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Real-time white spectrum recognition for cognitive radio networks over TV white spaces

机译:电视空白空间上认知无线电网络的实时白频谱识别

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摘要

A key technical challenge in TV white spaces is the efficient spectrum usage without interfering with primary users. This paper considers available spectrum discovery scheme using in-band sensing signal to support super Wi-Fi services effectively. The proposed scheme in this paper adopts non-contiguous orthogonal frequency-division multiplexing (NC-OFDM) to utilize the fragmented channel in TV white space due to microphones while this channel cannot be used in IEEE 802.11af. The proposed solution is a novel available spectrum discovery scheme by exploiting the advantages of a sensing signaling. The proposed method achieves considerable improvement in throughput and delay time. The proposed method can use more subcarriers for transmission by applying NC-OFDM in contrast with the conventional IEEE 802.11af standard. Moreover, the increased number of wireless microphones (WMs) hardly affects the throughput of the proposed method because our proposal only excludes some subcarriers used by WMs. Additionally, the proposed method can cut discovery time down to under 10 ms because it can find available channels in real time by exchanging sensing signal without interference to the WM.
机译:电视空白空间中的一项关键技术挑战是如何有效利用频谱,而又不会干扰主要用户。本文考虑了使用带内传感信号的可用频谱发现方案,以有效支持超级Wi-Fi服务。本文提出的方案采用非连续正交频分复用(NC-OFDM)来利用麦克风产生的电视空白空间中的碎片信道,而该信道不能在IEEE 802.11af中使用。通过利用感测信令的优点,提出的解决方案是一种新颖的可用频谱发现方案。所提出的方法实现了吞吐量和延迟时间的显着改善。与常规的IEEE 802.11af标准相比,通过应用NC-OFDM,所提出的方法可以使用更多的子载波进行传输。此外,无线麦克风(WM)数量的增加几乎不会影响所提出方法的吞吐量,因为我们的建议仅排除了WM使用的一些子载波。此外,该方法可以将发现时间缩短到10 ms以下,因为它可以通过交换感测信号实时找到可用信道,而不会干扰WM。

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