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WATCH: WiFi in Active TV Channels

机译:观看:活动电视频道中的WiFi

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摘要

The “white space” model allows TV channels not being used regionally by a TV broadcaster to be re-purposed for secondary access. Unfortunately, populated areas have few unused channels. Nonetheless, Nielsen data show severe under-utilization with vast regions in range of TV transmitters having no active TV receivers even at peak TV viewing time. In this paper, we present the design, implementation, and evaluation of WiFi in active TV channels (WATCH), the first system to enable secondary WiFi transmission in the presence of kilowatt-scale TV transmitters. To protect active TV receivers, WATCH includes a smartphone-based TV remote controller or an Internet-connected TV to inform WATCH controller of TV receivers’ spatial-spectral requirements. To enable WiFi transmission in UHF bands, we design WATCH-interference cancellation and constructive addition transmission to 1) exploit the unique environment of asynchronous WiFi transmission in the presence of a strong streaming interferer, and 2) require no coordination with legacy TV transmitters. With FCC permission to test our implementation, we show that WATCH can provide at least six times the total achievable rate to 4 watt secondary devices compared to current TV white space systems, while limiting the increase in TV channel switching time to less than 5%.
机译:“空白”模型允许电视广播公司不在区域内使用的电视频道重新用于二次访问。不幸的是,人口稠密的地区很少有未使用的渠道。尽管如此,尼尔森(Nielsen)的数据显示,即使在电视收视高峰期,没有有效的电视接收器的电视发射器范围也很广,利用率严重不足。在本文中,我们介绍了活动电视频道(WATCH)中WiFi的设计,实现和评估,这是第一个在存在千瓦级电视发射机的情况下实现二次WiFi传输的系统。为了保护活动的电视接收器,WATCH包括了基于智能手机的电视遥控器或可连接互联网的电视,以告知WATCH控制器电视接收器的空间光谱要求。为了实现UHF频段中的WiFi传输,我们设计了WATCH干扰消除和建设性的相加传输,以:1)在强流干扰源的情况下利用异步WiFi传输的独特环境,以及2)不需要与传统电视发射机进行协调。通过FCC的许可来测试我们的实现,我们证明,与目前的电视空白系统相比,WATCH可以为4瓦次级设备提供至少六倍的总可实现速率,同时将电视频道切换时间的增加限制在5%以下。

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