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SMAP: A Scalable and Distributed Architecture for Dynamic Spectrum Management

机译:SMAP:用于动态频谱管理的可扩展和分布式体系结构

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This paper presents the policy and technology case for decentralizing the architecture for dynamic spectrum management. A specific system concept called SMAP (distributed spectrum management architecture and protocol) is intended to enable wireless devices and networks to coordinate their spectrum use through an Internet-based common spectrum control plane. The SMAP architecture supports peer exchange of radio usage and control parameters between multiple wireless network domains operating in the same geographic region so that they can run distributed algorithms for optimization of transmission parameters to achieve efficiency and fairness while adhering to global and local policies. The architecture also provides interfaces to higher level cloud services including spectrum aggregators which facilitate broader cooperation and business relationships between wireless domains in the same area, or to regional spectrum databases such as the SAS (spectrum access system) being used for the 3.5 GHz innovation band. Design requirements for the proposed distributed spectrum control plane are discussed, including efficiency, scalability, decentralized decision making, support for local policy, service-level agreements and market mechanisms. This is followed by a technology outline of the architecture, explaining the high-level organization of the spectrum control plane, the participating entities, their protocol syntax and types of spectrum algorithms supported. Support for local policy and spectrum markets is also discussed. Proof-of-concept simulation and/or experimental results which demonstrate the technical feasibility of the proposed techniques are given for the following scenarios: (1) logically centralized spectrum coordination via regional spectrum brokers; (2) distributed coordination between colocated wireless domains using either single or multiple radio technologies (such as Wi-Fi and LTE); and (3) distributed coordination with additional local policy constraints. Future work is discussed in conclusion.
机译:本文介绍了用于分散动态频谱管理体系结构的策略和技术案例。一种称为SMAP(分布式频谱管理体系结构和协议)的特定系统概念旨在使无线设备和网络能够通过基于Internet的公共频谱控制平面来协调其频谱使用。 SMAP体系结构支持在同一地理区域中运行的多个无线网络域之间的无线电使用和控制参数的对等交换,因此它们可以运行分布式算法,以优化传输参数,从而在遵守全局和本地策略的同时实现效率和公平性。该体系结构还提供了到更高级别的云服务的接口,这些服务包括频谱聚合器,可以促进同一地区无线域之间的更广泛的合作和业务关系,也可以提供到区域频谱数据库,例如用于3.5 GHz创新频段的SAS(频谱访问系统) 。讨论了所提议的分布式频谱控制平面的设计要求,包括效率,可伸缩性,分散决策,对本地策略的支持,服务级别协议和市场机制。接下来是体系结构的技术概述,解释了频谱控制平面的高层组织,参与实体,其协议语法和支持的频谱算法类型。还讨论了对本地政策和频谱市场的支持。在以下情况下,给出了证明所提出技术的技术可行性的概念验证仿真和/或实验结果:(1)通过区域频谱经纪人进行逻辑集中的频谱协调; (2)使用单项或多项无线电技术(例如Wi-Fi和LTE)在同一地点的无线域之间进行分布式协调; (3)在其他地方政策约束下的分布式协调。最后讨论了未来的工作。

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