Achieving Channel Reciprocity in Multi-Carrier System: SRS Carrier-Based Switching

Yiyan Zhang, He Wang, Xutao Zhou
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Abstract

In the context of approaching next generation cellular network where increasing antennas are installed, link quality largely depends on channel information acquired at transceivers. Sounding Reference Signal (SRS) carrier-based Switching, an emerging technique developed starting from 3GPP Release-14 standards, enables SRS transmitted on non-SRS carriers to provide base station reciprocity-aided channel information; therefore it accomplishes better precoding selection for beamforming and becomes a critical role in multi-carrier aggregation system. In this article, we look into SRS Switching and present a comprehensive analysis for this technique. A standard-compatible and high-efficiency SRS Switching algorithm is proposed, and then implemented into a system-level simulator to evaluate the network performance in terms of downlink throughput. We extract the design principle from analyzing its own characteristics. Also, the rationales behind why the technique works are identified from the numerical results. More than an implementation of standardized technique, out algorithm can serve as precious basis for its practical realization and further evolution of standards. Compared with conventional SRS cases, the remarkable performance enhancement has revealed significant superiority of our proposal which suggests a bright prospect of this technique in next generation mobile wireless network.
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在多载波系统中实现信道互易:SRS载波交换
在即将到来的下一代蜂窝网络中,越来越多的天线被安装,链路质量很大程度上取决于收发器获取的信道信息。探空参考信号(SRS)载波交换是一项从3GPP第14版标准开始发展的新兴技术,它使在非SRS载波上传输的SRS能够提供基站互惠辅助信道信息;因此,它可以更好地实现波束形成的预编码选择,在多载波聚合系统中发挥关键作用。在本文中,我们将研究SRS交换并对该技术进行全面分析。提出了一种标准兼容的高效SRS交换算法,并将其应用于系统级模拟器中,以评估网络的下行吞吐量。在分析其自身特点的基础上,提炼出设计原则。此外,从数值结果中确定了该技术起作用的基本原理。该算法不仅是标准化技术的实现,而且可以为其实际实现和标准的进一步发展提供宝贵的依据。与传统的SRS案例相比,性能的显著提高显示了我们的方案在下一代移动无线网络中的显著优势,表明了该技术的广阔前景。
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