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An experimental study of quasi-synchronous multiuser communications in cluttered scenarios at low VHF

机译:低VHF下杂乱场景下准同步多用户通信的实验研究

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Reliable, ad hoc communication among multiple users is a crucial objective in complex tactical scenarios. A major challenge is that synchronization mechanisms (such as GPS) are intermittent and fixed centralized coordinators (e.g., base stations) are infeasible. Classical approaches to multiuser communications relying on tight time synchronization and/or power control are impractical in such scenarios. Furthermore, state-of-the-art systems operating at microwave frequencies suffer from lack of penetration and multipath effects causing significant channel variability and exacerbating the near-far effect. In this paper, we investigate the potential advantages of the favorable channel characteristics of the lower VHF band for reliable multiuser communications in highly cluttered environments among near ground nodes. We focus on a class of code division multiple access (CDMA) strategies known as quasi-synchronous (QS) direct sequence (DS) CDMA and use moderate to high QAM constellations. A key aspect of QS CDMA codes is their robustness to coarse inter-user time synchrony and power mismatch, which greatly relaxes the rate that nodes must re-synchronize with each other. Our study experimentally explores the possibilities of multiuser communications in harsh environments among near-ground nodes. Our measurements involve three canonic indoor-to-outdoor, indoor-to-indoor and through-building channels characterized by obstacles and clutter that represent very difficult propagation environments, especially at microwave frequencies. We also study the spatial and temporal variability of our system and characterize the impact of frequency offset on code orthogonality with simulations and experiments. We show that our system has strong potential for excellent multiuser performance in infrastructure-poor regimes.
机译:在复杂的战术场景中,多个用户之间可靠的临时通信是至关重要的目标。一个主要的挑战是同步机制(例如GPS)是间歇性的,而固定的集中式协调器(例如基站)是不可行的。在这种情况下,依靠紧的时间同步和/或功率控制的多用户通信的经典方法是不切实际的。此外,在微波频率下运行的最新系统缺乏穿透性和多径效应,从而导致显着的信道可变性并加剧了远近效应。在本文中,我们研究了在地面附近节点之间高度杂乱的环境中,较低的VHF频段有利的信道特性对于可靠的多用户通信的潜在优势。我们专注于一类称为准同步(QS)直接序列(DS)CDMA的码分多址(CDMA)策略,并使用中等到较高的QAM星座图。 QS CDMA代码的一个关键方面是它们对粗略的用户间时间同步和功率失配的鲁棒性,这极大地放宽了节点必须彼此重新同步的速率。我们的研究实验性地探索了在恶劣环境中近地面节点之间进行多用户通信的可能性。我们的测量涉及三个典型的室内到室外,室内到室内和建筑物通过通道,这些通道的特征是障碍物和杂波,这些杂波和杂波代表非常困难的传播环境,尤其是在微波频率下。我们还研究了系统的时空变异性,并通过仿真和实验来表征频率偏移对代码正交性的影响。我们表明,在基础架构较差的情况下,我们的系统具有出色的多用户性能的强大潜力。

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