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Differential space-frequency modulation via smooth logical channel for broadband wireless communications

机译:通过平滑逻辑信道进行差分空频调制,用于宽带无线通信

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摘要

In this letter, a differential space-frequency modulation (DSFM) scheme is proposed for multiple input multiple-output (MIMO)-orthogonal frequency-division multiplexing (OFDM) systems in broadband wireless communications. We assume that the fading channels keep constant only within each OFDM block, and may change independently from one OFDM block to another. The differential schemes proposed for MIMO-OFDM systems in the literature cannot successfully decode with such a rapidly fading channel, since the successful decoding of the previously existing schemes relies on the assumption that the fading channel keeps constant within a period of several OFDM blocks, and it changes slowly from a period of several OFDM blocks to another. In our proposed DSFM scheme, the transmitted signals are differentially encoded in the frequency domain within each OFDM block. Thus, the differential decoding can be performed over subcarriers within each single OFDM block. Furthermore, if a statistical channel power-delay profile (PDP) is known at the transmitter, we propose to create a smooth logical channel to improve the performance of the DSFM scheme. We obtain the smooth logical channel by sorting the channel frequency responses over subcarriers from a statistical point of view. If the logical channel is not smooth enough, we further consider a pruning process in which we use only the "good" part of the channel and get rid of the "bad" part of the channel. Simulation results show that the proposed DSFM scheme over a smooth logical channel (with pruning, if necessary) performs well for various channel PDPs.
机译:在这封信中,为宽带无线通信中的多输入多输出(MIMO)正交正交频分复用(OFDM)系统提出了差分空频调制(DSFM)方案。我们假设衰落信道仅在每个OFDM块内保持恒定,并且可能独立地从一个OFDM块变为另一个。文献中针对MIMO-OFDM系统提出的差分方案无法通过这种快速衰落的信道成功解码,因为对先前存在的方案的成功解码依赖于以下假设:衰落信道在几个OFDM块的周期内保持恒定,并且它从几个OFDM块的周期到另一个周期缓慢变化。在我们提出的DSFM方案中,在每个OFDM块内的频域中对发送的信号进行差分编码。因此,可以在每个单个OFDM块内的子载波上执行差分解码。此外,如果在发射机处已知统计信道功率延迟配置文件(PDP),我们建议创建一个平滑的逻辑信道以提高DSFM方案的性能。通过从统计的角度对子载波上的信道频率响应进行排序,可以获得平滑的逻辑信道。如果逻辑通道不够平滑,我们将进一步考虑修剪过程,在该过程中,我们仅使用通道的“良好”部分,而摆脱通道的“不良”部分。仿真结果表明,在平滑逻辑信道上建议的DSFM方案(必要时可进行修剪)对于各种信道PDP都表现良好。

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