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The Optimal Subcarrier and Bit Allocation for Multiuser OFDM System: A Dual-Decomposition Approach

机译:多用户OFDM系统的最佳子载波和比特分配:双分解方法

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摘要

The advantages of the orthogonal frequency division multiplexing (OFDM) are high spectral efficiency, resiliency to RF interference, lower multi-path distortion and others. To further utilize the vast channel capacity of the multiuser OFDM, one has to find the efficient adaptive subcarrier and bit allocation among users. In this paper, we propose a 0-1 integer programming model formulating the optimal subcarrier and bit allocation problem of the multiuser OFDM. We proved that the continuous relaxation of our formulation is tighter than the previous convex optimization formulation based on perspective function and the Lagrangian dual bound of our formulation is equivalent to the linear programming relaxation bound. The proposed Lagrangian dual is seperable with respect to subcarriers and allows an efficient dual maximization algorithm. We compared the performance of the integer programming formulation and the Lagrangian dual of our formulation and the continuous relaxation and the primal heuristic proposed in [3]. Computer simulation on a system employing M-ary quadrature amplitude modulation (MQAM) assuming a frequency-selective channel consisting of three independent Rayleigh mul-tipaths is carried out with the optimal subcarrier and bit allocation solution generated by the 0-1 integer programming model.
机译:正交频分复用(OFDM)的优点是频谱效率高,对RF干扰具有弹性,较低的多径失真等。为了进一步利用多用户OFDM的巨大信道容量,必须找到用户之间的有效自适应子载波和比特分配。在本文中,我们提出了一个0-1整数规划模型,该模型阐述了多用户OFDM的最佳子载波和比特分配问题。我们证明了我们的公式的连续弛豫比以前的基于透视函数的凸优化公式更紧密,并且我们公式的拉格朗日对偶界等价于线性规划弛豫界。所提出的拉格朗日对偶对于子载波是可分离的,并且允许有效的对偶最大化算法。我们比较了整数规划公式和我们的公式的拉格朗日对偶以及在[3]中提出的连续松弛和原始启发式算法的性能。假设使用由0-1整数编程模型生成的最佳子载波和比特分配解决方案,在采用Mary正交幅度调制(MQAM)的系统上进行了计算机仿真,该系统假设频率选择信道由三个独立的Rayleigh多路径组成。

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