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Game Theoretic Distributed Uplink Power Control For Cdma Networks With Real-time Services

机译:具有实时服务的Cdma网络的博弈论分布式上行链路功率控制

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摘要

In this paper, the issue of efficient power allocation in the uplink of CDMA wireless networks supporting real-time services with various QoS constraints, is addressed. Within the proposed framework, utility functions are adopted to reflect a user's degree of satisfaction with respect to its actual throughput requirements satisfaction and respective power consumption. The corresponding problem is formulated as a non-cooperative game where users aim selfishly at maximizing their utility-based performance under the imposed limitations. The existence and uniqueness of a Nash equilibrium point of the proposed Uplink Power Control (UPC) game is proven, at which all users have attained a targeted SINR threshold value or transmit with their maximum power, leading essentially to an SINR-balanced system. Moreover, a distributed iterative algorithm for reaching UPC game's equilibrium is provided. The properties of equilibrium in a pure optimization theoretical framework are studied, and the tradeoffs between users' overall throughput performance and real-time services' QoS requirements satisfaction, in channel aware resource allocation processes, are revealed and quantified. Through modeling and simulation the efficacy of the introduced framework and proposed UPC algorithm are demonstrated and evaluated.
机译:在本文中,解决了支持具有各种QoS约束的实时服务的CDMA无线网络的上行链路中的有效功率分配问题。在提出的框架内,采用效用函数来反映用户对其实际吞吐量要求的满意程度和相应的功耗的满意程度。相应的问题被表述为非合作游戏,其中用户自私地致力于在施加的限制下最大化其基于效用的性能。所提出的上行链路功率控制(UPC)游戏的纳什均衡点的存在性和唯一性得到了证明,所有用户均已达到目标SINR阈值或以其最大功率进行传输,从而实质上形成了SINR均衡系统。此外,提供了一种用于达到UPC游戏平衡的分布式迭代算法。在纯优化理论框架下研究了均衡的性质,并在信道感知资源分配过程中揭示和量化了用户总体吞吐性能与实时服务的QoS要求满意度之间的权衡。通过建模和仿真,论证和评估了引入的框架和提出的UPC算法的有效性。

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