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A Robust Cogntive Radio based Adaptive Frequency/Time Spreading for OFDM Systems

机译:用于OFDM系统的强大认知无线电基于自适应频率/时间扩展

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The cognitive radio (CR) technology is an effective technology for a flexible use of the radio spectrum. However, the interference between the primary and the CR users becomes a critical problem for the CR system. In this paper, we propose a cognitive radio based adaptive frequency/time spreading for the orthogonal frequency division multiplexing (OFDM) systems. This new approach is characterized by the adaptive frequency spreading and time spreading, and the adaptive power control of the subcarriers at the borders of the CR user's spectrum. Specifically, we propose a frequency spreading scheme according to the amount of the adjacent channel interference (ACI) coming from nearby primary users, which improves the power gain of data under severe interference. On the other hand, in order not to give an excessive interference the primary system, we also propose to reduce the power of the subcarriers near the edges of the bandwidth by spreading the signal in time. By the computer simulation, it has been proved that the proposed CR based OFDM system is very robust against ACI in comparison with the conventional OFDM system having adaptive guard bands. We also confirmed that the performance of the primary user is maintained with only a nominal degradation in the coexistence environment of the primary and CR system.
机译:认知无线电(CR)技术是灵活使用无线电频谱的有效技术。然而,主要和CR用户之间的干扰成为CR系统的关键问题。在本文中,我们提出了一种针对正交频分复用(OFDM)系统的认知无线电基的自适应频率/时间扩展。这种新方法的特征在于,自适应频率扩展和时间扩展,以及CR用户频谱边界处的子载波的自适应功率控制。具体地,我们提出了根据来自附近主要用户的相邻信道干扰(ACI)的量的频率扩展方案,这提高了严重干扰下数据的功率增益。另一方面,为了不给出主要系统的过度干扰,我们还建议通过在时间推广信号来降低带宽边缘附近的子​​载波的功率。通过计算机仿真,有人证明,与具有自适应保护频带的传统OFDM系统相比,所提出的CR基于DM系统对ACI非常鲁棒。我们还确认,主用户的性能仅在主和CR系统的共存环境中保持标称下降。

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