Resource Management Games for Distributed Network Localization

IF 13.8 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Junting Chen, Wenhan Dai, Yuan Shen, V. Lau, M. Win
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引用次数: 26

Abstract

Resource management in the power and time–frequency domains is an important issue in distributed network localization. Since highly accurate ranging requires a large amount of time–frequency resources, cooperation among nodes without proper link selection may not be feasible. To address this issue, two resource management games are formulated, and Stackelberg equilibrium and link bargaining equilibrium are proposed as the solution concepts for efficient link selection and power allocation. Distributed algorithms are derived and analyzed using game theoretical approaches. It is demonstrated that the proposed strategies can achieve a lower mean squared error of position estimation with fewer ranging measurements.
分布式网络本地化的资源管理游戏
功率域和时频域的资源管理是分布式网络定位中的一个重要问题。由于高度精确的测距需要大量的时频资源,如果没有正确的链路选择,节点之间的合作可能是不可行的。为了解决这一问题,本文提出了两个资源管理博弈,并提出了Stackelberg均衡和链路议价均衡作为有效的链路选择和权力分配的解决概念。采用博弈论方法推导和分析了分布式算法。结果表明,该方法可以在较少的测距量下实现较低的位置估计均方误差。
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来源期刊
CiteScore
30.00
自引率
4.30%
发文量
234
审稿时长
6 months
期刊介绍: The IEEE Journal on Selected Areas in Communications (JSAC) is a prestigious journal that covers various topics related to Computer Networks and Communications (Q1) as well as Electrical and Electronic Engineering (Q1). Each issue of JSAC is dedicated to a specific technical topic, providing readers with an up-to-date collection of papers in that area. The journal is highly regarded within the research community and serves as a valuable reference. The topics covered by JSAC issues span the entire field of communications and networking, with recent issue themes including Network Coding for Wireless Communication Networks, Wireless and Pervasive Communications for Healthcare, Network Infrastructure Configuration, Broadband Access Networks: Architectures and Protocols, Body Area Networking: Technology and Applications, Underwater Wireless Communication Networks, Game Theory in Communication Systems, and Exploiting Limited Feedback in Tomorrow’s Communication Networks.
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