首页> 外文会议>2011 IEEE Symposium on New Frontiers in Dynamic Spectrum Access Networks >Lights and sirens broadband — How spectrum pooling, cognitive radio, and dynamic prioritization modeling can empower emergency communications, restore sanity and save billions
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Lights and sirens broadband — How spectrum pooling, cognitive radio, and dynamic prioritization modeling can empower emergency communications, restore sanity and save billions

机译:警笛声宽带—频谱池,认知无线电和动态优先级建模如何增强应急通信能力,恢复理智并节省数十亿美元

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In the United States, the public safety community is involved in a protracted debate with the FCC and commercial wireless industry over spectrum in the 700 MHz band. Public Safety claims to need both the Public Safety Spectrum Trust (PSST) allocation of 10 MHz and the adjacent D-Block allocation of 10 MHz to build a viable nationwide public safety broadband network. The Industry and the FCC are pushing back against this argument, citing a lack of evidence that public safety''s needs justify this additional spectrum, and arguing that public safety needs can be satisfied by receiving roaming rights on the D-Block operator''s commercial network for emergencies. Long Term Evolution (LTE) standards have been adopted and commercial development of LTE networks is proceeding. These networks provide advanced capability to use cognitive radio, dynamic spectrum access and most importantly provide prioritization and pre-emption of traffic based on user role, application, network conditions and other factors. Public Safety has adopted LTE as its next generation standard for broadband networks. Pooling the two blocks of spectrum and providing a single robust network nationwide, which can serve both the public and public safety with robust prioritization and pre-emption rules enforced by LTE technology would save billions of dollars of public and private funds and provide both the public and public safety with more capacity, more flexibility and more interoperability than two separate networks. Cognitive Radio can be employed to create the dynamic policy front end (a Cognitive Policy Model (CPM)) to regulate emergency redistribution of spectrum, and ensure that all spectrum is put to its highest and best use all the time without necessitating the expense of two overlaid network infrastructures. This paper examines the possible advantages of spectrum pooling, flexing and sharing of infrastructure as well as the challenges to shifting “back” to a partnership policy f--or commercial and public safety broadband spectrum holders.
机译:在美国,公共安全社区涉及与FCC和商业无线行业在700 MHz频段的频谱上涉及延长辩论。公共安全声称需要公共安全频谱信托(PSST)分配10 MHz和10 MHz的相邻D-Block分配,以建立一个可行的全国性公共安全宽带网络。该行业和FCC正在推回这个论点,引用缺乏证据表明公共安全的需求证明这一额外频谱证明,并认为可以通过在D-Block Operator''上获得漫游权利来满足公共安全需求新的紧急情况商业网络。已经采用了长期演进(LTE)标准,并进行了LTE网络的商业发展。这些网络提供了使用认知无线电,动态频谱访问的先进能力,最重要的是基于用户角色,应用程序,网络条件和其他因素提供交通的优先级和清单。公共安全采用LTE作为宽带网络的下一代标准。汇集两个频谱块并提供全国范围内的单一强大网络,可以为最强大的公共安全提供公共和公共安全,并由LTE技术执行的强制性优先级和先发制人规则将节省数十亿美元的公共和私人资金,并提供公众和公共安全的容量更多,灵活性更大,互操作性多于两个单独的网络。可以采用认知无线电来创建动态策略前端(认知政策模型(CPM))来调节频谱的紧急重新分布,并确保所有频谱都达到最高,并且最佳使用,而不需要牺牲两个覆盖网络基础架构。本文介绍了频谱池的可能优势,对基础设施的竞争和分享以及将“返回”转移到伙伴关系政策的挑战 - 或商业和公共安全宽带频谱架。

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