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On the Achievable Performance-Complexity Tradeoffs of Relay-Aided Space Shift Keying

机译:中继辅助空间移位键控可实现的性能复杂度折衷

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Future cellular networks require transmission technologies and protocols that are energy-efficient, and that can meet the growing demands of mobile data traffic with the best performance versus complexity tradeoff. The recently proposed single-RF space shift keying (SSK-) multiple-input-multiple-output (MIMO) transmission scheme is one of such physical layer technology that satisfies these criteria. In general, SSK requires a large number of antenna elements (with only one of them active) at the transmitter for high data rate transmission. This makes SSK particularly useful for the downlink of cellular systems. In this paper, we exploit the virtual MIMO concept to design SSK transmission schemes for the uplink of cellular networks. The idea is to take advantage of nearby nodes to the mobile terminal as a “virtual spatial-constellation diagram,” where the information can be encoded and transmitted to the final destination. By taking into account the virtual nature of the spatial-constellation diagram, we develop advanced demodulation techniques, perform a comprehensive mathematical analysis, as well as analyze the system complexity and energy consumption. It is also shown that the proposed scheme is capable of outperforming certain state-of-the-art protocols.
机译:未来的蜂窝网络需要高能效的传输技术和协议,并且要以最佳性能与复杂性之间的折衷来满足移动数据流量不断增长的需求。最近提出的单RF空移键控(SSK-)多输入多输出(MIMO)传输方案是满足这些标准的这种物理层技术之一。通常,SSK在发射机处需要大量天线元件(只有其中之一处于活动状态)才能进行高数据速率传输。这使得SSK对于蜂窝系统的下行链路特别有用。在本文中,我们利用虚拟MIMO概念为蜂窝网络的上行链路设计SSK传输方案。想法是利用移动终端附近的节点作为“虚拟空间星座图”,在该图中可以对信息进行编码并将其传输到最终目的地。考虑到空间星座图的虚拟性质,我们开发了先进的解调技术,进行了全面的数学分析,以及分析了系统的复杂性和能耗。还显示出,所提出的方案能够胜过某些最新技术协议。

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