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Distributed space shift keying for the uplink of relay-aided cellular networks

机译:中继蜂窝网络上行链路的分布式空间移位键控

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摘要

Space Shift Keying (SSK) is a novel low-complexity digital modulation technique for multiple antenna wireless systems. In SSK, blocks of data are encoded in the index of a specific transmit antenna of the antenna array, which is switched on for data transmission while all the other antennas radiate no power. Recent results have shown that SSK can outperform, with low computational complexity, conventional modulation schemes when many antennas at the transmitter are available. Unfortunately, this makes SSK a useful candidate for transmission technology only in the downlink of cellular networks. In this paper, by exploiting the concept of virtual antenna arrays, we propose a novel relay-aided scheme to make SSK useful in the uplink of cellular networks. The specific contributions of this paper are as follows: i) the optimal decoder which takes into account decoding errors at the relays is developed; and ii) the performance in terms of Average-Bit-Error-Probability (ABEP), and the energy gain in terms of Relative-Average-Energy-Reduction (RAER) per bit is studied. Via Monte-Carlo simulations, it is shown that the proposed optimal decoder outperforms the conventional decoder for SSK, which does not account for decoding errors at the relays.
机译:空间移位键控(SSK)是一种用于多天线无线系统的新颖的低复杂度数字调制技术。在SSK中,数据块被编码在天线阵列的特定发射天线的索引中,该天线被打开以进行数据传输,而所有其他天线均不辐射功率。最近的结果表明,当发射机处有许多天线可用时,SSK可以以较低的计算复杂度胜过传统的调制方案。不幸的是,这使得SSK仅在蜂窝网络的下行链路中成为传输技术的有用候选者。在本文中,通过利用虚拟天线阵列的概念,我们提出了一种新颖的中继辅助方案,以使SSK在蜂窝网络的上行链路中有用。本文的具体贡献如下:i)开发了考虑中继器解码错误的最佳解码器; ii)研究了平均误码率(ABEP)的性能,以及每位相对平均能量降低(RAER)的能量增益。通过蒙特卡洛模拟,可以看出,所提出的最佳解码器优于传统的SSK解码器,后者不能解决中继器的解码错误。

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