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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Interference-constrained adaptive simultaneous spectrum sensing and data transmission scheme for unslotted cognitive radio network
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Interference-constrained adaptive simultaneous spectrum sensing and data transmission scheme for unslotted cognitive radio network

机译:非时隙认知无线电网络中受干扰约束的自适应同时频谱感知和数据传输方案

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Cognitive radio (CR) is widely recognized as a novel approach to improve the spectrum efficiency. However, there exists one problem needed to be resolved urgently, that is the two conflicting goals in CR network: one is to minimize the interference to primary (licensed) system; the other is to maximize the throughput of secondary (unlicensed) system. Meanwhile, the secondary user (SU) has to monitor the spectrum continuously to avoid the interference to primary user (PU), thus the throughput of the secondary system is affected by how often and how long the spectrum sensing is performed. Aiming to balance the two conflicting goals, this article proposes a novel Interference-Constrained Adaptive Simultaneous spectrum Sensing and data Transmission (ICASST) scheme for unslotted CR network, where SUs are not synchronized with PUs. In the ICASST scheme, taking advantage of the statistic information of PU's activities, the data transmission time is adaptively adjusted to avoid the interference peculiar to unslotted CR network; the operation of spectrum sensing is moved to SU receiver from SU transmitter to increase the data transmission time and hence improve the throughput of SU. Simulation results validate the efficiency of ICASST scheme, which significantly increases the throughput of secondary system and decreases the interference to PU simultaneously.
机译:认知无线电(CR)被公认为提高频谱效率的一种新颖方法。但是,存在一个亟待解决的问题,那就是CR网络中的两个相互矛盾的目标:一个是最大程度地减少对主(许可)系统的干扰;另一个是要解决这个问题。另一个是最大化辅助(非许可)系统的吞吐量。同时,次要用户(SU)必须连续监视频谱以避免对主要用户(PU)的干扰,因此,次要系统的吞吐量受执行频谱感测的频率和时间影响。为了平衡这两个相互矛盾的目标,本文提出了一种新的干扰约束自适应频谱同步传感和数据传输(ICASST)方案,用于不带时隙的CR网络,其中SU不与PU同步。在ICASST方案中,利用PU活动的统计信息,可以自适应地调整数据传输时间,以避免非时隙CR网络特有的干扰。频谱感测的操作从SU发射机移到SU接收机,以增加数据传输时间,从而提高SU的吞吐量。仿真结果验证了ICASST方案的有效性,该方案大大提高了二次系统的吞吐量,同时降低了对PU的干扰。

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