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Investigation on Best Combining Scheme for Diversity Branches in Joint MLD for PUCCH in LTE Uplink

机译:LTE上行链路PUCCH联合MLD中分集分支的最佳组合方案研究

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In Release 8 Long-Term Evolution (LTE) by the 3rd Generation Partnership Project (3GPP), the uplink control channel called the physical uplink control channel (PUCCH) is specified. The PUCCH carries channel-quality indicator (CQI) and acknowledgement (ACK)egative-acknowledgement (NACK) signals. This paper investigates the best scheme to combine diversity branches for joint maximum likelihood detection (MLD) for the PUCCH in the LTE uplink. Coherent combining of the correlation signals for two frequency-hopped slots and two receiver antennas reduces the noise components effectively; however, it incurs channel estimation error. Hence, we present decision-feedback channel estimation (DFCE) associated with the joint MLD. The correlation signals when combined in squared form do not require channel estimation. Based on link-level simulations, we clarify that the squared combining of the correlation signals for frequency-hopping diversity and antenna diversity branches is the most appropriate scheme based on the trade-off relationship between the effective suppression of noise components and the elimination of channel estimation error for the PUCCH using joint MLD in the LTE uplink.
机译:在第三代合作伙伴计划(3GPP)的版本8长期演进(LTE)中,指定了称为物理上行链路控制信道(PUCCH)的上行链路控制信道。 PUCCH承载信道质量指示符(CQI)和确认(ACK)/否定确认(NACK)信号。本文研究了在LTE上行链路中结合分集分支以进行PUCCH联合最大似然检测(MLD)的最佳方案。两个跳频时隙和两个接收天线的相关信号的相干组合有效地降低了噪声成分;但是,这会引起信道估计误差。因此,我们提出与联合MLD相关联的决策反馈信道估计(DFCE)。当相关信号以平方形式组合时,不需要信道估计。基于链路级仿真,我们阐明,基于有效抑制噪声分量与消除信道之间的折衷关系,针对跳频分集和天线分集分支的相关信号的平方组合是最合适的方案LTE上行链路中使用联合MLD的PUCCH的估计误差。

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