Orthogonal uplink Reference Signal design via subgroup-wise shifts of a CAZAC sequence

Bin Zhou, Haifeng Wang
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Abstract

In the Single-Carrier Frequency Division Multiple Access (SC-FDMA) system, the orthogonality of uplink Reference Signals (RS) via Code Division Multiplexing (CDM) could be deteriorated by unused guard subcarriers and the consequent time-domain oversampling of Constant Amplitude Zero Auto-correlation (CAZAC) sequence. As a result, the conventional CDM RS structure is sensitive to power control and near-far effect. In this paper, we propose a novel orthogonal uplink RS design via subgroup-wise shifts of a base CAZAC sequence. By using UE-specific shifts and subgroup-specific linear modulation, the RSs of different subgroup will not interfere with each other even in the presence of zero subcarriers. Moreover, by classifying user equipments (UEs) into the different subgroups based on their power levels, the proposed scheme is more robust to imperfect power control and near-far effects.
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正交上行参考信号设计通过子群明智的移位CAZAC序列
在单载波频分多址(SC-FDMA)系统中,未使用的保护子载波及其引起的等幅零自相关(CAZAC)序列的时域过采样会使经码分复用(CDM)的上行参考信号(RS)的正交性恶化。因此,传统的CDM RS结构对功率控制和近远效应很敏感。在本文中,我们提出了一种新的正交上行链路RS设计方法,该方法采用了基于子群的CAZAC序列移位。通过使用特定于ue的移位和特定于子群的线性调制,即使在零子载波存在的情况下,不同子群的RSs也不会相互干扰。此外,该方案根据用户设备的功率水平将其划分为不同的子组,提高了对不完全功率控制和远近效应的鲁棒性。
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