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Sliding Window Spectrum Sensing for Full-Duplex Cognitive Radios with Low Access-Latency

机译:具有低接入延迟的全双工认知收音机的滑动窗谱检测

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In a cognitive radio system the failure of secondary user (SU) transceivers to promptly vacate the channel can introduce significant access-latency for primary or high-priority users (PU). In conventional cognitive radio systems, the backoff latency is exacerbated by frame structures that only allow sensing at periodic intervals. Concurrent transmission and sensing using self-interference suppression has been suggested to improve the performance of cognitive radio systems, allowing decisions to be taken at multiple points within the frame. In this paper, we extend this approach by proposing a sliding-window full-duplex model allowing decisions to be taken on a sample-by-sample basis. We also derive the access-latency for both the existing and the proposed schemes. Our results show that the access-latency of the sliding scheme is decreased by a factor of 2.6 compared to the existing slotted full-duplex scheme and by a factor of approximately 16 compared to a half-duplex cognitive radio system. Moreover, the proposed scheme is significantly more resilient to the destructive effects of residual self-interference compared to previous approaches.
机译:在认知无线电系统中,辅助用户(SU)收发器的故障迅速腾出信道可以引入主或高优先级用户(PU)的显着访问延迟。在传统的认知无线电系统中,退避延迟被帧结构加剧,其仅允许以周期性间隔感测。已经建议使用自干扰抑制的并发传输和感测来改善认知无线电系统的性能,允许在帧内的多个点处采取决定。在本文中,我们通过提出允许逐个样本采用的决定来扩展这种方法。我们还导出了现有和建议方案的访问延迟。我们的研究结果表明,与现有的开槽全双工方案相比,滑动方案的接入潜伏量减少了2.6因子,并与半双工认知无线电系统相比大约16个。此外,与先前的方法相比,所提出的方案显着对残留自干扰的破坏性影响更大。

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