Device-to-Device Communications; Functional Prospects for LTE-Advanced Networks

K. Doppler, Mika Rinne, Pekka Janis, C. Ribeiro, K. Hugl
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引用次数: 225

Abstract

In this paper the possibility of device-to-device (D2D) communications as an underlay of an LTE-A network is introduced. The D2D communication enables new service opportunities and reduces the eNB load for short range data intensive peer-to-peer communication. The cellular network may establish a new type of radio bearer dedicated for D2D communications and stay in control of the session setup and the radio resources without routing the user plane traffic. The paper addresses critical issues and functional blocks to enable D2D communication as an add-on functionality to the LTE SAE architecture. Unlike 3G spread spectrum cellular and OFDM WLAN techniques, LTE-A resource management is fast and operates in high time-frequency resolution. This could allow the use of non-allocated time-frequency resources, or even partial reuse of the allocated resources for D2D with eNB controlled power constraints. The feasibility and the range of D2D communication, and its impact to the power margins of cellular communications are studied by simulations in two example scenarios. The results demonstrate that by tolerating a modest increase in interference, D2D communication with practical range becomes feasible. By tolerating higher interference power the D2D range will increase.
设备间通信;LTE-Advanced网络的功能展望
本文介绍了设备对设备(D2D)通信作为LTE-A网络底层的可能性。D2D通信为短距离数据密集型点对点通信提供了新的服务机会,并减少了eNB负载。蜂窝网络可以建立专用于D2D通信的新型无线电承载,并且在不路由用户平面流量的情况下保持对会话设置和无线电资源的控制。本文解决了关键问题和功能模块,以使D2D通信成为LTE SAE架构的附加功能。与3G扩频蜂窝和OFDM WLAN技术不同,LTE-A资源管理速度快,运行时频分辨率高。这可以允许使用未分配的时间-频率资源,或者甚至部分重用已分配的资源,用于具有eNB控制的功率约束的D2D。通过两个示例场景的仿真,研究了D2D通信的可行性、范围及其对蜂窝通信功率裕度的影响。结果表明,通过容忍干扰的适度增加,D2D通信在实际范围内是可行的。通过容忍更高的干扰功率,D2D范围将增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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