Performance Evaluation of Scheduling Algorithms of LTE and LTE-A Mobile Networks using Vienna Simulator

Aya Fathy, Aya Osama, Gehad Reda, Nora Ali
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Abstract

The third-generation partnership architecture specifies Long Term Evolution to give high data speeds of up to 100 Mbit/s and 50 Mbit/s for downlink and uplink transmission, respectively. It can be employed in a variety of bandwidth bands from 1.4 MHz to 20 MHz .The Vienna LTE simulator was used to examine the performance of homogeneous and heterogeneous networks by changing the various physical parameters. There are several distinct qualities that are employed, including through-put, spectrum efficiency, and fairness index. The scheduling mechanism is the process of allocating resources (time and frequency) to users who are simultaneously transmitting different streams. Several scheduling strategies, such as Round Robin, Proportional Fair, and Best CQI, are being looked into. Fractional Frequency Reuse (FFR) is also used to improve performance and reduce edge user disruption. Additionally, eNodeB and femtocells are included in the heterogeneous network, which is easily compared to the homogeneous network.
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使用维也纳模拟器评估 LTE 和 LTE-A 移动网络调度算法的性能
第三代伙伴关系架构规定,长期演进(Long Term Evolution)的下行链路和上行链路传输数据速度分别高达 100 Mbit/s 和 50 Mbit/s。它可用于 1.4 MHz 至 20 MHz 的各种带宽频段。通过改变各种物理参数,维也纳 LTE 模拟器被用来检验同构和异构网络的性能。采用的几种不同质量包括吞吐量、频谱效率和公平指数。调度机制是为同时传输不同数据流的用户分配资源(时间和频率)的过程。目前正在研究几种调度策略,如循环、比例公平和最佳 CQI。分数频率重用(FFR)也用于提高性能和减少边缘用户干扰。此外,异构网络还包括 eNodeB 和毫微微蜂窝,这很容易与同构网络进行比较。
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