FFT Splitting for Improved FPGA-Based Acquisition of GNSS Signals

Author:

Leclère Jérôme12,Botteron Cyril1,Landry René Jr.2,Farine Pierre-André1

Affiliation:

1. Electronics and Signal Processing Laboratory (ESPLAB), École Polytechnique Fédérale de Lausanne (EPFL), 2000 Neuchâtel, Switzerland

2. Laboratory of Space Technologies, Embedded Systems, Navigation and Avionic (LASSENA), École de Technologie Supérieure (ÉTS), Montréal, QC, Canada H3C 1K3

Abstract

With modern global navigation satellite system (GNSS) signals, the FFT-based parallel code search acquisition must handle the frequent sign transitions due to the data or the secondary code. There is a straightforward solution to this problem, which consists in doubling the length of the FFTs, leading to a significant increase of the complexity. The authors already proposed a method to reduce the complexity without impairing the probability of detection. In particular, this led to a 50% memory reduction for an FPGA implementation. In this paper, the authors propose another approach, namely, the splitting of a large FFT into three or five smaller FFTs, providing better performances and higher flexibility. For an FPGA implementation, compared to the previously proposed approach, at the expense of a slight increase of the logic and multiplier resources, the splitting into three and five allows, respectively, a reduction of 40% and 64% of the memory, and of 25% and 37.5% of the processing time. Moreover, with the splitting into three FFTs, the algorithm is applicable for sampling frequencies up to 24.576 MHz for L5 band signals, against 21.846 MHz with the previously proposed algorithm. The algorithm is applied here to the GPS L5 and Galileo E5a, E5b, and E1 signals.

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences,General Engineering,Instrumentation

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Hard SyDR: A Benchmarking Environment for Global Navigation Satellite System Algorithms;Sensors;2024-01-09

2. A Survey on Low-Power GNSS;IEEE Communications Surveys & Tutorials;2023

3. An Open-Source Software-Defined Receiver for GNSS Algorithms Benchmarking;2022 14th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT);2022-10-11

4. Influence of Continuous Wave Interference on the Efficiency of the Non-Threshold Search Procedure for a Noise-Like Signal by Delay Time with Transition to the Frequency Domain;Journal of Communications Technology and Electronics;2022-08

5. Feasibility Study of a Unified Fast Acquisition Core for Modern GPS Signals;Lecture Notes in Electrical Engineering;2022

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