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Digital receivers and transmitters using polyphase filter banks for wireless communications

机译:使用多相滤波器组进行无线通信的数字接收器和发送器

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摘要

Provides a tutorial overview of multichannel wireless digital receivers and the relationships between channel bandwidth, channel separation, and channel sample rate. The overview makes liberal use of figures to support the underlying mathematics. A multichannel digital receiver simultaneously down-converts a set of frequency-division-multiplexed (FDM) channels residing in a single sampled data signal stream. In a similar way, a multichannel digital transmitter simultaneously up-converts a number of baseband signals to assemble a set of FDM channels in a single sampled data signal stream. The polyphase filter bank has become the architecture of choice to efficiently accomplish these tasks. This architecture uses three interacting processes to assemble or to disassemble the channelized signal set. In a receiver, these processes are an input commutator to effect spectral folding or aliasing due to a reduction in sample rate, a polyphase M-path filter to time align the partitioned and resampled time series in each path, and a discrete Fourier transform to phase align and separate the multiple baseband aliases. In a transmitter, these same processes operate in a related manner to alias baseband signals to high order Nyquist zones while increasing the sample rate with the output commutator.
机译:提供多通道无线数字接收器以及通道带宽,通道分离和通道采样率之间关系的教程概述。概述充分利用数字来支持基础数学。多通道数字接收机同时将位于单个采样数据信号流中的一组频分复用(FDM)通道下变频。以类似的方式,多通道数字发射机同时上变频多个基带信号,以在单个采样数据信号流中组合一组FDM通道。多相滤波器组已成为有效完成这些任务的首选架构。该体系结构使用三个交互过程来组装或拆卸通道化信号集。在接收器中,这些过程是输入交换器,由于采样率的降低而导致频谱折叠或混叠,多相M路径滤波器用于对每个路径中划分和重新采样的时间序列进行时间对准,以及离散傅立叶变换到相位对齐并分隔多个基带别名。在发射机中,这些相同的过程以相关的方式操作,以将基带信号混叠到高阶奈奎斯特区,同时利用输出换向器提高采样率。

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