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Residual Self-Interference Cancellation and Data Detection in Full-Duplex Communication Systems

机译:全双工通信系统中的残留自干扰消除和数据检测

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摘要

Residual self-interference cancellation is an important practical requirement for realizing the full potential of full-duplex (FD) communication. Traditionally, the residual selfinterference is cancelled via digital processing at the baseband, which requires accurate knowledge of channel estimates of the desired and self-interference channels. In this work, we consider point-to-point FD communication and propose a superimposed signaling technique to cancel the residual self-interference and detect the data without estimating the unknown channels. We show that when the channel estimates are not available, data detection in FD communication results in ambiguity if the modulation constellation is symmetric around the origin. We demonstrate that this ambiguity can be resolved by superimposed signalling, i.e., by shifting the modulation constellation away from the origin, to create an asymmetric modulation constellation. We compare the performance of the proposed detection method to that of the conventional channel estimation-based detection method, where the unknown channels are first estimated and then the data signal is detected. Simulations show that for the same average energy over a transmission block, the bit error rate performance of the proposed detection method is better than that of the conventional method. The proposed method does not require any channel estimates and is bandwidth efficient.
机译:残留的自干扰消除是实现全双工(FD)通信的全部潜力的一项重要的实际要求。传统上,残留的自干扰是通过基带上的数字处理来消除的,这需要准确了解所需和自干扰信道的信道估计。在这项工作中,我们考虑了点对点FD通信,并提出了一种叠加信令技术来消除残留的自干扰并检测数据而无需估计未知信道。我们表明,当信道估计不可用时,如果调制星座图围绕原点对称,则FD通信中的数据检测会导致模棱两可。我们证明了这种歧义可以通过叠加信令来解决,即,通过将调制星座图从原点移开,以创建不对称调制星座图来解决。我们将所提出的检测方法的性能与常规的基于信道估计的检测方法的性能进行比较,在传统的基于信道估计的检测方法中,首先估计未知信道,然后检测数据信号。仿真表明,对于传输块上相同的平均能量,所提出的检测方法的误码率性能要优于传统方法。所提出的方法不需要任何信道估计并且是带宽有效的。

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