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A reversible hierarchical scheme for microcellular systems with overlaying macrocells

机译:具有覆盖宏小区的微孔系统可逆分层方案

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Future cellular systems are expected to use multilayered, multisized cells to cover non-homogeneous populated areas. An example in literature is given by a 2 level hierarchical architecture in which an overlaying macrocell provides a group of overflow channels utilized when a microcell, which covers a densely populated area, is not able to accommodate a new call, or a handover from another microcell. The macrocell has the higher hierarchical position, meaning that it can receive handover requests from microcells, lower in the hierarchy, as well as from other macrocells. On the contrary, a call served by the macrocell cannot handover to a microcell. This paper proposes a reversible hierarchical scheme characterized by the presence of handover attempts from macrocells to microcells. The scheme is conceived so that the microcells are given the majority of the traffic load as they are able to operate with very high capacity, while the macrocells, having lower channel utilization, can better carry out their support task. An analytical study is carried out showing that the system performance can be improved, at the expense of relatively little increase of network control overhead, when compared with the classical, i.e. nonreversible hierarchical scheme.
机译:预计未来的细胞系统将使用多层多化细胞来覆盖非均匀人口稠密的区域。文献中的示例由一个2级层级架构给出,其中覆盖宏小区提供了一种覆盖覆盖宽容填充区域的微小区时使用的溢出信道,该概况不能容纳新的呼叫或从另一个微小区的切换。宏小区具有较高的层级位置,这意味着它可以从层次结构中的微块,以及从层次结构中较低,以及其他宏小区接收切换请求。相反,宏小区服务的呼叫不能切换到微小区。本文提出了一种可逆的等级方案,其特征在于,通过从宏小区到微胶体的切换尝试的存在。设想该方案,使得微小区被赋予大多数交通负荷,因为它们能够以非常高的容量运行,而宏小区具有较低信道利用率,可以更好地执行其支持任务。进行了一个分析研究,表明可以提高系统性能,以牺牲网络控制开销的牺牲增加,与经典相比,即不可转移等级方案相比。

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