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Uplink contention based SCMA for 5G radio access

机译:基于上行竞争的SCMA用于5G无线电访问

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Fifth generation (5G) wireless networks are expected to support very diverse applications and terminals. Massive connectivity with a large number of devices is an important requirement for 5G networks. Current LTE system is not able to efficiently support massive connectivity, especially on the uplink (UL). Among the issues that arise due to massive connectivity is the cost of signaling overhead and latency. In this paper, an uplink contention-based sparse code multiple access (SCMA) design is proposed as a solution. First, the system design aspects of the proposed multiple-access scheme are described. The SCMA parameters can be adjusted to provide different levels of overloading, thus suitable to meet the diverse traffic connectivity requirements. In addition, the system-level evaluations of a small packet application scenario are provided for contention-based UL SCMA. SCMA is compared to OFDMA in terms of connectivity and drop rate under a tight latency requirement. The simulation results demonstrate that contention-based SCMA can provide around 2.8 times gain over contention-based OFDMA in terms of supported active users. The uplink contention-based SCMA scheme can be a promising technology for 5G wireless networks for data transmission with low signaling overhead, low delay, and support of massive connectivity.
机译:预计第五代(5G)无线网络将支持非常多样化的应用程序和终端。与大量设备的大规模连接是5G网络的重要要求。当前的LTE系统不能有效地支持大规模连接,尤其是在上行链路(UL)上。由于大规模连接而引起的问题之一是信令开销和延迟的成本。本文提出了一种基于上行竞争的稀疏码多址(SCMA)设计方案。首先,描述了所提出的多址方案的系统设计方面。可以调整SCMA参数以提供不同级别的过载,因此适合满足各种流量连接要求。此外,还为基于竞争的UL SCMA提供了小数据包应用方案的系统级评估。在严格的延迟要求下,将SCMA与OFDMA的连接性和丢包率进行了比较。仿真结果表明,就支持的活跃用户而言,基于竞争的SCMA可以提供比基于竞争的OFDMA约2.8倍的增益。基于上行链路竞争的SCMA方案可能是一种用于5G无线网络的数据传输技术,该技术具有低信令开销,低延迟和大规模连接的支持。

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