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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Joint Downlink User Association and Interference Management in Two-Tier HetNets With Dynamic Resource Partitioning
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Joint Downlink User Association and Interference Management in Two-Tier HetNets With Dynamic Resource Partitioning

机译:具有动态资源划分的两层HetNet中的联合下行链路用户关联和干扰管理

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We investigate a joint user association and interference management problem in two-tier downlink heterogeneous networks where pico base stations (BSs) are densely deployed in areas of high traffic demand. We employ macro almost blanking subframes (ABSs) to mitigate cross-tier interference. To manage co-tier interference among picocells, we introduce pico operation mode (POM): During each POM, a distinct subset of picocells serve users simultaneously; different POMs operate at different times at different durations. We formulate the problem as maximizing the network utility under proportional fairness with the optimization over user association and resource partitioning (RP) (including the macro ABS and the amount of time allocated to each POM). As an exhaustive search over all possible POMs in the optimization may become computationally infeasible, we propose a method of preselecting favorable POMs to reduce the dimension of the optimization. With the selected POMs, we explicitly examine the structure of the optimal solutions and show that 1) the optimal user association is load-aware and can be determined by rate bias values of each BS, and 2) all the POMs and the macro BSs have balanced load in the sense that the ratios of the number of associated users to the allocated time are the same. Based on the analysis, an alternating algorithm is developed to obtain the RP and the biases. We demonstrate through numerical examples that 1) the proposed POM selection method does not incur significant performance loss, compared with the case where all possible POMs are considered; 2) the alternating algorithm provides near-optimal cell association and RP solutions; 3) by applying the proposed framework, significant network performance improvement can be achieved with dense pico deployments, compared with baselines without co-tier interference management and baselines with sparse pico deployments.
机译:我们调查了两层下行链路异构网络中的联合用户关联和干扰管理问题,其中微微基站(BS)密集部署在高流量需求区域。我们采用宏几乎消隐的子帧(ABS)来减轻跨层干扰。为了管理微微小区之间的共层干扰,我们引入了微微小区操作模式(POM):在每个POM期间,不同的微微小区子集同时为用户服务;不同的POM在不同的时间以不同的持续时间运行。我们将问题表述为在按比例公平的情况下最大化网络效用,同时优化用户关联和资源分配(RP)(包括宏ABS和分配给每个POM的时间)。由于对优化中所有可能的POM进行详尽搜索可能在计算上变得不可行,因此我们提出了一种预选有利POM的方法,以减小优化的规模。使用选定的POM,我们明确检查了最佳解决方案的结构,并显示出1)最佳用户关联是负载感知的,并且可以由每个BS的速率偏差值确定,以及2)所有POM和宏BS都有从关联用户数与分配时间之比相同的意义上说,负载均衡。在分析的基础上,开发了一种交替算法来获得RP和偏差。我们通过数值示例证明:1)与考虑所有可能的POM的情况相比,所提出的POM选择方法不会造成明显的性能损失; 2)交替算法提供接近最佳的小区关联和RP解决方案; 3)通过应用所提出的框架,与没有协同干扰管理的基准和具有稀疏微微部署的基准相比,密集的微微部署可以显着提高网络性能。

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