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Resource Allocation and Scheduling in FDD Multihop Cellular Systems

机译:FDD多跳蜂窝系统中的资源分配和调度

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Cellular radio systems of the next generation aim to make the most out of the available radio resources in the dimensions bandwidth, time and space. The division of time into slots, frames and superframes is standard, both for TDD and FDD duplex modes. OFDMA allows the individual disposition of subchannels as a subdivision of the bandwidth but an aggregation of subcarriers. A basic resource unit is hence a brick in this two-dimensional grid. Space is important both as the location of the base station in whose surrounding the resources are used and in spatial diversity channels. These resources are the scarce good in future radio communications, because they are required proportionally to the traffic demand per area. Due to adaptive modulation and coding schemes and large ranges of possible SINR values, the required resources for a transmission may differ by a factor ten depending on the distances. In this paper we discuss the resource allocation and scheduling mission. We introduce a control system view on the topic, taking adaptive algorithms for modulation, power, subchannel usage and channel quality indication into account.
机译:下一代的蜂窝无线电系统旨在使尺寸带宽,时间和空间中的可用无线电资源中的最大。将时间划分为插槽,帧和超帧是标准的,用于TDD和FDD双工模式。 OFDMA允许子信道的个人处置作为带宽的细分,但是子载波的聚合。因此,基本资源单元在该二维网格中是一块砖。空间都很重要,既是基站的位置,也可以使用其周围的资源以及空间分集通道。这些资源是未来无线电通信中稀缺的良好,因为它们是按每区域的交通需求成比例。由于自适应调制和编码方案和可能的SINR值的大范围,根据距离,变速器的所需资源可能因因素十个而异。在本文中,我们讨论了资源分配和调度任务。我们在主题上介绍一个控制系统视图,以考虑到的调制,电源,子信道使用和信道质量指示的自适应算法。

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