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A Unified Model for Interference Analysis in Unlicensed Frequency Bands

机译:无执照频段干扰分析的统一模型

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This paper presents a unified framework for interference characterizations and analysis in the unlicensed frequency bands and the like, where many narrowband heterogenous terminals coexist and share a common wideband channel using less-restrictive transmission etiquettes. Here, each transmitter/receiver pair makes his own decision regarding when to access the channel without any direct coordination with the other users. This is usually based on the local channel conditions at the receiver or/and the transmitter. Due to the nature of the wireless channel, communication in such environments is usually prone to arbitrary partial-band interference which can be generated anywhere in the space and frequency domains. In this paper, a new spatial-spectral interference model is introduced, where interferers can be of any power spectral density and are distributed according to a Poisson process in space and frequency domains. This basic model is extended to include the effects of channelization, where users are allowed only to transmit at a preassigned set of discrete frequencies. This is further extended to include also the effects of spectral-spatial guard zones, where the interferers can not exist in a given band nearby the victim receiver. Based on this multidimensional spatial-spectral Poisson model and the accurate conditional Gaussian analysis, explicit expressions are derived for average error rates of different communication systems.
机译:本文提出了一个统一的框架,用于无执照频段等中的干扰表征和分析,在该频段中,许多窄带异构终端共存并使用限制较少的传输礼仪共享一个公共宽带信道。在此,每个发送器/接收器对都在不与其他用户进行任何直接协调的情况下做出有关何时访问该信道的决定。这通常基于接收器或/和发送器的本地信道状况。由于无线信道的性质,在这样的环境中的通信通常倾向于任意的局部频带干扰,该干扰可能在空间和频域中的任何地方产生。本文介绍了一种新的空间频谱干扰模型,其中干扰物可以具有任何功率谱密度,并且根据泊松过程在空间和频域中进行分布。该基本模型已扩展为包括信道化的影响,其中仅允许用户以预先分配的一组离散频率进行传输。这进一步扩展为还包括频谱空间保护区的影响,其中干扰源不能存在于受害接收机附近的给定频带中。基于此多维空间光谱泊松模型和精确的条件高斯分析,可以得出不同通信系统平均错误率的显式表达式。

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