Demonstration of synchronization method for frequency hopping ad hoc network

Juha Huovinen, T. Vanninen, J. Iinatti
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引用次数: 1

Abstract

Anti-jamming capability and protection against interception are key priorities in wireless mobile ad hoc networks (MANETs) or sensor networks for military applications. These features are supported by spread spectrum (SS) techniques such as frequency hopping (FH). In an FH ad hoc network, the phase of hopping sequence, i.e., FH-code phase is typically derived from the local clock reading of each node. Therefore, network-wide time synchronization is needed in order to get the nodes to simultaneously switch to the same frequency channel, i.e., hop synchronously. In this paper, a rarely issued distributed FH-code phase synchronization method for an FH MANET is implemented and demonstrated on wireless open-access research platforms (WARPs). In the earlier studies the considered method has been investigated to be military compliant in the anti-jamming and low probability of detection -sense. Herein, the measurements are reported for static scenarios of two and three nodes. Sufficient time synchronization is managed to be preserved for the frequency hopping operations in the presence of the measured clock drifts. Furthermore, it is shown that the system is able to maintain the FH-code phase synchronization as long as the clock errors are less than half the dwell time.
跳频自组网同步方法的演示
抗干扰能力和防拦截保护是无线移动自组织网络(manet)或军事应用传感器网络的关键优先事项。这些特性是由扩频(SS)技术如跳频(FH)支持的。在跳频自组织网络中,跳频序列的相位,即跳频码相位通常由每个节点的本地时钟读取来确定。因此,为了使节点同时切换到同一频率通道,即同步跳,需要全网范围的时间同步。本文在无线开放接入研究平台(WARPs)上实现并演示了一种很少发布的用于跳频MANET的分布式跳频码相位同步方法。在早期的研究中,所考虑的方法在抗干扰和低探测概率方面具有军事适应性。在这里,测量报告了两个和三个节点的静态场景。在存在测量时钟漂移的情况下,为跳频操作保留了足够的时间同步。此外,研究表明,只要时钟误差小于驻留时间的一半,系统就能保持跳频码相位同步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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