A Dual-Hierarchy Synchronization Method for Signal Preambles with High Detection Rates for Satellite-Based ADS-B Receivers with Different Sensitivities

IF 1.1 4区 工程技术 Q3 ENGINEERING, AEROSPACE International Journal of Aerospace Engineering Pub Date : 2024-03-21 DOI:10.1155/2024/8717164
Xinhui Jian, Xuejun Zhang, Jianxiang Ma, Weidong Zhang
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Abstract

Existing methods are unable to achieve high detection rates and low false alarm rates of satellite-based Automatic Dependent Surveillance-Broadcast (ADS-B) signal preambles at extremely low signal-to-noise ratios (SNRs) using limited on-star resources. In this paper, a dual-hierarchy synchronization method is proposed, including a first-level coarse synchronization and a second-level fine synchronization. The coarse synchronization process involves three steps: (1) detection of unknown signals, (2) soft decision, and (3) adaptive interval output. The first step introduces the threshold () of the minimum signal energy to be detected to guarantee a high detection rate. In the soft decision step, a value () designed to improve the robustness of the system curbs false detection caused by noise interference. In the last step, the coarse synchronization interval radius () is mapped out according to the SNR to reduce resource consumption. The fine synchronization process is based on the coarse synchronization output, and the correlation peak is calculated to complete the synchronization of the signal preambles. The results show that the proposed method achieves a high detection rate of 96% at an extremely low SNR using a low sampling frequency of 10 MHz. Furthermore, the adjustment of allows this method to be applied to ADS-B receivers with different sensitivities. The comprehensive performance of this method to achieve high detection rates and acceptable false alarm rates at extremely low SNRs with limited on-star resources is verified by final simulations to be superior to other methods.
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针对不同灵敏度的卫星 ADS-B 接收机的高检测率信号前置码的双层次同步方法
现有方法无法在信噪比(SNR)极低的情况下利用有限的星上资源实现基于卫星的自动监视广播(ADS-B)信号前置信号的高检测率和低误报率。本文提出了一种双层次同步方法,包括一级粗同步和二级细同步。粗同步过程包括三个步骤:(1) 未知信号检测;(2) 软决策;(3) 自适应间隔输出。第一步引入需要检测的最小信号能量阈值(),以保证较高的检测率。在软决策步骤中,为提高系统的鲁棒性而设计的值()可以抑制噪声干扰造成的误检测。在最后一步,根据信噪比绘制出粗同步间隔半径(),以减少资源消耗。细同步过程基于粗同步输出,通过计算相关峰值来完成信号前置码的同步。结果表明,所提出的方法在 10 MHz 的低采样频率下,以极低的信噪比实现了 96% 的高检测率。此外,该方法还可适用于不同灵敏度的 ADS-B 接收机。最终模拟验证了该方法的综合性能,即在有限的星上资源条件下,在极低信噪比条件下实现高检测率和可接受的误报率,优于其他方法。
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来源期刊
CiteScore
2.70
自引率
7.10%
发文量
195
审稿时长
22 weeks
期刊介绍: International Journal of Aerospace Engineering aims to serve the international aerospace engineering community through dissemination of scientific knowledge on practical engineering and design methodologies pertaining to aircraft and space vehicles. Original unpublished manuscripts are solicited on all areas of aerospace engineering including but not limited to: -Mechanics of materials and structures- Aerodynamics and fluid mechanics- Dynamics and control- Aeroacoustics- Aeroelasticity- Propulsion and combustion- Avionics and systems- Flight simulation and mechanics- Unmanned air vehicles (UAVs). Review articles on any of the above topics are also welcome.
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