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Non-contiguous multicarrier waveforms in practical opportunistic wireless systems

机译:实际机会无线系统中的非连续多载波波形

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Multicarrier modulation is well suited for future wireless communication systems owing to its ability to opportunistically transmit across unoccupied frequency bands. In addition to multicarrier modulation being able to attain high data rates with a sufficient level of error robustness, it also has the potential to achieve transmission flexibility via the noncontiguous access of wireless spectrum. Since both these approaches are highly relevant not only for the conventional wireless communication systems, but also for radar and navigation applications, in this study, the authors shall investigate them for enabling non-contiguous multicarrier modulation that can be used to facilitate spectrally opportunistic cognitive radio systems. One of the approaches is a variant of orthogonal frequency division multiplexing (OFDM), called noncontiguous OFDM (NC-OFDM), whereas the other approach is based on the non-contiguous version of the filter bank approach non-orthogonal frequency division multiplexing (NOFDM), referred to as non-contiguous NOFDM (NC-NOFDM). The performance of these two approaches is assessed in terms of interference mitigation, which involves the use of actual spectrum measurement data, as well as computational complexity.
机译:由于多载波调制能够在未占用的频带上进行机会传输,因此它非常适合未来的无线通信系统。除了能够以足够的抗误码能力获得高数据速率的多载波调制外,它还具有通过无线频谱的非连续访问实现传输灵活性的潜力。由于这两种方法不仅与常规无线通信系统高度相关,而且与雷达和导航应用高度相关,因此在本研究中,作者将对其进行研究,以实现能够用于促进频谱机会性认知无线电的非连续多载波调制系统。一种方法是正交频分复用(OFDM)的一种变体,称为非连续OFDM(NC-OFDM),而另一种方法是基于滤波器组方法的非连续版本的非正交频分复用(NOFDM) ),称为非连续NOFDM(NC-NOFDM)。根据干扰缓解评估了这两种方法的性能,这涉及实际频谱测量数据的使用以及计算复杂性。

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