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Performance Analysis of Unsupervised LTE Device-to-Device (D2D) Communication

机译:无监督LTE设备到设备(D2D)通信的性能分析

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Cellular network technology based device-to-device communication attracts increasing attention for use cases such as the control of autonomous vehicles on the ground and in the air. LTE provides device-to-device communication options, however, the configuration options are manifold (leading to 150+ possible combinations) and therefore the ideal combination of parameters is hard to find. Depending on the use case, either throughput, reliability or latency constraints may be the primary concern of the service provider. In this work we analyze the impact of different configuration settings of unsupervised LTE device-to-device (sidelink) communication on the system performance. Using a simulative approach we vary the length of the PSCCH period and the number of PSCCH subframes and determine the impact of different combinations of those parameters on the resulting latency, reliability and the interarrival times of the received packets. Furthermore we examine the system limitations by a scalability analysis. In this context, we propose a modified HARQ process to mitigate scalability constraints. Our results show that the proposed reduced HARQ retransmission probability can increase the system performance regarding latency and interarrival times as well as the packet transmission reliability for higher channel utilization.
机译:基于蜂窝网络技术的设备到设备通信吸引了诸如使用案例的越来越关注,例如在地面和空气中控制自动车辆。 LTE提供设备到设备通信选项,但是,配置选项是歧管(导致150多种可能的组合),因此难以找到参数的理想组合。根据用例,吞吐量,可靠性或延迟约束可能是服务提供商的主要问题。在这项工作中,我们分析了无监督LTE设备到设备(SIDELINK)通信的不同配置设置对系统性能的影响。使用模拟方法,我们改变了PSCCH周期的长度和PSCCH子帧的数量,并确定这些参数对所得到的分组的产生延迟,可靠性和参数的不同组合的影响。此外,我们通过可扩展性分析来检查系统限制。在此上下文中,我们提出了修改后的HARQ进程来减轻可扩展性约束。我们的研究结果表明,提出的HARQ重传概率可以提高关于延迟和参与时间的系统性能,以及用于更高信道利用率的分组传输可靠性。

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