LTE系统中基于比例公平算法的子载波和功率分配

Krunal N. Patel, H. Shah
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引用次数: 5

摘要

在以OFDM为调制技术的无线通信系统中,动态分配子载波和每个子载波的比特数是当前的发展趋势。在多用户场景中,每个用户接收到的信号强度随与基站的距离而变化。以吞吐量最大化为目标的算法,将更多的资源分配给信道条件较好的用户,可能导致资源分配不公平。试图实现公平牺牲系统吞吐量。比例公平算法很好地处理了这种权衡。我们已经研究了比例公平算法在实际条件下的性能,在整个小区中有大量分散位置的用户。在子载波分配的同时,对该算法进行了功率分配的检验。将比例公平算法与和率最大化算法进行了比较。我们考虑了与基站的距离变化和LTE标准的现实情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Subcarrier and power allocation with proportional fairness algorithm for LTE system
In wireless communication systems which uses OFDM as modulation technique, the prevailing trend is the dynamic assignment of resources like subcarrier and number of bits per subcarrier. In multiuser scenario, received signal strength of each user varies with the distance from the base station. The algorithms which target to maximize throughput, assigns more resources to the better channel conditioned user which may result into unfair distribution of resources. Attempts to achieve fairness sacrifice system throughput. The proportional fairness algorithm nicely handles this trade off. We have examined performance of the proportional fairness algorithm in realistic conditions with large numbers of users with scattered locations throughout the cell. Furthermore, this algorithm is examined with appropriate power allocation on each subcarrier along with subcarrier allocation. Comparison of proportional fairness algorithm is carried out with sum rate maximization algorithm. We have considered realistic conditions with variable distance from base station and LTE standard.
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