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Handoff management with a delay requirement in femtocell networks

机译:毫微微小区网络中具有延迟要求的越区切换管理

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Radio communication has come a long way from the initially deployed 1G voice (Amps) to modern 3G and 4G networks. A technology that holds promise to provide the next leap in peformance is femtocell. Femtocell technology brings the network closer to the user by adding smaller cells, which provide the benefit of higher quality links and more spatial reuse. To fully exploit this diversity realized at the physical layer some challenging issues have to be addressed. Making a handoff decision is one such issue where the user has various power levels available from Macro Base Station (MBS) and Femto Base Station (FBS). From a Base Station's (BS) perspective, there may be many users with close SINR values needing service but all users cannot be accommodated due to bandwidth limitation. To make these decisions, appropriate handoff mechanisms need to be adapted to fully exploit the advantages of these networks in various scenarios. In this paper, we extensively study methods to optimize handoff decisions under the open access scheme of operation, maintaining Quality of Service (QoS) thresholds to maximize overall network capacity such that fairness among users is maintained as well. We aim at developing a low-complexity algorithm with a small dwell time before handing off a macrocell user to a nearby femtocell and vice-versa. When the number of users in the network is smaller in comparison to the available FBSs, we observe better performance in reducing unnecessary handoffs.
机译:从最初部署的1G语音(Amp)到现代3G和4G网络,无线电通信已经走了很长一段路。毫微微蜂窝基站(femtocell)是一项有望实现性能新飞跃的技术。 Femtocell技术通过添加较小的小区使网络更接近用户,从而提供了更高质量的链接和更多的空间复用性。为了充分利用在物理层实现的这种多样性,必须解决一些具有挑战性的问题。做出切换决定就是其中一个问题,用户可以从宏基站(MBS)和毫微微基站(FBS)获得各种功率电平。从基站(BS)的角度来看,可能有许多用户的SINR值接近,需要服务,但由于带宽限制,无法容纳所有用户。为了做出这些决定,需要调整适当的切换机制,以在各种情况下充分利用这些网络的优势。在本文中,我们广泛研究了在开放访问操作方案下优化切换决策的方法,维持服务质量(QoS)阈值以最大化整体网络容量,从而也维护了用户之间的公平性。我们的目标是在将宏小区用户转移到附近的毫微微小区之前开发停留时间短的低复杂度算法,反之亦然。与可用的FBS相比,当网络中的用户数量较小时,我们观察到在减少不必要的切换方面具有更好的性能。

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