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A new Walrasian mechanism design for optimal pricing and resource allocation in heterogeneous wireless access networks

机译:一种新的Walrasian机制设计,用于异构无线接入网络中的最佳定价和资源分配

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摘要

In this paper, we address joint spectrum allocation and pricing problem in heterogeneous wireless access networks. In contrast to traditional static spectrum allocation approach, we model the spectrum as a market commodity, dynamically arbitrated by a regulatory agent with the aim of maximizing the social welfare. This is of particular importance with the dominance of wireless technologies in access networks and the sharp increase in the number of overlapping wireless technologies and networks. We designed a novel Walrasian mechanism called economic resource allocation and pricing based on a three-stage game model capable of considering multiple networks and clients with individual attributes and preferences. In the first stage, competition among networks for spectrum allocation is handled where the regulatory evaluates the social welfare and takes corrective action. In the bottom two stages, the complex interactions between clients and networks result in bitrate allocations and service pricings. The equilibrium condition is analyzed using the Walrasian market model which is argued to be the Nash equilibrium of the proposed game. The system behavior is analyzed through extensive simulations. The results confirm the effectiveness of the proposed mechanisms in moving the system towards maximal social welfare.
机译:在本文中,我们解决了异构无线接入网络中的联合频谱分配和定价问题。与传统的静态频谱分配方法相比,我们将光谱作为市场商品的模拟,由监管代理动态仲裁,目的是最大化社会福利。这对访问网络中无线技术的主导以及重叠无线技术和网络的数量的急剧增加特别重要。我们设计了一种名为经济资源分配和定价的新型Walrasian机制,基于一个三级游戏模型,能够考虑具有个人属性和偏好的多个网络和客户。在第一阶段,在监管评估社会福利并采取纠正措施的情况下,处理频谱分配网络之间的竞争。在底部两个阶段,客户端和网络之间的复杂交互导致比特率分配和服务定价。使用瓦拉夏市场模型分析了平衡条件,该模式被认为是拟议游戏的纳什均衡。通过广泛的模拟分析了系统行为。结果证实了拟议机制在将系统转变为最大社会福利方面的有效性。

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