Differential Space-Frequency Group Codes for MIMO-OFDM

E. Zeydan, U. Tureli
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引用次数: 2

Abstract

In recent years, coherent space-frequency (SF) coded multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) systems have attracted great attention. However, obtaining perfect channel estimates for frequency-selective channels with lots of taps is challenging and computationally complex. In this paper, we present a transmission scheme that uses differential space-frequency group codes (DSFC) for MIMO-OFDM systems. Our proposed scheme is based on the theory of space-frequency group codes. We use the group properties of space-frequency codes that has recently been investigated and obtain a differential transmission rule incorporated with subcarrier allocation method that allows data to be sent without channel estimates at the transmitter or receiver. Recently proposed noncoherent space-frequency codes using MIMO-OFDM have exponential computational complexity with code rate in frequency-selective channels. Compared to existing noncoherent space-frequency codes, our proposed code design is computationally more efficient and is easier to implement. We also demonstrate that the presence of additional resolvable channel taps does not monotonically improve the performance of DSFCs, which shows that obtaining full space-frequency diversity order for increasing number of channel taps decreases the performance of the receivers with lack of channel state information (CSI). This result is completely different from the coherent case of space frequency group codes in which additional channel taps increase the BER performance due to the exploitation of frequency diversity present in MIMO-OFDM frequency-selective channels.
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MIMO-OFDM差分空频组码
近年来,相干空频编码多输入多输出正交频分复用(MIMO-OFDM)系统受到了广泛的关注。然而,对于具有大量抽头的频率选择信道,获得完美的信道估计是具有挑战性和计算复杂性的。本文提出了一种基于差分空频组码的MIMO-OFDM传输方案。我们提出的方案是基于空频群码理论的。我们利用最近研究的空频码的组属性,并获得了一种包含子载波分配方法的差分传输规则,该规则允许在发送端或接收端不需要信道估计的情况下发送数据。最近提出的基于MIMO-OFDM的非相干空频码在频率选择信道中具有随码率呈指数增长的计算复杂度。与现有的非相干空频码相比,我们提出的码设计计算效率更高,更容易实现。我们还证明了额外的可分辨信道抽头的存在并不能单调地提高dsfc的性能,这表明在缺乏信道状态信息(CSI)的情况下,增加信道抽头数量获得完整的空频分集顺序会降低接收机的性能。这一结果与空间频率组码的相干情况完全不同,在这种情况下,由于利用了MIMO-OFDM选频信道中的频率分集,额外的信道抽头增加了误码率性能。
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