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Bandsplitting of video signals for 2-channel transmission

机译:用于2通道传输的视频信号的频带分离

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摘要

A system is described for reconstructing a wideband video signal at a receiver in which a wideband signal at a transmitter is split into two signals: a lowpass component and a highpass component. The highpass information is transmitted over an augmentation channel. The lowpass component transmitted over another channel is NTSC-compatible. The problem of how to accomplish the bandsplitting and recombination without introducing objectionable artifacts on either the NTSC-compatible portion or the reconstructed wideband signal is discussed. Complementary digital filters are considered for use in an exact reconstruction of the wideband signal. The reconstructed signal is treated as the wideband signal convolved with the impulse respond of a bandstop filter that introduces an amplitude distortion to the discrete Fourier transform of the digital wideband signal. It is shown that the amplitude distortion is virtually eliminated by applying an approximate inverse filter at the receiver. A technique for designing finite-impulse response (FIR) approximations of inverse digital filters is introduced and design examples shown.
机译:描述了一种用于在接收机处重建宽带视频信号的系统,其中在发射机处的宽带信号被分为两个信号:低通分量和高通分量。高通信息在增强信道上发送。通过另一个通道发送的低通分量是NTSC兼容的。讨论了如何在NTSC兼容部分或重建的宽带信号上不引入令人讨厌的伪像的情况下完成频带分离和重组的问题。互补数字滤波器被认为可用于宽带信号的精确重建。重构信号被视为宽带信号,与带阻滤波器的脉冲响应卷积,该带阻滤波器将幅度失真引入到数字宽带信号的离散傅立叶变换中。结果表明,通过在接收机上应用近似逆滤波器,实际上消除了幅度失真。介绍了一种用于设计逆数字滤波器的有限脉冲响应(FIR)近似的技术,并给出了设计示例。

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