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Reconfigurable antenna-based space-shift keying for spectrum sharing systems

机译:用于频谱共享系统的可重构的基于天线的空移键控

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Based on the concept of reconfigurable antennas (RAs), SSK-RA has been recently proposed as a novel transmission scheme to improve the performance of space shift keying (SSK). In this context, it has been shown that RAs' reconfigurable properties can be used as additional degrees of freedom to enhance the throughput, implementation complexity, and error performance of SSK. In this paper, we extend SSK-RA to cognitive radio (CR) systems in an effort to improve the secondary system's performance in a spectrum sharing scenario. Taking advantage of the interplay between RAs and the propagation channels for both the secondary and interference links, we propose a RA-based scheme with pointing-direction reconfiguration aiming at improving the secondary system's performance while verifying an outage interference constraint to the primary user (PU). In this paper, we analyse the performance of the proposed scheme in Rician fading channels and provide simulation examples confirming these analytical results. The proposed schemes are shown to offer better bit error rate (BER) performance and lower implementation complexity when compared to conventional antenna-based spectrum sharing systems.
机译:基于可重构天线(RA)的概念,最近已提出SSK-RA作为一种新颖的传输方案,以改善空间移位键控(SSK)的性能。在这种情况下,已经证明RA的可重新配置属性可以用作附加的自由度,以增强SSK的吞吐量,实现复杂性和错误性能。在本文中,我们将SSK-RA扩展到认知无线电(CR)系统,以提高频谱共享方案中辅助系统的性能。利用次要链路和干扰链路的RA和传播通道之间的相互作用,我们提出了一种基于RA的方案,该方案具有指向性重新配置,旨在提高次要系统的性能,同时验证对主要用户(PU)的中断干扰约束)。在本文中,我们分析了该方案在Rician衰落信道中的性能,并提供了验证这些分析结果的仿真示例。与传统的基于天线的频谱共享系统相比,所提出的方案显示出更好的误码率(BER)性能和更低的实现复杂性。

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