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首页> 外文期刊>Mobile Computing, IEEE Transactions on >Measurement-Based Bandwidth Scavenging in Wireless Networks
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Measurement-Based Bandwidth Scavenging in Wireless Networks

机译:无线网络中基于测量的带宽清除

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Dynamic Spectrum Access can enable a secondary user in a cognitive network to access unused spectrum, or whitespace, found between primary user transmissions in a wireless network. The key design objective for a secondary user access strategy is to "scavengeȁD; the maximum amount of spatio-temporally fragmented whitespace while limiting the amount of disruption caused to the primary users. In this paper, we first measure and analyze the whitespace profiles of an 802.11 network (using ns-2 simulation) and a non-802.11 (CSMA)-based network (developed on TelosB Motes). Then we propose two novel secondary user access strategies, which are based on measurement and statistical modeling of the whitespace as perceived by the secondary users. Afterward, we perform simulation experiments to validate the effectiveness of the proposed access strategies under single and multiple secondary user scenarios, and evaluate their performance numerically using the developed analytical expressions. The results show that the proposed access strategies are able to consistently scavenge between 90 and 96 percent of the available whitespace capacity, while keeping the primary users disruption less than 5 percent.
机译:动态频谱访问可以使认知网络中的辅助用户访问无线网络中主要用户传输之间发现的未使用频谱或空白。辅助用户访问策略的主要设计目标是“清除”;最大时空碎片空间,同时限制对主要用户造成的破坏。在本文中,我们首先测量和分析802.11网络(使用ns-2仿真)和基于非802.11(CSMA)的网络(在TelosB Motes上开发),然后我们提出了两种新颖的辅助用户访问策略,它们基于对感知的空白的测量和统计建模然后,我们进行了仿真实验,以验证所提出的访问策略在单个和多个次要用户场景下的有效性,并使用所开发的解析表达式对它们的性能进行数值评估,结果表明所提出的访问策略能够始终清除90%到96%的可用空白容量,同时使主要用户感到失望低于5%。

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