In this paper, a novel full-duplex non-coherent (FD-NC) transmission scheme is developed for massive multiple-input multiple-output (mMIMO) systems using analog beamforming (ABF). We propose to use a structured Grassmannian constellation for the non-coherent communications that does not require channel estimation. Then, we design the transmit and receive ABF via the slow time-varying angle-of-departure (AoD) and angle-of-arrival (AoA) information, respectively. The ABF design targets maximizing the intended signal power while suppressing the strong self-interference (SI) occurred in the FD transmission. Also, the proposed ABF technique only needs a single transmit and receive RF chain to support large antenna arrays, thus, it reduces hardware cost/complexity in the mMIMO systems. It is shown that the proposed FD-NC offers a great improvement in bit error rate (BER) in comparison to both half-duplex non-coherent (HD-NC) and HD coherent schemes. We also observe that the proposed FD-NC both reduces the error floor resulted from the residual SI in FD transmission, and provides lower BER compared to the FD coherent transmission.
翻译:在本文中,为使用模拟波束成型(AMFF)的大规模多投入多输出(MSIMO)系统开发了一个全新的完全不统一(FD-NC)传输计划,用于使用大规模多投入多输出(MIMIMO)系统;我们提议使用结构有序的格拉斯曼尼星座,用于不需要频道估计的不连贯通信;然后,我们设计传送并接收ABFF,通过缓慢的移动角度(AoD)和抵达角度(AoAA)信息接收;ABF设计目标最大限度地发挥预期的信号功率,同时抑制FD的传输中出现强烈的自干预(SI);此外,拟议的ABFT技术只需要一个单一的传输和接收RF链来支持大型天线阵阵列,从而降低MIMO系统的硬件成本/兼容性;这表明,拟议的FDM-NC(B)比半不统一(H-NC)和HD的一致计划都大大改进了比重误率(BER),我们还注意到,拟议的SFDFD和S之间的连续传输率降低了。