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Chunk-Based Resource Allocation in OFDMA Systems—Part II: Joint Chunk, Power and Bit Allocation

机译:OFDMA系统中基于块的资源分配-第二部分:块,功率和比特联合分配

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By grouping a number of adjacent subcarriers into a chunk, resource allocation can be carried out chunk by chunk in orthogonal frequency division multiple access (OFDMA) systems. Chunk-based resource allocation is an effective approach to reduce the complexity of resource allocation in OFDMA systems. In this paper, a chunk-based resource allocation scheme, i.e. joint chunk, power and bit allocation, is proposed and analyzed by maximizing the throughput under a total transmit power constraint. A scaling factor is introduced to achieve optimal allocation. Considering the digital nature of bits per symbol per subcarrier (bits/symbol/subcarrier), a digitization process is proposed to digitize the theoretically allocated bits/symbol/subcarrier to integer. System parameters, such as the power constraint, number of users, coherence bandwidth, number of subcarriers and number of chunks, are introduced and their impacts on the average throughput are studied. The performance of the dynamic power allocation scheme is compared with the fixed power allocation scheme. The numerical results show that the theoretical throughput of the fixed power allocation scheme is quite close to that of the dynamic power allocation scheme. However, when the digital nature of bits/symbol/subcarrier is considered, the average throughput of the dynamic power allocation outperforms the fixed power allocation scheme.
机译:通过将多个相邻子载波分组为一个块,可以在正交频分多址(OFDMA)系统中逐个块地进行资源分配。基于块的资源分配是降低OFDMA系统中资源分配复杂性的有效方法。本文提出了一种基于块的资源分配方案,即联合块,功率和比特分配,并通过在总发射功率约束下最大化吞吐量来进行分析。引入比例因子以实现最佳分配。考虑到每个子载波每个符号的比特的数字性质(比特/符号/子载波),提出了一种数字化过程,以将理论上分配的比特/符号/子载波数字化为整数。介绍了功率约束,用户数量,相干带宽,子载波数量和组块数量等系统参数,并研究了它们对平均吞吐量的影响。将动态功率分配方案的性能与固定功率分配方案进行比较。数值结果表明,固定功率分配方案的理论吞吐量与动态功率分配方案的理论吞吐量非常接近。然而,当考虑比特/符号/子载波的数字性质时,动态功率分配的平均吞吐量优于固定功率分配方案。

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