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Interference mitigation in two-tier LTE networks: Does power control pay off for femtocells?

机译:两层LTE网络中的干扰缓解:功率控制是否能为毫微微小区带来收益?

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Femtocell networks have emerged as an important means of offloading traffic from today's LTE cellular networks. However, deploying LTE femtocells increases the interference in the network, as they share licensed spectrum with the macro-cellular network. Consequently, a wide range of interference mitigation techniques have been proposed to enable coexistence of femtocells and macrocells. Techniques of various implementation and signaling complexity have been considered, but the majority of existing work evaluates their performance solely based on how well they mitigate interference for macrocell users. However, it is important that both macrocell and femtocell users achieve good performance. In this paper we present a comparative system-level study on the performance of several LTE femtocell frequency and power allocation schemes. We investigate whether more complex and dynamic resource allocation schemes, i.e. power control, are worthwhile from the point of view of femtocell networks compared to lower complexity static resource allocation schemes. We evaluate the performance in terms of the users' downlink throughput and achieved signal-to-interference-plus-noise ratio (SINR), and we consider different interference environments for a wide range of network densities (urban, suburban, and rural scenarios). Our results show that power control algorithms only yield a marginal increase in throughput for the LTE femtocell users. This suggests that increasing the complexity of static frequency allocation schemes by implementing power control algorithms is not justified.
机译:毫微微小区网络已经成为减轻当今LTE蜂窝网络的流量负担的重要手段。但是,部署LTE毫微微小区会增加网络中的干扰,因为它们与宏蜂窝网络共享许可频谱。因此,已经提出了广泛的干扰减轻技术以使得毫微微小区和宏小区能够共存。已经考虑了各种实现和信令复杂性的技术,但是大多数现有工作仅根据它们对宏小区用户的干扰缓解程度来评估其性能。但是,重要的是宏小区和毫微微小区用户都必须取得良好的性能。在本文中,我们对几种LTE毫微微小区频率和功率分配方案的性能进行了比较系统级的研究。从毫微微小区网络的观点来看,与较低复杂度的静态资源分配方案相比,我们研究更复杂和动态的资源分配方案(即功率控制)是否值得。我们根据用户的下行链路吞吐量和已达到的信噪比(SINR)评估性能,并针对各种网络密度(城市,郊区和农村场景)考虑不同的干扰环境。我们的结果表明,功率控制算法仅会为LTE毫微微小区用户带来少量的吞吐量增长。这表明通过实施功率控制算法来增加静态频率分配方案的复杂性是不合理的。

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