Multi-level environment identification method for impulsive radio systems

L. Mucchi, E. Del Re, T. Landi
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引用次数: 4

Abstract

Current wireless communication systems strongly need to know if a line-of-sight (LOS) path is present between transmitter and receiver. The next generation of wireless systems will require more than the simple distinction between a LOS and a non-LOS (NLOS) link condition. The future short-range wireless communication and localization systems will require an exact environment identification in order to better set up all the services which the users require with a specific quality level. In this paper a new method for environment identification is proposed. This method is able to identify not only the LOS/NLOS condition but also the environment typology, i.e., if the propagation condition is typical of an office or a residential or an industrial area or outdoor, etc. If the environment in which the transmitter and the receiver are immersed is known, two main advantages can be reached: first, the localization of all the users is more accurate and, secondly, each receiver can be correctly configured in order to best adapt to the propagation conditions (cognitive approach) or to the network conditions (cooperative approach). Unlike the techniques discussed in the literature, the one proposed in this paper does not require any estimation, such as the estimation of the channel parameters. The method proposed here is based on statistical processing of the raw received probe UWB signal.
脉冲无线电系统的多级环境识别方法
当前的无线通信系统迫切需要知道发射机和接收机之间是否存在视距(LOS)路径。下一代无线系统需要的不仅仅是对LOS和非LOS (NLOS)链路条件的简单区分。未来的短距离无线通信和定位系统将需要精确的环境识别,以便更好地以特定的质量水平设置用户所需的所有服务。本文提出了一种新的环境识别方法。这种方法不仅能够识别LOS/NLOS条件,还能够识别环境类型,即传播条件是典型的办公室、住宅、工业区还是室外等。如果发射器和接收器所处的环境是已知的,则可以获得两个主要优势:首先,所有用户的定位更准确;其次,每个接收器可以正确配置,以便最好地适应传播条件(认知方法)或网络条件(合作方法)。与文献中讨论的技术不同,本文提出的技术不需要任何估计,例如信道参数的估计。本文提出的方法是基于原始接收探针超宽带信号的统计处理。
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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