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Discovery resource grouping for D2D discovery for mitigation of in-band emission in LTE-Advanced

机译:用于D2D发现的发现资源分组,用于减轻LTE-Advanced中的带内发射

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Device-to-device (D2D) communication techniques have drawn considerable interests as one of the most essential features for the next wireless communications. Unlike the traditional cellular system, D2D communication uses a direct communication link between devices in a limited area and it takes additional advantages of spectrum efficiency, low power consumption, and communication even in out of cellular network coverage. In the 3rd Generation Partnership Project (3GPP), the standardization of D2D communication has been started focusing on D2D discovery and direct communication for the Long Term Evolution Advanced (LTE-A) system. Since D2D discovery coexists with physical channels in a given uplink carrier, the potential impacts of D2D discovery to cellular system are of main concern due to half duplexing constraint and in-band emission. Especially, the impact of in-band emission interference from D2D devices is critical in receiving physical uplink control channel (PUCCH) at eNB side and it eventually affects downlink user throughput. In this paper, we propose a new discovery resource grouping scheme. A D2D UE selects one of the two groups of discovery resources based on downlink reference signal received power (RSRP) for the transmission of its discovery signal. The proposed scheme minimizes the number of subframes where PUCCHs are impacted by the in-band emission interference of D2D discovery. Our evaluations show that the proposed scheme is beneficial for the alleviation of in-band emission.
机译:设备到设备(D2D)通信技术已成为下一代无线通信最重要的功能之一,引起了广泛的关注。与传统的蜂窝系统不同,D2D通信在有限的区域内使用设备之间的直接通信链路,即使在蜂窝网络覆盖范围之外,它也具有频谱效率,低功耗和通信的其他优势。在第三代合作伙伴计划(3GPP)中,D2D通信的标准化已开始着眼于长期演进高级(LTE-A)系统的D2D发现和直接通信。由于D2D发现与给定上行链路载波中的物理信道共存,因此由于半双工约束和带内发射,D2D发现对蜂窝系统的潜在影响成为主要问题。尤其是,来自D2D设备的带内发射干扰的影响对于在eNB端接收物理上行链路控制信道(PUCCH)至关重要,并且最终影响下行链路用户吞吐量。在本文中,我们提出了一种新的发现资源分组方案。 D2D UE基于下行链路参考信号接收功率(RSRP)选择两组发现资源之一,以发送其发现信号。所提出的方案最小化了PUCCH受到D2D发现的带内发射干扰影响的子帧的数量。我们的评估表明,所提出的方案对于减轻带内发射是有益的。

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