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Novel sensing and joint beam and null steering based resource allocation for cross-tier interference mitigation in cognitive femtocell networks

机译:新型智能感知,基于联合波束和零转向的资源分配,用于认知毫微微小区网络中的跨层干扰缓解

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Cognitive radios and femtocell networks are gaining much popularity due to the formers ability to carry out unlicensed transmission in licensed bands and the latter's ability to increase the indoor capacity by bringing the transmitter and receiver closer to each other. The combination of the two provides us with a joint benefit of unlicensed transmission and increased system capacity. However, deployments of such cognitive radio based femtocell networks (CRFN) can pose some severe cross-tier interference towards the primary system. In this paper, we propose a novel spectrum sensing technique based on Uniform Linear array (ULA) combined with Genetic Algorithm to detect not only the presence of a Primary user but also estimate its parameters such as range, frequency, angle of arrival and amplitude. Furthermore, a joint beamforming and null steering technique is proposed to maximize the signal to interference plus noise ratio (SINR) towards the secondary user equipment (SUE) while minimizing the interference towards the primary Base Station (PBS). We are reutilizing the sensed uplink (UL) frequency of the Primary users for the downlink (DL) transmission; the cognitive femtocell base station (CFBS) calculates such weight vector that aims at sending the maximum signal power towards the femto user and null in the direction of PBS.
机译:认知无线电和毫微微小区网络越来越受欢迎,这是因为前者能够在许可频段内进行非许可传输,而后者能够通过使发射机和接收机彼此靠近来增加室内容量。两者的结合为我们带来了无牌传输和增加系统容量的共同好处。但是,这种基于认知无线电的毫微微小区网络(CRFN)的部署可能会对主系统造成严重的跨层干扰。在本文中,我们提出了一种基于统一线性阵列(ULA)与遗传算法相结合的新颖频谱感测技术,它不仅可以检测主要用户的存在,而且可以估计其主要参数,例如范围,频率,到达角度和幅度。此外,提出了一种联合波束成形和零控制技术,以使对次用户设备(SUE)的信干噪比(SINR)最大化,同时对主基站(PBS)的干扰最小。我们将主要用户的感知上行链路(UL)频率重新用于下行链路(DL)传输;认知毫微微小区基站(CFBS)计算这样的权重向量,该权重向量旨在向毫微微用户发送最大信号功率,并且在PBS方向上为空。

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