are adopted to improve the quality of observation data. However, for the limit of receiver's hardware resources, manufacture techniques and the system's real-time requests, the application of the two techniques cannot make the quality of observation data meet the system's requirement. According to the characteristic of multipath signals, this paper proposes a novel installation which is named RF absorbing nest to further suppress multipath effect around the antenna field. With the absorbing nest, on the one hand the multipath signals from horizon or below are mitigated in effect, on the other hand the direct signals is effectively reflected from the inside surface of the foam. The experimental results show that the quality of the monitor stations' observation data improves 20-40% and the precision of processing for ionosphere model and wide area difference is improved effectively.
机译:监视站是全球导航卫星系统(GNSS)地面操作和控制系统的重要组成部分。 GNSS监视站的观测数据质量直接影响GNSS系统提供的定位,导航和授时(PNT)的精度。多径效应是主要的误差因素之一,它会导致观测值的精度下降和质量下降。通常,基于硬件处理的GNSS接收机的多径缓解技术和基于数据后处理的监控系统多径缓解技术都可以用来提高观测数据的质量。但是,由于接收机硬件资源,制造技术和系统实时要求的限制,两种技术的应用不能使观测数据的质量满足系统要求。根据多径信号的特点,提出一种新颖的装置,称为射频吸收巢,以进一步抑制天线场周围的多径效应。利用吸收套,一方面减轻了来自地平线或低于地平线的多径信号,另一方面有效地从泡沫的内表面反射了直接信号。实验结果表明,监测站的观测数据质量提高了20-40%,有效地提高了电离层模型和广域差的处理精度。

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