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Joint Statistics of Radio Frequency Interference in Multiantenna Receivers

机译:多天线接收机中射频干扰的联合统计

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摘要

Many wireless data communications systems, such as LTE, Wi-Fi, and Wimax, have become or are rapidly becoming interference limited due to radio frequency interference (RFI) generated by both human-made and natural sources. Human-made sources of RFI include uncoordinated devices operating in the same frequency band, devices communicating in adjacent frequency bands, and computational platform subsystems radiating clock frequencies and their harmonics. Additive RFI for these wireless systems has predominantly non-Gaussian statistics, and is well modeled by the Middleton Class A distribution for centralized networks, and the symmetric alpha stable distribution for decentralized networks. Our primary contribution is the derivation of joint spatial statistical models of RFI generated from uncoordinated interfering sources randomly distributed around a multiantenna receiver. The derivation is based on statistical-physical interference generation and propagation mechanisms. Prior results on joint statistics of multiantenna interference model either spatially independent or spatially isotropic interference, and do not provide a statistical-physical derivation for certain network environments. Our proposed joint spatial statistical model captures a continuum between spatially independent and spatially isotropic statistics, and hence includes many previous results as special cases. Practical applications include co-channel interference modeling for various wireless network environments, including wireless ad hoc, cellular, local area, and femtocell networks.
机译:LTE,Wi-Fi和Wimax等许多无线数据通信系统已经或正在迅速成为干扰源,原因是人为和自然源均会产生射频干扰(RFI)。 RFI的人为来源包括在相同频带中运行的不协调设备,在相邻频带中进行通信的设备以及辐射时钟频率及其谐波的计算平台子系统。这些无线系统的附加RFI主要具有非高斯统计量,并且通过用于集中式网络的Middleton A类分布和用于分散式网络的对称alpha稳定分布进行了很好的建模。我们的主要贡献是从随机分布在多天线接收器周围的不协调干扰源生成的RFI联合空间统计模型的推导。该推导基于统计物理干扰的生成和传播机制。关于多天线干扰模型的联合统计的先前结果在空间上独立或在空间上各向同性干扰,并且不提供某些网络环境的统计物理推导。我们提出的联合空间统计模型捕获了空间独立统计和空间各向同性统计之间的连续体,因此包括许多以前的结果作为特殊情况。实际应用包括针对各种无线网络环境(包括无线ad hoc,蜂窝,局域网和毫微微小区网络)的同信道干扰建模。

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