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Downlink Resource Allocation for Next Generation Wireless Networks with Inter-Cell Interference

机译:具有小区间干扰的下一代无线网络的下行链路资源分配

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This paper presents a novel downlink resource allocation scheme for OFDMA-based next generation wireless networks subject to inter-cell interference (ICI). The scheme consists of radio resource and power allocations, which are implemented separately. Low-complexity heuristic algorithms are first proposed to achieve the radio resource allocation, where graph-based framework and fine physical resource block (PRB) assignment are performed to mitigate major ICI and hence improve the network performance. Given the solution of radio resource allocation, a novel distributed power allocation is then performed to optimize the performance of cell-edge users under the condition that desirable performance for cell-center users must be maintained. The power optimization is formulated as an iterative barrier-constrained water-filling problem and solved by using the Lagrange method. Simulation results indicate that our proposed scheme can achieve significantly balanced performance improvement between cell-edge and cell-center users in multi-cell networks compared with other schemes, and therefore realize the goal of future wireless networks in terms of providing high performance to anyone from anywhere.
机译:本文提出了一种新的针对基于OFDMA的下一代无线网络的下行链路资源分配方案,该方案受到小区间干扰(ICI)。该方案包括无线电资源和功率分配,它们分别实现。首先提出了低复杂度的启发式算法来实现无线资源分配,其中执行基于图的框架和精细物理资源块(PRB)分配以减轻主要ICI并因此改善网络性能。给定无线电资源分配的解决方案,然后在必须保持小区中心用户的期望性能的条件下,执行新颖的分布式功率分配以优化小区边缘用户的性能。功率优化公式化为迭代障碍约束注水问题,并使用拉格朗日方法求解。仿真结果表明,与其他方案相比,我们提出的方案可以在多小区网络中的小区边缘和小区中心用户之间实现显着平衡的性能提升,从而实现了未来无线网络向任何人提供高性能的目标。任何地方。

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