Location-based Mechanism for Positioning of a Mobile Relay

Filip Lemic, A. Behboodi, V. Handziski, A. Zubow, R. Mathar, A. Wolisz
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引用次数: 6

Abstract

Leveraging a relay for communication is a promising approach for improving throughput, coverage, and energy efficiency in wireless networks. A mobile relay that is capable of positioning itself at different locations opens the possibility for dynamic optimization of the path quality between the source and the nomadic destination. How to optimally position the mobile relay in order to maximize the path quality, however, remains a challenging task. Under the assumption that the physical location information of the devices are either known or can be estimated, we propose a mechanism for positioning of the mobile relay with the aim of maximizing the SNR between the source and the destination. The proposed mechanism takes into account the practically unavoidable inaccuracies of estimated locations, as well as the propagation characteristics of a served environment. Using WiFi as an example technology, we experimentally evaluate the proposed mechanism in a complex indoor environment with the support of a specifically designed testbed infrastructure. For relatively small localization errors, our results show less than 4 dB difference between the measured SNR at optimal locations and the SNR at locations yielded by the proposed mechanism. Our results also illustrate how the quality of the paths created by the proposed positioning mechanism degrades in the face of increasing localization errors.
基于位置的移动中继定位机制
利用中继进行通信是一种很有前途的方法,可以改善无线网络中的吞吐量、覆盖范围和能源效率。能够在不同位置定位的移动中继为动态优化源和移动目的地之间的路径质量提供了可能。然而,如何优化移动继电器的位置,使路径质量最大化,仍然是一个具有挑战性的任务。假设设备的物理位置信息是已知的或可以估计的,我们提出了一种移动中继的定位机制,其目的是最大化源和目的之间的信噪比。所提出的机制考虑到估计位置实际上不可避免的不准确性,以及服务环境的传播特性。以WiFi为例,我们在一个专门设计的测试平台基础设施的支持下,在复杂的室内环境中实验评估了所提出的机制。对于相对较小的定位误差,我们的结果表明,在最佳位置测量的信噪比与所提出机制产生的位置的信噪比之间的差异小于4 dB。我们的研究结果还说明了在定位误差增加的情况下,所提出的定位机制所产生的路径质量是如何下降的。
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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