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Performance of Full Rate Non-Orthogonal STBC in Spatially Correlated MIMO Systems

机译:空间相关MIMO系统中全速率非正交STBC的性能

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摘要

Spatial correlation is a crucial impairment for practical Multiple Input Multiple Output (MIMO) wireless communication systems. It is important to consider spatial correlation between antennas in actual communication scenario at both sides, i.e. transmit and receive side. Furthermore, we have considered nonorthogonal full rate STBC in MIMO systems equipped with four transmit antennas and four receive antennas in a quasi-static Rayleigh fading channel. In this paper, Bit Error Rate (BER) performance of full rate non-orthogonal Space Time Block code (STBC) is obtained using simulations in MIMO wireless communication systems. Spatial correlation is assumed between antennas at both the transmitter and the receiver sides. For this analysis, we have considered various transmit antenna spacing values of d _(t)= 0.1π, 0.2π, and 0.4π keeping fixed d _(r)= 0.1π and various receive antenna spacing values of d _(r)= 0.1π, 0.2π, and 0.4π keeping fixed d _(t)= 0.1π. The obtained results show that the transmitting diversity is more serious than the receiving diversity in the spatially correlated antenna environment for the specified signal-to-noise ratio. This study will be useful for actual wireless communication implementation where spatial correlation antennas are present in the practical environment of the MIMO wireless communication system.
机译:空间相关是实际多输入多输出(MIMO)无线通信系统的关键损伤。重要的是要考虑天线在两侧的实际通信场景中的空间相关性,即发送和接收侧。此外,我们已经考虑了配备有四个发射天线的MIMO系统中的非正交全速率SCTBC和在准静态瑞利衰落通道中的四个接收天线。在本文中,使用MIMO无线通信系统中的模拟获得全速率非正交空间时间块代码(STBC)的误码率(BER)性能。在发射器和接收器侧的天线之间假设空间相关性。对于该分析,我们已经考虑了D _(t)=0.1π,0.2π和0.4π保持固定D _(R)=0.1π的各种发射天线间距值,以及D _(r)的各种接收天线间距值=0.1π,0.2π和0.4π保持固定D _(t)=0.1π。所得结果表明,发射分集比对于指定的信噪比,传输分集比空间相关天线环境中的接收分集更严重。该研究对于实际无线通信实现将是有用的,其中在MIMO无线通信系统的实际环境中存在空间相关天线。

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