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Optimising the downlink capacity of broadband fixed wireless access systems for packet-based communications

机译:为基于分组的通信优化宽带固定无线接入系统的下行链路容量

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This paper considers the problem of optimizing the downlink capacity of broadband fixed wireless access systems in two representative scenarios: a non-line-of-sight terrestrial system, and a system operating from a high altitude platform. In each case a packet-based system is considered, with the delay through the system of constant-length packets taken as the metric to evaluate the effectiveness of the resource allocation schemes considered. The joint optimization of adaptive modulation, channel selection scheme and queueing strategies is a complex multidimensional problem and a simulation approach is taken to evaluate the trade-offs. It is shown that good performance can be obtained from a simple resource allocation scheme over a wide range of different operating conditions, that consideration of queueing strategy is important to minimizing packet delay through the systems, and that the capacity of a broadband system using a high-altitude platform can be over three times as great as a terrestrial system of the same bandwidth.
机译:本文考虑了在两种代表性情况下优化宽带固定无线接入系统的下行链路容量的问题:非视距地面系统和在高海拔平台上运行的系统。在每种情况下,均考虑基于分组的系统,以恒定长度分组系统的延迟为度量标准,以评估所考虑的资源分配方案的有效性。自适应调制,信道选择方案和排队策略的联合优化是一个复杂的多维问题,并采用仿真方法评估了折衷方案。结果表明,可以通过简单的资源分配方案在各种不同的操作条件下获得良好的性能,考虑排队策略对于最大程度地减少系统中的数据包延迟,以及使用高带宽的宽带系统的容量至关重要。高度平台的带宽可以是具有相同带宽的地面系统的三倍以上。

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