异构无线蜂窝网络中最优下行覆盖的节能资源分配

Quoc-Tuan Vien, T. Le, H. Nguyen, M. Karamanoğlu
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引用次数: 11

摘要

本文研究了考虑各种室内和室外传播模型的异构无线蜂窝网络(HWCN)的下行覆盖最大化问题。首先利用多层小区的随机几何模型,推导了实际HWCN的覆盖概率,描述了小区密度分配、小区功率分配、建筑基础设施和传输环境的影响。有趣的是,电池密度的增加可能不会导致更高的覆盖率,但会导致更高的总功耗。因此,覆盖优化问题的目标是在HWCN可用功率的约束下最大化覆盖概率。针对不同传播模型下的多层小区分配问题,提出了一种启发式小区密度分配算法。结果表明,与资源均等分配机制相比,该方案不仅实现了高达25%的覆盖区域,而且节省了20%的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An energy-efficient resource allocation for optimal downlink coverage in heterogeneous wireless cellular networks
This paper investigates downlink coverage maximisation in a heterogeneous wireless cellular network (HWCN) taking into account various indoor and outdoor propagation models. By using stochastic geometry modeling of multi-tier cells, the coverage probability of the practical HWCN is firstly derived characterising the impacts of cell density allocation, power allocation at cells, building infrastructures and transmission environment. It is interestingly observed that the increase of cell densities may not result in a higher coverage but causes a higher total power consumption. The coverage optimisation problem is therefore formulated aiming at maximising the coverage probability subject to the constraints on the power available in the HWCN. Specifically, an heuristic cell density allocation algorithm is proposed for the cell allocation at multiple tiers within various propagation models. The proposed scheme is shown to not only achieve a higher coverage region of up to 25% but also save 20% of power consumption when compared to the equal resource allocation mechanism.
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