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Transmit Diversity Assisted Space Shift Keying for Colocated and Distributed/Cooperative MIMO Elements

机译:用于共址和分布式/协作mImO元素的发送分集辅助空间移位键控

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摘要

Space Shift Keying (SSK) modulation is a recently proposed MIMO technique, which activates only a single transmit antenna during each time slot and uses the specific index of the activated transmit antenna to implicitly convey information. Activating a single antenna is beneficial in terms of eliminating the inter-channel interference, and mitigates the peak-to-mean power ratio, while avoiding the need for synchronisation among transmit antennas. However, this benefit is achieved at a sacrifice, since the transmit diversity gain potential of the multiple transmit antennas is not fully exploited in existing SSK assisted systems. Furthermore, a high SSK throughput requires the transmitter to employ a high number of transmit antennas, which is not always practical. Hence, we propose four algorithms, namely open-loop Space Time Space Shift Keying (ST-SSK), closed-loop feedback-aided phase rotation, feedback-aided power allocation, and cooperative ST-SSK, for the sake of achieving a diversity gain. The performance improvements of the proposed schemes are demonstrated by Monte-Carlo simulations for spatially independent Rayleigh fading channels. Their robustness against channel estimation errors is also considered. We advocate the proposed ST-SSK techniques, which are capable of achieving a transmit diversity gain of about 10 dB at a BER of $10^{-5}$, at a cost of imposing a moderate throughput loss dedicated to a modest feedback overhead. Furthermore, our proposed ST-SSK scheme lends itself to efficient communication, because the deleterious effects of deep shadow fading no longer impose spatial correlation on the signals received by the antennas, which cannot be readily avoided by co-located antenna elements.
机译:空间移位键控(SSK)调制是最近提出的MIMO技术,它在每个时隙内仅激活一个发射天线,并使用激活的发射天线的特定索引隐式传达信息。就消除信道间干扰而言,激活单个天线是有益的,并且减轻了峰均功率比,同时避免了发射天线之间的同步。但是,由于在现有的SSK辅助系统中并未充分利用多个发射天线的发射分集增益潜力,因此牺牲了该收益。此外,高的SSK吞吐量要求发射机使用大量的发射天线,这并不总是可行的。因此,为了实现多样性,我们提出了四种算法,即开环时空空移键控(ST-SSK),闭环反馈辅助相位旋转,反馈辅助功率分配和协作ST-SSK。获得。对于空间独立的瑞利衰落信道,通过蒙特卡罗仿真证明了所提出方案的性能改进。还考虑了它们对信道估计误差的鲁棒性。我们提倡提出的ST-SSK技术,该技术能够在$ 10 ^ {-5} $的BER下实现约10 dB的发射分集增益,但要付出适度的吞吐量损失来承担适度的反馈开销。此外,我们提出的ST-SSK方案有助于进行有效的通信,因为深阴影衰落的有害影响不再将空间相关性强加于天线接收的信号上,而共处一地的天线元件无法轻易避免这种相关性。

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