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An investigation of self-interference reduction strategy in correlated SM-OFDMA systems

机译:相关SM-OFDMA系统中自干扰减少策略的研究

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One of the efficient ways to transmit high data rate in a wireless network is by employing a multiple antenna transmission scheme, known as the multiple-input multiple-output (MIMO). One of the MIMO schemes, known as Spatial Multiplexing (SM) relies on the linear independence data streams from different transmit antennas to exploit the channel capacity. Consequently, SM suffers considerably from the effect of spatial correlation, also known as self-interference in the literature, thus become one of the limiting factor in achieving the capacity benefit that SM offers. In an attempt to increase the robustness of the SM transmission for deployment in wide range of correlated channels, the use of dynamic subcarrier allocation (DSA) in a downlink Orthogonal Frequency Division Multiple Access (OFDMA) system is investigated. The Effective Signal-to-Interference-and-Noise Ratio (ESINR) metric is used as the performance metric to determine the subcarrier quality. The ESINR metric can be utilised for the subcarrier allocation process in order to exploit the multiuser diversity gain that can be offered in a correlated SM-OFDMA downlink system.
机译:在无线网络中传输高数据速率的一种有效方法是采用多天线传输方案,即多输入多输出(MIMO)。 MIMO方案之一被称为空间复用(SM),它依赖于来自不同发射天线的线性独立数据流来利用信道容量。因此,SM受到空间相关性的影响,这在文献中也称为自干扰,因此成为实现SM提供的容量优势的限制因素之一。为了增加SM传输在各种相关信道中的部署的鲁棒性,研究了下行链路正交频分多址(OFDMA)系统中动态子载波分配(DSA)的使用。有效信噪比(ESINR)度量用作确定子载波质量的性能度量。 ESINR度量可用于子载波分配过程,以利用可在相关SM-OFDMA下行链路系统中提供的多用户分集增益。

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