Distributed resource optimization in multicell OFDMA networks

Mohammad Fathi, E. Karipidis
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引用次数: 6

Abstract

We consider the joint allocation of receiver, bit, and power to subcarriers in the downlink of multicell orthogonal frequency-division multiple-access (OFDMA) networks. Assuming that the cells share the entire bandwidth and that the rates are discrete, we formulate the joint allocation problem as a nonlinear mixed integer program (MIP), which however has exponential worst-case complexity. We capitalize on the capability of the receivers to measure the interference-plus-noise on every subcarrier and decompose the joint problem into a set of smaller-scale linear MIPs solved by individual base stations. Accordingly, we propose a distributed algorithm with linear complexity, in which the base stations participate in the problem solution in a round-robin manner. Simulation results demonstrate the effectiveness of the proposed algorithm in comparison with the iterative waterfilling algorithm and the successive optimal solution, by means of standard branch-and-cut solvers, of the individual MIPs.
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多小区OFDMA网络中的分布式资源优化
研究了多单元正交频分多址(OFDMA)网络下行链路中接收机、比特和功率的联合分配问题。假设单元共享整个带宽且速率是离散的,我们将联合分配问题表述为一个非线性混合整数规划(MIP),但它具有指数级的最坏情况复杂度。我们利用接收器测量每个子载波上的干扰和噪声的能力,并将联合问题分解为一组由单个基站解决的较小规模的线性MIPs。据此,我们提出了一种线性复杂度的分布式算法,其中基站以轮询的方式参与问题求解。仿真结果表明,该算法与迭代充水算法和逐个MIPs的逐次最优解进行了比较。
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