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Satisfaction Equilibrium: A General Framework for QoS Provisioning in Self-Configuring Networks

机译:满意度均衡:自配置网络中QoS供应的一般框架

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This paper is concerned with the concept of equilibrium and quality of service (QoS) provisioning in self-configuring wireless networks with non-cooperative radio devices (RD). In contrast with the Nash equilibrium (NE), where RDs are interested in selfishly maximizing its QoS, we present a concept of equilibrium, named satisfaction equilibrium (SE), where RDs are interested only in guaranteing a minimum QoS. We provide the conditions for the existence and the uniqueness of the SE. Later, in order to provide an equilibrium selection framework for the SE, we introduce the concept of effort or cost of satisfaction, for instance, in terms of transmit power levels, constellation sizes, etc.. Using the idea of effort, the set of efficient SE (ESE) is defined. At the ESE, transmitters satisfy their minimum QoS incurring in the lowest effort. We prove that contrary to the (generalized) NE, at least one ESE always exists whenever the network is able to simultaneously support the individual QoS requests. Finally, we provide a fully decentralized algorithm to allow self-configuring networks to converge to one of the SE relying only on local information.
机译:本文涉及具有非协同无线电设备(RD)的自配置无线网络中的均衡和服务质量(QoS)提供的概念。与纳什均衡(NE)相比,RDS对自私地提高其QoS感兴趣,我们展示了均衡的概念,名为满意度均衡(SE),其中RDS仅担保最低QoS感兴趣。我们为存在的存在和唯一性提供条件。后来,为了为SE提供均衡选择框架,我们介绍了努力或满足成本的概念,例如,在传输功率水平,星座尺寸等方面。使用努力的想法,这组有效的SE(ESE)定义。在ESE,发射机以最低努力满足其最低QoS。我们证明与(广义)NE相反,每当网络能够同时支持个人QoS请求时,至少存在一个ESE。最后,我们提供了一种完全分散的算法,可以允许自配置网络将其收敛到仅在本地信息上依赖的一个。

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