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Three-Step Iterative Scheduler for QoS Provisioning to Users Running Multiple Services in Parallel

机译:三步迭代调度程序,用于为并行运行多个服务的用户提供QoS

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摘要

Wireless networks are evolving continuously and expected to provide seamless experience for multiple real-time internet applications. Quality-of-service is one of the major component associated with user experience. In this paper, we have considered the provisioning of desired QoS to mobile users that are capable of running multiple internet applications in parallel. For this purpose, a three-step iterative downlink scheduler is proposed for resource management at per-user-per-service level. The scheduler performs sorting in multiple iterations on the basis of three weights. In the first iteration, the scheduler performs sorting based on the throughput weight. The second iteration latency weight and followed by buffer weight in the third iteration. The allocation of resources is done to satisfy the promised QoS to all the services of every user. A comparison is carried out with traditional scheduling algorithms in terms of system throughput, fairness index and percentage of satisfied guaranteed bit-rate users. Results show that the proposed algorithm outperforms existing schemes and the performance is more closer to theoretical system throughput.
机译:无线网络不断发展,并有望为多种实时互联网应用程序提供无缝体验。服务质量是与用户体验相关的主要组成部分之一。在本文中,我们考虑了向能够并行运行多个Internet应用程序的移动用户提供所需的QoS。为此,提出了一个三步迭代的下行链路调度程序,用于每个用户每个服务级别的资源管理。调度程序基于三个权重执行多次迭代中的排序。在第一次迭代中,调度程序根据吞吐量权重执行排序。第二次迭代等待时间权重,然后在第三次迭代中跟随缓冲区权重。完成资源分配,以满足每个用户所有服务的承诺QoS。在系统吞吐量,公平性指标和满意的保证比特率用户百分比方面,与传统的调度算法进行了比较。结果表明,该算法优于现有方案,性能更接近理论系统吞吐量。

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