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Wideband TV White Space Transceiver Design and Implementation

机译:宽带电视白空间收发器的设计与实现

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摘要

For transceivers operating in television white space (TVWS), frequency agility and strict spectral mask fulfillments are vital. In the U.K., TVWS covers a 320-MHz-wide frequency band in the UHF range, and the aim of this brief is to present a wideband digital up- and downconverter for this scenario. Sampling at radio frequency (RF), a two-stage digital conversion is presented, which consists of a polyphase filter (PPF) for implicit upsampling and decimation, and a filter-bank-based multicarrier approach to resolve the 8-MHz channels within the TVWS band. We demonstrate that the up- and downconversion of 40 such channels is hardly more costly than that of a single channel. Appropriate filter design can satisfy the mandated spectral mask and control the reconstruction error. A field-programmable gate array implementation is discussed, capable of running the wideband transceiver on a single Virtex-7 device with sufficient word length to preserve the spectral mask requirements of the system.
机译:对于在电视空白空间(TVWS)中运行的收发器,频率敏捷性和严格的频谱模板实现至关重要。在英国,TVWS覆盖了UHF范围内的320 MHz宽频带,本简介的目的是针对这种情况提出一种宽带数字上变频器和下变频器。提出了一种以射频(RF)采样的两阶段数字转换,该转换包括用于隐式上采样和抽取的多相滤波器(PPF),以及基于滤波器组的多载波方法,用于解析频谱中的8 MHz信道。 TVWS乐队。我们证明了40个这样的频道的上转换和下转换几乎不比单个频道昂贵。适当的滤波器设计可以满足规定的频谱模板并控制重建误差。讨论了一种现场可编程门阵列的实现,该实现能够在单个Virtex-7器件上以足够的字长运行宽带收发器,以保留系统的频谱模板要求。

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