A Novel Unambiguous Multipath Mitigation Scheme for BOC(kn, n) Tracking in GNSS

Sanghun Kim, Seungsoo Yoo, Seokho Yoon, Sun Yong Kim
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引用次数: 16

Abstract

Binary offset carrier (BOC) signal tracking is one of the challenging problems in future Global Navigation Satellite Systems (GNSS) including Galileo and Global Positioning System (GPS), because false lock could be generated in the tracking procedure due to multiple side-peaks in BOC autocorrelation. Multipath mitigation is another challenging problem in GNSS systems, because the presence of multi-path signals gives a range error. Recently, a novel tracking scheme for the BOC signal was proposed by Garin. However, it cannot completely resolve the ambiguity problem due to the false lock and has not enough multipath mitigation performance. Moreover, Garin's scheme is applicable to only BOC (n, n). In this paper, we propose a novel unambiguous multipath mitigation scheme. The proposed scheme is applicable to various BOC signals (i.e., BOC (kn, n)) and does not incur false lock point in the tracking procedure. In addition, the proposed scheme has appropriate multipath mitigation performance than traditional and Garin's schemes
GNSS中BOC(kn, n)跟踪的一种新型无二义多径缓解方案
二进制偏置载波(BOC)信号的跟踪是伽利略和全球定位系统(GPS)等未来全球导航卫星系统(GNSS)中具有挑战性的问题之一,由于BOC自相关存在多个侧峰,在跟踪过程中可能产生假锁。多路径缓解是GNSS系统中的另一个具有挑战性的问题,因为多路径信号的存在会产生距离误差。最近,Garin提出了一种新的BOC信号跟踪方案。但是,它不能完全解决由于假锁导致的歧义问题,并且没有足够的多径缓解性能。此外,Garin方案仅适用于BOC (n, n)。在本文中,我们提出了一种新的无二义多径缓解方案。该方案适用于各种BOC信号(即BOC (kn, n)),并且在跟踪过程中不会产生假锁点。此外,与传统方案和Garin方案相比,该方案具有较好的多径抑制性能
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