Full-duplex transceiver for future cellular network: A smart antenna approach

Chandan Pradhan, G. R. Murthy
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引用次数: 2

Abstract

In this paper, we propose a transceiver architecture for full-duplex (FD) eNodeB (eNB) and FD user equipment (UE) transceiver. For FD communication,.i.e., simultaneous in-band uplink and downlink operation, same subcarriers can be allocated to UE in both uplink and downlink. Hence, contrary to traditional LTE, we propose using single-carrier frequency division multiple accesses (SC-FDMA) for downlink along with the conventional method of using it for uplink. The use of multiple antennas at eNB and singular value decomposition (SVD) in the downlink allows multiple users (MU) to operate on the same set of subcarriers. In the uplink, successive interference cancellation with optimal ordering (SSIC-OO) algorithm is used to decouple signals of UEs operating in the same set of subcarriers. A smart antenna approach is adopted which prevents interference, in downlink of a UE, from uplink signals of other UEs sharing same subcarriers. The approach includes using multiple antennas at UEs to form directed beams towards eNode and nulls towards other UEs. The proposed architecture results in significant improvement of the overall spectrum efficiency per cell of the cellular network.
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面向未来蜂窝网络的全双工收发器:一种智能天线方法
在本文中,我们提出了一个全双工(FD) eNodeB (eNB)和FD用户设备(UE)收发器的收发器架构。对于FD通信,即,同时在带内上行和下行操作,上行和下行都可以分配相同的子载波给UE。因此,与传统的LTE相反,我们建议使用单载波频分多址(SC-FDMA)作为下行链路以及使用它作为上行链路的传统方法。在eNB使用多天线,在下行链路使用奇异值分解(SVD),允许多个用户(MU)在同一组子载波上操作。在上行链路中,采用最优排序连续干扰消除(SSIC-OO)算法对运行在同一子载波集合中的ue信号进行解耦。采用一种智能天线方法,防止终端下行链路受到共享同一子载波的其他终端上行信号的干扰。该方法包括在终端上使用多个天线形成指向eNode的定向波束和指向其他终端的零波束。所提出的架构显著提高了蜂窝网络的每个小区的整体频谱效率。
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