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Cooperative relay techniques for cognitive radio systems: Spectrum sensing and secondary user transmissions

机译:认知无线电系统的协作中继技术:频谱感测和辅助用户传输

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Cognitive radio is a promising technology that enables an unlicensed user (also known as a cognitive user) to identify the white space of a licensed spectrum band (called a spectrum hole) and utilize the detected spectrum hole for its data transmissions. To design a reliable and efficient cognitive radio system, there are two fundamental issues: to devise an accurate and robust spectrum sensing algorithm to detect spectrum holes as accurately as possible; and to design a secondary user transmission mechanism for the cognitive user to utilize the detected spectrum holes as efficiently as possible. This article investigates and shows that cooperative relay technology can significantly benefit the abovementioned two issues, spectrum sensing and secondary transmissions. We summarize existing research about the application of cooperative relays for spectrum sensing (referred to as the cooperative sensing) and address the related potential challenges. We discuss the use of cooperative relays for the secondary transmissions with a primary user's quality-of-service (QoS) constraint, for which a diversity-multiplexing trade-off is developed. In addition, this article shows a trade-off design of cognitive transmissions with cooperative relays by jointly considering the spectrum sensing and secondary transmissions in cognitive radio networks.
机译:认知无线电是一种有前途的技术,它可使未许可的用户(也称为认知用户)识别许可的频谱带的空白(称为频谱空域),并将检测到的频谱空域用于其数据传输。要设计一个可靠而有效的认知无线电系统,有两个基本问题:设计一种准确而健壮的频谱感应算法,以尽可能准确地检测出频谱空洞;为认知用户设计第二用户传输机制,以尽可能有效地利用检测到的频谱空洞。本文研究并表明,协作中继技术可以极大地受益于上述两个问题,即频谱感测和二次传输。我们总结了有关将协作继电器应用于频谱感测(称为协作感测)的现有研究,并解决了相关的潜在挑战。我们讨论了在具有主要用户服务质量(QoS)约束的辅助传输中使用协作中继的情况,为此开发了一种分集复用的折衷方案。此外,本文通过共同考虑认知无线电网络中的频谱感应和二次传输,展示了一种具有协作中继的认知传输的折衷设计。

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