非同步联合处理CoMP传输网络的可靠反馈生成

Stanislaus Iwelski, Erfan Majeed, Z. Bai, G. Bruck, P. Jung
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引用次数: 2

摘要

协调多点(CoMP)传输是4G长期演进(LTE)系统的关键技术,它能够在用户设备(UE)上提供无蜂窝边缘的无所不在的宽带通信。然而,由于传输信号将以多种不同的延迟到达终端,实际的CoMP网络可能会遇到较大的时间偏移(TOs),从而造成重大的性能损失。本文主要研究了实际CoMP联合处理(JP)-联合传输(JT)网络的隐式反馈生成问题。我们表明,传统的隐式反馈方案禁止下行链路的预期增益,被开环传输方案优于,并对CoMP JP-JT网络的信道状态信息(CSI)反馈的好处提出了质疑。分析证明了csi -参考信号(RS)在不同子载波上的映射会对协方差矩阵施加多个相位偏移,导致预编码矢量选择不当,而发射机之间的不平衡TOs限制了终端的相干信号解调。通过数值结果表明,我们可以估计和补偿相位偏移,从而获得可靠的预编码矢量选择和相位反馈,用于相干信号解调,从而在存在不同TOs的情况下实现实际CoMP JP-JT网络的显着改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable feedback generation in unsynchronized joint-processing CoMP transmission networks
Coordinated multipoint (CoMP) transmission is a key technique in 4G long term evolution (LTE) systems to provide the ubiquitous broadband communication with cell edge free experience at the user equipment (UE). However, as the transmit signals will reach the UE at several and varying delays, practical CoMP networks might experience large timing offsets (TOs), imposing a significant performance loss. In this paper we focus on implicit feedback generation for practical CoMP joint processing (JP)-joint transmission (JT) networks suffering from TOs. We show that conventional implicit feedback schemes prohibit the expected gain in the downlink, getting outperformed by open-loop transmission schemes and call the benefits of channel state information (CSI) feedback for CoMP JP-JT networks into question. Analytically we prove that the mapping of CSI-reference signal (RS) on different subcarriers imposes multiple phase offsets on the covariance matrix, leading to improper precoding vector selection, while imbalanced TOs among the transmitters limit coherent signal demodulation at the UE. With numerical results we show that estimating and compensating the phase offsets reliable precoding vector selection and phase feedback for coherent signal demodulation can be obtained and as a result considerable improvements for practical CoMP JP-JT networks can be achieved in presence of varying TOs.
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