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High sensitive acquisition of signals for inter-satellite links of navigation constellation based on two-dimension partitioned FFTs

机译:基于二维分区FFT的导航星座卫星间链路的高灵敏度信号获取

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摘要

A direct sequence spread spectrum (DSSS) signal is commonly used in inter-satellite link (ISL) in navigation constellation; however, acquisition is a challenging task because of large-scale relative movement between satellites. In general, a signal search (carrier frequency and code phase) is implemented using two-dimensional partitioned fast Fourier transforms (FFTs), which is limited by the memory of the processor. Nevertheless, the carrier's continuity is damaged by the circular shift. Noncoherent integration is performed to circumvent this problem. However, the acquisition sensitivity will be reduced because of the square loss. In this paper, we analyze the processing flow of traditional noncoherent integration method and the new presented coherent integration method with compensation. Besides, the comparison of computation cost between the new approach and the conventional method is done. Numerical results show that the coherent method can improve the sensitivity of acquiring weak signals and save about 60% computation cost as well.
机译:直接序列扩频(DSSS)信号通常用于导航星座中的卫星间链路(ISL);然而,由于卫星之间的大规模相对运动,获取是一项具有挑战性的任务。通常,使用二维分区快速傅里叶变换(FFT)来实现信号搜索(载波频率和代码相位),这受到处理器内存的限制。然而,承运人的连续性受到循环移位的损害。执行非相干集成来避免此问题。但是,由于平方损耗会降低采集灵敏度。在本文中,我们分析了传统的非相干积分方法和新提出的带补偿的相干积分方法的处理流程。此外,还对新方法与常规方法的计算成本进行了比较。数值结果表明,相干法可以提高获取微弱信号的灵敏度,并节省约60%的计算成本。

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