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In this paper, a sub-terahertz full-duplex wireless communication system-on-board is described, which can support bi-directional communication with data rate up to 400 Gbps. This is achieved by 16 channels of transceiver system. Each channel consists of four transmitters (TXs) and four receivers (RXs), and 2×2 arrayed antennas to allow 2D beamforming for spatial multiplexing. The range of the board-to-board...
We consider a $K$ link multiple-input multiple-output (MIMO) interference channel, where each link consists of two full-duplex (FD) nodes exchanging information simultaneously in a bi-directional communication fashion. The nodes in each pair suffer from self-interference due to operating in FD mode, and inter-user interference from other links due to simultaneous transmission at each link. We consider...
We consider a full-duplex bi-directional communication between two nodes that suffer from self-interference, where the nodes are equipped with multiple antennas. We focus on the effect of a residual self-interference due to independent and identically distributed (i.i.d.) channel estimation errors and limited dynamic ranges of the transmitters and receivers. We consider the design of source covariance...
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