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Utility Based Short-term Throughput Driven Scheduling Approach for Efficient Resource Allocation in CDMA Wireless Networks

机译:基于公用事业的短期吞吐量驱动调度方法,在CDMA无线网络中进行有效的资源分配

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摘要

In this paper, we address the problem of efficient recourse allocation in CDMA wireless networks supporting multimedia services with various and often diverse QoS prerequisites, placing special emphasis on real-time services' essential requirements satisfaction. We first provide an analytical framework for studying real-time users' short-term delay and throughput properties under fundamental opportunistic scheduling policies. The corresponding results demonstrate that probabilistic delay constraints are insufficient indicators of real-time services' QoS prerequisites, while probabilistic short-term throughput requirements are more appropriate in asserting their performance expectations. Based on these observations and results, we propose and develop a scheduling policy for efficiently supporting heterogeneous services that include delay-tolerant non-real-time and delay-sensitive real-time services, over a wireless CDMA system under a common utility based framework. A user's utility characterizes his degree of satisfaction for the received service as well as QoS expectations fulfillment, in a normalized way. Aiming at the maximization of users' utilities, both non-real-time services' long-term and real-time services' short-term throughput QoS requirements are met, under the proposed opportunistic scheduler. Finally, via modeling and simulation it is demonstrated that significant performance improvements concerning both types of services' QoS requirements satisfaction are achieved through the proposed scheduling approach.
机译:在本文中,我们解决了在CDMA无线网络中有效的资源分配问题,该无线网络支持具有多种多样且通常不同的QoS先决条件的多媒体服务,并特别强调了实时服务的基本需求满足。我们首先提供一个分析框架,用于在基本机会调度策略下研究实时用户的短期延迟和吞吐量属性。相应的结果表明,概率延迟约束条件不足以指示实时服务的QoS前提条件,而概率短期吞吐量要求更适合维护其性能预期。基于这些观察和结果,我们提出并开发了一种调度策略,用于在基于公用程序的通用框架下,通过无线CDMA系统有效地支持异构服务,其中包括延迟容忍的非实时和延迟敏感的实时服务。用户的实用程序以一种标准化的方式来表征其对接收服务的满意度以及QoS期望的实现。在提议的机会调度器下,为了最大程度地提高用户的效用,可以满足非实时服务的长期和实时服务的短期吞吐量QoS要求。最后,通过建模和仿真证明,通过提出的调度方法,可以实现有关两种服务的QoS要求满意度的显着性能改进。

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