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Study on Resource Optimization for Heterogeneous Networks

机译:异构网络资源优化研究

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This work studies the benefits of heterogeneous cellular networks with overlapping picocells in a large macrocell. We consider three different strategies for resource allocation and cell association. The first model employs a spectrum overlapping strategy with an SINR-based cell association. The second model avoids the interference between macrocell and picocell through a spectrum splitting strategy. Furthermore, picocell range expansion is also considered in this strategy to enable a load balancing between the macrocell and picocells. The last model is a hybrid one, called as fractional spectrum splitting strategy, where spectrum splitting strategy is only applied at the picocell-edge, while the picocell-inner reuses the spectrum of the macrocell. We constructs resource allocation optimization problem for these strategies to maximize the system rate. Our results show that in terms of system rate, all the three strategies outperform the performance of macrocell-only case, which shows the benefit of heterogeneous networks. Moreover, fractional spectrum splitting strategy provides highest system rate at the expense of outage user rate degradation due to inter-macro-pico interference. Spectrum overlapping model provides the second highest system rate gain and also improves outage user rate owing to full spectrum reuse and the benefit of macro diversity, while spectrum splitting model achieves a moderate system rate gain.
机译:这项工作研究了在大型宏小区中具有重叠的微微小区的异构蜂窝网络的好处。我们考虑三种不同的资源分配和小区关联策略。第一个模型采用具有基于SINR的小区关联的频谱重叠策略。第二种模型通过频谱分裂策略避免了宏小区和微微小区之间的干扰。此外,在该策略中还考虑了微微小区范围扩展,以实现宏小区与微微小区之间的负载平衡。最后一种模型是混合模型,称为分数频谱分割策略,其中频谱分割策略仅应用于微微小区边缘,而微微小区内部则重用宏小区的频谱。我们针对这些策略构造资源分配优化问题,以最大化系统速率。我们的结果表明,就系统速率而言,所有三种策略均优于仅使用宏小区的情况,这表明了异构网络的优势。此外,分数频谱分割策略以由于宏微微微干扰而导致的中断用户速率下降为代价,提供了最高的系统速率。频谱重叠模型提供了第二高的系统速率增益,并且由于完全的频谱重用和宏分集的好处,还提高了停电用户速率,而频谱分裂模型获得了中等的系统速率增益。

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