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Improved SDR Frequency Tuning Algorithm for Frequency Hopping Systems

机译:跳频系统的改进SDR频率调谐算法

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Frequency hopping (FH) is a common characteristic of a wide variety of communication systems. On the other hand, software-defined radio (SDR) is an increasingly utilized technology for implementing modern communication systems. The main challenge when trying to realize an SDR FH system is the frequency tuning time, that is, the higher the hopping rate, the lower the required frequency tuning time. In this paper, significant universal hardware driver tuning options (within GNU Radio software) are investigated to discover the tuning option that gives the minimum frequency tuning time. This paper proposes an improved SDR frequency tuning algorithm for the generation of a target signal (with a given target frequency). The proposed algorithm aims to improve the frequency tuning time without any frequency deviation, thus allowing the realization of modern communication systems with higher FH rates. Moreover, it presents the design and implementation of an original GNU Radio Companion block that utilizes the proposed algorithm. The target SDR platform is that of the Universal Software Radio Peripheral USRP-N210 paired with the RFX2400 daughter board. Our results show that the proposed algorithm achieves higher hopping rates of up to 5,000 hops/second.
机译:跳频(FH)是各种通信系统的共同特征。另一方面,软件定义无线电(SDR)是用于实现现代通信系统的一种越来越被利用的技术。尝试实现SDR FH系统时的主要挑战是频率调谐时间,即,跳跃率越高,所需的频率调谐时间越短。在本文中,对重要的通用硬件驱动程序调整选项(在GNU Radio软件中)进行了研究,以发现能够提供最小频率调整时间的调整选项。本文提出了一种改进的SDR频率调谐算法,用于生成目标信号(具有给定的目标频率)。所提出的算法旨在在没有任何频率偏差的情况下改善频率调谐时间,从而允许实现具有更高FH率的现代通信系统。此外,它介绍了利用所提出算法的原始GNU Radio Companion模块的设计和实现。目标SDR平台是与RFX2400子板配对的通用软件无线电外围设备USRP-N210的平台。我们的结果表明,所提出的算法可实现高达5,000跳/秒的更高跳频速率。

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