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Resource allocation based on cross-layer QoS-guaranteed scheduling for multi-service multi-user MIMO-OFDMA systems

机译:基于跨层QoS保证调度的多服务多用户MIMO-OFDMA系统资源分配

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摘要

Cross-layer strategies for resource allocation in wireless networks are essential to guaranty an efficient utilization of the scarce resource. In this paper, we present an efficient radio resource allocation scheme based on PHY/MAC cross layer design and QoS-guaranteed scheduling for multi-user (MU), multi-service (MS), multiinput multi-output (MIMO) concept, orthogonal frequency division multiple access (OFDMA) systems. It is about a downlink multimedia transmission chain in which the available resources as power and bandwidth, are dynamically allocated according to the system parameters. Among these parameters, we can mention the physical link elements such as channel state information, spectral efficiency and error code corrector rate, and MAC link variables, which correspond to the users QoS requirements and the queue status. Primarily, we use a jointly method which parametrizes these system parameters, according to the total power, and the bit error rate constraints. Secondly, we propose a QoS-guaranteed scheduling that shares the subcarriers to the users. These users request several type of traffic under throughput threshold constraints. The main objective in this work is to adjust the average throughput per service of each user, according to their needs and likewise to satisfy a great number of connexions. Subsequently, we consider a model of moderated compartmentalization between various classes of services by partitioning the total bandwidth into several parts. Each class of service will occupy a part of the bandwidth and will be transmitted over a maximum number of sub-carriers. The simulation results show that the proposed strategy provides a more interesting performance improvement (in terms of average data rate and user satisfaction) than other existing resource allocation schemes, such as nonadaptive resource allocation strategy. The performances are also analyzed and compared for the two multi-service multiuser MIMO-OFDMA systems; with sub-carriers partitioning and without sub-carriers partitioning.
机译:无线网络中资源分配的跨层策略对于保证有效利用稀缺资源至关重要。在本文中,我们提出了一种基于PHY / MAC跨层设计和QoS保证的多用户(MU),多服务(MS),多输入多输出(MIMO)概念,正交的有效无线资源分配方案频分多址(OFDMA)系统。关于下行链路多媒体传输链,其中根据系统参数动态分配可用资源(如功率和带宽)。在这些参数中,我们可以提到物理链路元素,例如信道状态信息,频谱效率和错误代码校正率以及MAC链路变量,它们对应于用户的QoS要求和队列状态。首先,我们使用一种联合方法,根据总功率和误码率约束对这些系统参数进行参数化。其次,我们提出了一个QoS保证的调度方案,将子载波共享给用户。这些用户在吞吐量阈值约束下请求几种类型的流量。这项工作的主要目的是根据每个用户的需求来调整每个用户的每项服务的平均吞吐量,并且同样要满足大量的连接需求。随后,我们通过将总带宽划分为几个部分,来考虑在各种服务类别之间进行适度隔离的模型。每种服务类别将占用一部分带宽,并将在最大数量的子载波上进行传输。仿真结果表明,与非自适应资源分配策略等其他现有资源分配方案相比,所提出的策略在性能(平均数据速率和用户满意度)方面提供了更有趣的改进。还分析和比较了两个多服务多用户MIMO-OFDMA系统的性能;具有子载波划分和不具有子载波划分。

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