LTE-Advanced:异构网络

A. Khandekar, N. Bhushan, T. Ji, V. Vanghi
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引用次数: 507

摘要

长期演进(LTE)允许运营商使用新的更宽的频谱,并以更高的数据速率、更低的延迟和基于平面ip的架构补充3G网络。为了进一步以无所不在和经济有效的方式改善宽带用户体验,3GPP一直在LTE Advanced框架下开展各方面的工作。由于无线链路性能正在接近3G增强和LTE的理论极限,无线网络的下一个性能飞跃将来自网络拓扑。LTE Advanced旨在提高单位面积的频谱效率。通过混合使用宏、微型、femto和中继基站,异构网络可以实现灵活和低成本的部署,并为网络中的任何位置的用户提供统一的宽带体验。本文讨论了对使用异构网络的替代部署模型或拓扑的需求。为了提高这些网络的性能,介绍了管理和控制干扰并提供此类网络的全部好处所需的先进技术。范围扩展允许更多的用户终端直接受益于低功耗基站,如picos, femtos和中继。在异构网络中,自适应小区间干扰协调提供了智能的干扰小区间资源分配,提高了小区间的公平性。此外,还以宏/微网络为例,给出了异构网络的性能增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LTE-Advanced: Heterogeneous networks
Long-Term Evolution (LTE) allows operators to use new and wider spectrum and complements 3G networks with higher data rates, lower latency and a flat IP-based architecture. To further improve broadband user experience in a ubiquitous and cost effective manner, 3GPP has been working on various aspects in the framework of LTE Advanced. Since radio link performance is approaching theoretical limits with 3G enhancements and LTE, the next performance leap in wireless networks will come from the network topology. LTE Advanced is about improving spectral efficiency per unit area. Using a mix of macro, pico, femto and relay base-stations, heterogeneous networks enable flexible and low-cost deployments and provide a uniform broadband experience to users anywhere in the network. This paper discusses the need for an alternative deployment model or topology using heterogeneous networks. To enhance the performance of these networks, advanced techniques are described which are needed to manage and control interference and deliver the full benefits of such networks. Range extension allows more user terminals to benefit directly from low-power base-stations such as picos, femtos, and relays. Adaptive inter-cell interference coordination provides smart resource allocation amongst interfering cells and improves inter-cell fairness in a heterogeneous network. In addition, the performance gains with heterogeneous networks using an example macro/pico network are shown.
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