生态启发的异构无线网络共存

Kaigui Bian, J. Park, Xiaojiang Du, Xiaoming Li
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引用次数: 16

摘要

许多无线标准(例如IEEE 802.11af和IEEE 802.22)已经开发或正在开发中,以便使用认知无线电(CR)技术在电视白色空间(TVWS)中实现机会访问。当基于不同无线标准的异构CR网络在相同的TVWS中运行时,共存问题可能会导致重大问题。由于共存网络的MAC/PHY设计不兼容,通过异构CR网络之间的直接协调实现协作共存是非常具有挑战性的。此外,直接协调将要求相互竞争的网络或服务提供商交换敏感的控制信息,这可能会引起利益冲突问题和客户隐私问题。在本文中,我们提出了一种能够在TVWS上实现异构CR网络协作共存的体系结构,称为共生异构共存体系结构(shared)。SHARE通过模拟稳定生态系统中异质生物之间的共生关系(即种间竞争过程),通过中介系统建立了异质CR网络间频谱共享的间接协调机制,避免了直接协调的弊端。分析和仿真结果表明,SHARE以加权公平的方式在共存的网络之间分配频谱,而不需要网络间的直接协调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ecology-inspired coexistence of heterogeneous wireless networks
A number of wireless standards (e.g., IEEE 802.11af and IEEE 802.22) have been developed or are currently being developed for enabling opportunistic access in TV white space (TVWS) using cognitive radio (CR) technology. When heterogeneous CR networks that are based on different wireless standards operate in the same TVWS, coexistence issues can potentially cause major problems. Enabling collaborative coexistence via direct coordination between heterogeneous CR networks is very challenging due to incompatible MAC/PHY designs of coexisting networks. Moreover, the direct coordination would require competing networks or service providers to exchange sensitive control information that may raise conflict of interest issues and customer privacy concerns. In this paper, we present an architecture for enabling collaborative coexistence of heterogeneous CR networks over TVWS, called Symbiotic Heterogeneous coexistence ARchitecturE (SHARE). By mimicking the symbiotic relationships (i.e., the interspecific competition process) between heterogeneous organisms in a stable ecosystem, SHARE establishes an indirect coordination mechanism for spectrum sharing between heterogeneous CR networks via a mediator system, which avoids the drawbacks of direct coordination. Analytical and simulation results show that SHARE allocates spectrum among coexisting networks in a weighted-fair manner without any inter-network direct coordination.
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