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L1 和 L5 波段 GNSS 信号获取的比较。

Comparison of L1 and L5 Bands GNSS Signals Acquisition.

机构信息

LASSENA, École de Technologie Supérieure (ÉTS), 1100 Notre-Dame Street West, Montreal, QC H3C 1K3, Canada.

Syderal, Neuenburgstrasse 7, 3238 Gals, Switzerland.

出版信息

Sensors (Basel). 2018 Aug 23;18(9):2779. doi: 10.3390/s18092779.

Abstract

Nowadays, civil Global Navigation Satellite System (GNSS) signals are available in both L1 and L5 bands. A receiver does not need to acquire independently the signals in both bands coming from a same satellite, since their carrier Doppler and code delay are closely related. Therefore, the question of which one to acquire first rises naturally. Although the common thought would tell the L1 band signals which are narrowband, an accurate comparison has never been done, and the decision is not as easy as it seems. Indeed, L5 band signals have several advantages such as stronger power, lower carrier Doppler, or a pilot channel, unlike the Global Positioning System (GPS) L1 C/A signal. The goal of this paper is therefore to compare the acquisition of L1 and L5 bands signals (GPS L1 C/A and L5, Galileo E1 and E5a/b) to determine which one is more complex and by which factor, in terms of processing time and memory, considering hardware receivers and the parallel code search. The results show that overall the L5 band signals are more complex to acquire, but it depends strongly on the conditions. The E5 signal is always more complex to acquire than E1, while the L5 signal can have a complexity close to the L1 C/A in some cases. Moreover, precise assistance providing accurate Doppler could significantly reduce the L5 complexity below the L1 complexity.

摘要

如今,民用全球导航卫星系统 (GNSS) 信号可在 L1 和 L5 波段使用。接收器不需要独立获取来自同一颗卫星的这两个波段的信号,因为它们的载波多普勒和码延迟密切相关。因此,自然而然地就会出现先获取哪个信号的问题。虽然通常认为 L1 带宽信号是窄带的,但从未进行过准确的比较,而且这个决定并不像看起来那么简单。实际上,L5 带宽信号具有几个优势,例如更强的功率、更低的载波多普勒或导频信道,而不像全球定位系统 (GPS) L1 C/A 信号那样。因此,本文的目的是比较 L1 和 L5 带宽信号(GPS L1 C/A 和 L5、伽利略 E1 和 E5a/b)的获取,以确定在处理时间和内存方面,考虑硬件接收器和并行码搜索,哪个更复杂以及复杂多少。结果表明,总体而言,L5 带宽信号的获取更复杂,但这强烈取决于条件。E5 信号的获取总是比 E1 更复杂,而在某些情况下,L5 信号的复杂度可以接近 L1 C/A。此外,提供准确多普勒的精确辅助可以显著降低 L5 的复杂度,使其低于 L1 的复杂度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df88/6165328/6c95fd690892/sensors-18-02779-g001.jpg

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