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Mitigation of Loopback Self-Interference in Full-Duplex MIMO Relays

机译:缓解全双工MIMO中继中的环回自干扰

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Full-duplex relaying is more spectrally efficient than half-duplex relaying as only one channel use is needed per two hops. However, it is crucial to minimize relay self-interference to render full duplex feasible. For this purpose, we analyze a broad range of multiple-input multiple-output (MIMO) mitigation schemes: natural isolation, time-domain cancellation, and spatial suppression. Cancellation subtracts replicated interference signal from the relay input while suppression reserves spatial dimensions for receive and transmit filtering. Spatial suppression can be achieved by antenna subset selection, null-space projection, i.e., receiving and transmitting in orthogonal subspaces, or joint transmit and receive beam selection to support more spatial streams by choosing the minimum eigenmodes for overlapping subspaces. In addition, minimum mean square error (MMSE) filtering can be employed to maintain the desired signal quality, which is inherent for cancellation, and the combination of time- and spatial-domain processing may be better than either alone. Targeting at minimal interference power, we solve optimal filters for each scheme in the cases of joint, separate and independent design. The performance of mitigation schemes is evaluated and compared by simulations. The results confirm that self-interference can be mitigated effectively also in the presence of imperfect side information.
机译:全双工中继比半双工中继在频谱上更有效,因为每两跳仅需要使用一个信道。但是,至关重要的是,最小化中继器自干扰以使全双工可行。为此,我们分析了多种多输入多输出(MIMO)缓解方案:自然隔离,时域消除和空间抑制。抵消从继电器输入中减去重复的干扰信号,而抑制则保留空间尺寸以用于接收和发送滤波。通过选择天线子集,零空间投影(即在正交子空间中进行接收和发送),或者通过选择重叠子空间的最小本征模式来联合选择发送和接收波束以支持更多空间流,可以实现空间抑制。另外,可以采用最小均方误差(MMSE)滤波来保持所需的信号质量,这对于消除信号是固有的,并且时域和空间域处理的组合可能比任何一个都更好。针对最小的干扰功率,在联合,独立和独立设计的情况下,我们为每种方案求解最佳滤波器。通过模拟评估缓解方案的性能并进行比较。结果证实,在存在不完善的辅助信息的情况下,也可以有效地减轻自干扰。

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