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Interference Management Techniques for Cellular Wireless Communication Systems

机译:蜂窝无线通信系统的干扰管理技术

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摘要

The growing demand for higher capacity wireless networks can be met by increasing the frequency bandwidth, spectral efficiency, and base station density. Flexible spectrum access, multiantenna, and multicarrier techniques are key enablers in satisfying the demand. In addition, automation of tasks related to network planning, optimization, interference management, and maintenance are needed in order to ensure cost-efficiency. Effective, dynamic, and automated interference management tailored for bursty and local data traffic plays a central role in the task.Adjacent channel interference (ACI) management is an enabler for flexible spectrum use and uncoordinated network deployments. In this thesis the impact of ACI in local area time division duplex (TDD) cellular systems is demonstrated. A method is proposed where the transmitters optimize their transmitted spectral shape on-line, such that constraints on ACI induced by power amplifier non-linearity are met. The proposed method increases the fairness among spectrum sharing transceivers when ACI is a limiting factor.A novel interference-aware scheduling technique is proposed and analyzed. The technique manages co-channel interference (CCI) in a decentralized fashion, relying on beacon messages sent by data receivers. It is demonstrated that the proposed technique is an enabler for fair spectrum sharing among operators, independent adaptation of uplink/downlink switching points in TDD networks, and it provides overall more fair and spectrally efficient wireless access. Especially, the technique is able to improve the cell-edge throughput tremendously.New services are emerging that generate local traffic among the users in addition to the data traffic between the users and the network. Such device-to-device (D2D) traffic is effectively served by direct transmissions. The thesis demonstrates the possibilities for allowing such direct D2D transmissions on a shared band together with the cellular communication. It is shown that interference management is needed in order to facilitate reliable and efficient shared band operation. For this purpose, three methods are proposed that provide interference aware power control, interference aware multiuser and multiband resource allocation, and interference avoiding spatial precoding. It is shown that enabling direct transmission itself provides most of the gains in system capacity, while the interference management schemes are more important in promoting fairness and reliability.
机译:通过增加频率带宽,频谱效率和基站密度,可以满足对更高容量无线网络不断增长的需求。灵活的频谱访问,多天线和多载波技术是满足需求的关键推动力。另外,为了确保成本效益,需要自动化与网络规划,优化,干扰管理和维护相关的任务。专为突发和本地数据流量量身定制的有效,动态和自动干扰管理在该任务中扮演着核心角色。相邻信道干扰(ACI)管理是灵活使用频谱和不协调网络部署的促成因素。本文证明了ACI在局域时分双工(TDD)蜂窝系统中的影响。提出了一种方法,其中发射器在线优化其发射的频谱形状,从而满足功率放大器非线性对ACI的约束。当ACI成为限制因素时,该方法提高了频谱共享收发器之间的公平性。提出并分析了一种新型的干扰感知调度技术。该技术依赖于数据接收器发送的信标消息,以分散的方式管理同信道干扰(CCI)。事实证明,所提出的技术是运营商之间公平频谱共享,TDD网络中上行链路/下行链路交换点的独立适配的一种实现手段,并且它提供了总体上更加公平和频谱高效的无线接入。尤其是,该技术能够极大地提高小区边缘的吞吐量。新的服务正在兴起,它们不仅在用户和网络之间提供数据流量,而且还在用户之间产生本地流量。通过直接传输可以有效地服务于此类设备到设备(D2D)流量。本文论证了允许在共享频带上与蜂窝通信一起进行这种直接D2D传输的可能性。示出了需要干扰管理以便促进可靠和有效的共享频带操作。为此,提出了三种方法,它们提供干扰感知功率控制,干扰感知多用户和多频带资源分配以及避免空间预编码的干扰。结果表明,启用直接传输本身可以提供系统容量的大部分收益,而干扰管理方案对于提高公平性和可靠性则更为重要。

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    Jänis Pekka;

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