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Antenna Load Mismatch Effects in EER-Based Transmitters for Digital Audio Broadcasting

机译:基于EER的数字音频广播发射机中的天线负载失配效应

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As terrestrial audio broadcasting is moving from the analog to the digital era, there is an interest from the broadcasting industry to re-examine the existing Amplitude Modulation (AM) and Frequency Modulation (FM) hardware. The objective is to identify potential problems which may arise when using digital signals with the existing systems. In particular, this paper analyzes the effects that an antenna impedance mismatch has on the spectrum regrowth of a hybrid analog-digital AM signal at the passband. The interest in this research stems from the difficulty in controlling the antenna impedance as it may vary with weather conditions e.g., icing on the antenna. Spectrum regrowth results are first presented in this paper when modelling the antenna load as a resonant circuit for both series and shunt load topologies when the inverse Chebychev reconstruction filter is deployed in the Envelope Elimination and Restoration (EER) amplifier. Different selectivity factors, Q, for antenna resonant circuit are considered. Following this, attempts to design more robust filters are offered that would be of the same order and would provide improved spectral performance when working with the antenna impedance deviations from the nominal resistive value of 50.
机译:随着地面音频广播从模拟时代向数字时代的发展,广播行业有兴趣重新检查现有的调幅(AM)和调频(FM)硬件。目的是确定在现有系统中使用数字信号时可能出现的潜在问题。特别是,本文分析了天线阻抗失配对通带处混合模数AM信号频谱再生长的影响。这项研究的兴趣源于控制天线阻抗的困难,因为天线阻抗可能会随天气条件(例如,天线结冰)而变化。当将反Chebychev重建滤波器部署在包络消除和恢复(EER)放大器中时,当将天线负载建模为串联和并联负载拓扑的谐振电路时,频谱重生结果将首先在本文中给出。考虑了天线谐振电路的不同选择性因子Q。此后,人们尝试设计出更坚固的滤波器,这些滤波器具有相同的阶数,并且当天线阻抗偏离标称电阻值50时,将提供更好的频谱性能。

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