An evaluation of scheduling algorithms in LTE based 4G networks

Qurat-ul-ain, Syed Riaz ul Hassnain, M. Shah, S. Mahmud
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引用次数: 7

Abstract

The intent of 4G technology is to converge high speed data application requirements and compete with other technologies. Different techniques i.e relaying, carrier aggregation, multiple input multiple output, and heterogeneous networks provide higher throughputs, low latency and enable LTE to become a Standard for Wireless broadband. Due to almost exponential increase in demand for high data rates it is expected that network will be occupied by more resource demanding applications. Therefore efficient scheduling of radio resources is required for better performance of LTE system. Proportional Fair scheduler is adopted to LTE system to achieve Orthogonal Frequency Division Multiple Access (OFDMA) potentiality in Time Domain systems (TDS) and Frequency Domain scheduling systems (FDS). This paper aims at enhancing the functionality of Proportional Fair algorithm by making future estimation of the channel quality index (CQI) to offer higher data rate among all users according to their running applications, at high mobility. Performance of proposed algorithm on the downlink is measured in terms of throughput and block error rate using a MATLAB-based system level simulator.
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基于LTE的4G网络调度算法评估
4G技术的目的是汇聚高速数据应用需求,与其他技术竞争。不同的技术,如中继、载波聚合、多输入多输出和异构网络提供更高的吞吐量、低延迟,并使LTE成为无线宽带的标准。由于对高数据速率的需求几乎呈指数级增长,预计网络将被更多资源要求高的应用程序占用。因此,为了提高LTE系统的性能,需要对无线资源进行有效的调度。为了实现正交频分多址(OFDMA)在时域系统(TDS)和频域调度系统(FDS)中的潜力,在LTE系统中采用了比例公平调度程序。本文旨在通过对信道质量指数(CQI)的未来估计来增强比例公平算法的功能,从而在高移动性下根据所有用户运行的应用提供更高的数据速率。采用基于matlab的系统级模拟器,从吞吐量和分组错误率两方面对所提算法在下行链路上的性能进行了测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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