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An integrated low power system architecture for spectrum sensing enabled cognitive radios

机译:用于频谱感知的认知无线电的集成式低功耗系统架构

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Continuous rise in the number of users as well as the increased requirement of bandwidth per user has created a need to use the spectrum efficiently. Cognitive radios are solutions proposed to address the problem of using the spectrum efficiently. Regulatory bodies around the world, FCC included, have introduced specifications intended for cognitive radio applications. TV White Space devices, which operate in the spectrum holes caused by transition from analog to digital transmission, were the first targeted applications for cognitive radio specifications (IEEE 802.22, ECMA-392). However, to maximize the potential of the idea of cognitive radios it is desirable to be able to sense the spectrum across a wide band and accordingly transmit ‘smartly’. This paper presents a possible transceiver architecture meant for integrated solutions while providing tentative block level specifications for the proposed architecture. Existing spectrum sensing techniques are discussed and an integrated low power system architecture at the PHY level suitable for waveform-based spectrum sensing technique that utilizes co-operative spectrum sensing methods is proposed.
机译:用户数量的不断增加以及每个用户对带宽的需求不断增加,因此需要有效利用频谱。认知无线电是为解决有效使用频谱问题而提出的解决方案。包括FCC在内的全球监管机构已经引入了旨在用于认知无线电应用的规范。电视白空间设备在从模拟到数字传输的过渡导致的频谱空洞中工作,是认知无线电规范(IEEE 802.22,ECMA-392)的第一个目标应用。但是,为了最大程度地发挥认知无线电概念的潜力,希望能够在宽频带上感知频谱并相应地“智能”发送。本文提出了一种可能用于集成解决方案的收发器架构,同时为所提议的架构提供了暂定的块级规范。讨论了现有的频谱检测技术,并提出了一种适用于基于波形的频谱检测技术的PHY级集成低功耗系统架构,该技术利用了协作频谱检测方法。

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