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首页> 外文期刊>IEICE Transactions on Communications >Ofdma Resource Allocation Based On Traffic Class-oriented Optimization
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Ofdma Resource Allocation Based On Traffic Class-oriented Optimization

机译:基于面向流量类别的优化的Ofdma资源分配

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摘要

Orthogonal Frequency Division Multiple Access (OFDMA) is the technique for the next generation wireless networks, whose enhanced capacity is to serve a combination of traffic with diverse QoS requirements. To realize this, the resource allocation scheme has to be carefully designed so that the instantaneous channel condition, QoS provision, and the network utilization are integrated. In this paper, we propose the resource allocation scheme for downlink traffic of 2 classes; guaranteed and non-guaranteed, having different traffic contracts. We provide guaranteed throughput for the guaranteed class by considering the cost incurred from serving this class. Then, we formulate the assignment problem with the objective of minimizing this cost. For the non-guaranteed class, we aim to maximize network utilization and to maintain throughput fairness, by employing Proportional Fairness (PF) utility function and emphasizing on the portion of network resource that the user received and the individual user's queue length. We use a heuristic approach to schedule users' data into the downlink subframe by exploiting multi-user multi-channel diversity to utilize system's bandwidth efficiently. Intensive simulation shows that our scheme differentiates classes of traffic and provides satisfied throughput, lower packet drop rate, and lower queuing delay to the guaranteed class, comparing with those of the non-guaranteed class. Furthermore, the results also show that the scheme is fair to users in the same class in both throughput and service time.
机译:正交频分多址(OFDMA)是用于下一代无线网络的技术,其增强的能力是为具有不同QoS要求的流量组合提供服务。为实现这一点,必须仔细设计资源分配方案,以便将瞬时信道条件,QoS提供和网络利用率集成在一起。本文提出了两类下行业务的资源分配方案。保证的和非保证的,具有不同的交通合同。我们通过考虑服务该类所产生的成本,为有保证的类提供有保证的吞吐量。然后,我们以最小化此成本为目标制定分配问题。对于非保证类,我们旨在通过使用比例公平(PF)实用程序功能,并强调用户收到的网络资源部分和单个用户的队列长度,来最大程度地利用网络并保持吞吐量公平。通过利用多用户多信道分集来有效利用系统带宽,我们采用启发式方法将用户数据调度到下行子帧中。密集仿真表明,与非保证类相比,我们的方案区分了通信类,并提供了令人满意的吞吐量,更低的数据包丢弃率和更低的排队延迟。此外,结果还表明,该方案对于吞吐量和服务时间均对相同级别的用户而言是公平的。

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