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Field trials of DVB-T sensing for TV White Spaces

机译:电视白色空间DVB-T感测的现场试验

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The use of TV White Space spectrum on a secondary, unlicensed basis has been of great interest in academia, industry and regulatory bodies worldwide. Proposed applications have included residential data transfer and content streaming, and rural broadband. In the US, the FCC has published rules for unlicenced devices in the TV bands, while in the UK, Ofcom has released statements on the subject. Central to these regulatory requirements is the constraint that all unlicenced devices must operate as secondary users and cause no interference to primary users. We study autonomous spectrum sensing as a means of avoiding interference. Using this technique, a device uses its own receiver to decide if a particular channel is available or not by listening from transmissions from primary users. A particular challenge is the well-known ‘hidden node’ problem in which a device is shielded from a transmitter but not a receiver that would suffer from interference. To guarantee protection to primary users under these circumstances requires very low sensing thresholds and the FCC (−115 dBm) and Ofcom (−120 dBm) have both proposed levels that are below the noise floor.
机译:在次要的,无纯度基础上使用电视白色空间谱对全世界的学术界,工业和监管机构具有很大的兴趣。拟议的申请包括住宅数据传输和内容流,以及农村宽带。在美国,FCC发布了电视乐队中未知设备的规则,而在英国,Ofcom已发布关于该主题的陈述。这些监管要求的核心是约束,即所有未知的设备都必须作为辅助用户操作,并对主用户不干扰。我们研究了自主光谱感测作为避免干扰的手段。使用该技术,设备使用自己的接收器来确定特定频道是否可用,而不是从主用户中侦听传输。一个特殊的挑战是众所周知的‘隐藏节点’从发射机屏蔽设备的问题,而不是将受到干扰的接收器。为了保证对主要用户的保护,在这些情况下需要非常低的感测阈值和FCC(− 115 dBm)和Ofcom(− 120 dbm)的典型水平都在噪声底板下方。

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