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A Delay-Centric Dynamic Resource Allocation Algorithm for Wireless Communication Systems Based on HNN

机译:基于HNN的无线通信系统中以延迟为中心的动态资源分配算法

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This paper proposes a dynamic resource-allocation (DRA) algorithm for packet data services in wireless communication systems based on Hopfleld neural networks (HNNs). The resource-allocation algorithm assumes a delay-centric approach in that it maximizes resource utilization of the overall system while minimizing the packet delay. The real-time (RT) working capability of HNN hardware implementation means that a very powerful scheduling DRA algorithm can be obtained. A generic formulation of the algorithm is presented to establish the optimal bit rate allocation. In addition, some illustrative examples of this formulation are given, considering specific wireless communication systems, such as general packet radio service (GPRS) or universal mobile telecommunications system (UMTS). To be more precise, the performance of the proposed DRA algorithm is evaluated in a realistic UMTS scenario, considering both RT and nonreal-time (NRT) services. To obtain the best resource distribution and fulfill the different quality-of-service (QoS) levels required by RT and NRT services, the new HNN-based delay-centric DRA algorithm is performed twice. Initially, only the RT services are considered, and following this, all the NRT services are taken into account. The results reveal that the proposed DRA algorithm outperforms other reference algorithms in terms of not only average packet delay but the allocated total bit rate as well.
机译:提出了一种基于Hopfleld神经网络(HNN)的无线通信系统中分组数据业务动态资源分配(DRA)算法。资源分配算法采用以延迟为中心的方法,因为该方法可以最大程度地提高整个系统的资源利用率,同时又可以最大程度地减少数据包延迟。 HNN硬件实现的实时(RT)工作能力意味着可以获得非常强大的调度DRA算法。提出了算法的通用公式,以建立最佳比特率分配。另外,考虑了特定的无线通信系统,例如通用分组无线业务(GPRS)或通用移动电信系统(UMTS),给出了该公式的一些说明性示例。更准确地说,在考虑了RT和非实时(NRT)服务的情况下,在现实的UMTS方案中评估了提出的DRA算法的性能。为了获得最佳的资源分配并满足RT和NRT服务所需的不同服务质量(QoS)级别,新的基于HNN的以延迟为中心的DRA算法执行了两次。最初,仅考虑RT服务,然后再考虑所有NRT服务。结果表明,提出的DRA算法不仅在平均数据包延迟方面而且在分配的总比特率方面也优于其他参考算法。

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