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Cognitive Radios - What are They and Why are the Military and Civil Users Interested in Them

机译:认知收音机 - 他们是什么以及为什么军方和民事用户对他们感兴趣

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The expected trend toward ubiquitous communications to satisfy user expectations will most likely increase the demand for radio spectrum access, the need for co-existence and inter-working of heterogeneous networks. Most of today's radio systems, however, are not aware of their radio spectrum environment and are designed to operate in a specific frequency band using a specific, pre-ordained, spectrum access system. Investigations of spectrum utilisation also regularly show that not all the spectrum is in use at any one time. A radio, therefore, that can sense and understand its local radio spectrum environment and identify temporary vacant spectrum and local users, has the potential to provide enhanced communications services, increase spectrum efficiency and minimise the need for centralised spectrum management. The highly dynamic spectrum access required could be achieved by a radio that can make autonomous (and rapid) decisions on how it accesses spectrum - such radios have come to be known as Cognitive Radios (CRs). Many challenges must be overcome if the promise of CR is to be realised. This includes formulating appropriate rules for the regulation of such radios, co-existence prediction, certification etc. In addition to these the behaviour of CRs in a wide range of civil, military and mixed user scenarios need to be carefully considered and, where necessary constrained, to maximise the economic potential of this new way of accessing spectrum. In this paper we will outline the various forms of CR being considered from licence exempt radios to full licence shared "cognitive" radios. Some key drivers and the benefits of these radios from both a military and civil perspective will be summarised and the potential regulatory/management challenges in controlling such radios will be introduced. The relevance of CR radios to the Antennas and Propagation community will be outlined.
机译:普遍通信的预期趋势将最有可能增加无线电频谱访问的需求,需要共存和异构网络的相互作用。然而,今天的大多数无线电系统不了解其无线电频谱环境,并且设计用于使用特定的预先定义的频谱接入系统在特定频带中操作。频谱利用的调查还经常表明,并非所有频谱都在任何时候都在使用。因此,无线电,可以感知和了解其本地无线电频谱环境,并识别临时空置频谱和本地用户,有可能提供增强的通信服务,提高频谱效率并最小化对集中频谱管理的需求。所需的高动态频谱访问可以通过可通过可获取自主(和快速)决定如何访问频谱的无线电 - 这种无线电已经被称为认知收音机(CRS)。如果要实现CR的承诺,必须克服许多挑战。这包括制定用于监管此类收集者,共存预测,认证等的适当规则。除了这些CRS在广泛的公民,军事和混合用户情景中的行为之外,需要仔细考虑,并且在必要的约束时,最大限度地提高这种访问频谱的经济潜力。在本文中,我们将概述各种形式的CR被视为从许可证免除无线电到全方位许可证共享“认知”无线电。将概述一些关键的驱动因素和这些无线电的利益,并概述了控制此类收音机的潜在监管/管理挑战。 CR无线电与天线和传播界的相关性将概述。

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