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Spatially Adaptive TV Broadcast System:Hardware in the Loop Operational Analysis

机译:空间自适应电视广播系统:硬件在环路中的运行分析

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摘要

When a digital TV system is operating far in excess of the operational threshold, there is no discernible advantage to either the user or broadcaster due to the hard failure characteristics of digital TV. In a digital network, this threshold can vary due to changes in the propagation medium and user receiving equipment, necessitating a transmit power margin sufficient to cover all propagation and equipment variations. Hence if the system could be adaptively tuned to operate at just above the threshold, then significant energy savings could be made. A spatially adaptive system was evaluated through hardware in-the-loop analysis; here a channel emulator was used to physically model array gain and fading conditions, and feedback nodes were constructed allowing broadcast powers to be manipulated based on evaluating user feedback. The effects of such a system on the UK Digital Terrestrial Television (DTT) network were evaluated and the advantages highlighted potential power savings of up to 2.1 dB being obtainable. This equates to an electricity reduction of between 33 million and 58 million kWh per year, saving between £3.5 million and £6.1 million ($4.4 million and $7.6 million) and reducing carbon emissions by between 13.7 million and 24 million CO2e. This paper thus illustrates the potential energy savings for a DTT network, using the UK as a worked example.
机译:当数字电视系统的运行远远超出运行阈值时,由于数字电视的硬故障特性,对用户或广播公司都没有明显的优势。在数字网络中,此阈值可能会由于传播介质和用户接收设备的变化而发生变化,因此需要足以覆盖所有传播和设备变化的发射功率裕量。因此,如果可以将系统自适应地调整为仅在阈值之上运行,则可以节省大量能源。通过硬件在环分析评估了空间自适应系统;在这里,使用信道仿真器对阵列增益和衰落条件进行物理建模,并构建了反馈节点,允许基于评估用户反馈来控制广播功率。评估了这种系统对英国数字地面电视(DTT)网络的影响,其优势突出表明可以节省多达2.1 dB的功率。这相当于每年节电3300万至5800万千瓦时,节省350万至610万英镑(440万至760万美元),碳排放量减少1370万至2400万二氧化碳当量。因此,本文以英国为例,说明了DTT网络的潜在节能效果。

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