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Dynamic Range in DSP-based Narrowband Receivers

机译:基于DSP的窄带接收器中的动态范围

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Digital signal processing at receiver intermediate frequencies (IFs) is now commonplace, and is essential for effective demodulation of QPSK, QAM and OFDM signals. Even with simpler modulation schemes, there is a justification for replacing analogue demodulators with digital ones. The design of such systems involves consideration of sample rates, input ADC precision, and numerical conditioning of subsequent digital operations. In systems where narrowband filtering combined with nonlinear operations for demodulation is to be performed, the input dynamic range of the system can easily be reduced to well below the range implied by the precision of the input conversion. To counteract this reduction in dynamic range, automatic gain control can be implemented digitally, immediately following the input signal conversion. In the wideband digital transmission schemes used by broadcasters, sampling rates are high, precision is modest, and digital AGC gives an effective input dynamic range of 10 - 12 dB in a 6-bit system (typical of QPSK satellite broadcast ASIC demodulators). This paper discusses the design of digital AGC for narrowband receivers, implemented at low IFs, with low-cost programmable DSPs.
机译:现在,接收器中频(IF)处的数字信号处理已经很普遍,对于有效解调QPSK,QAM和OFDM信号至关重要。即使采用更简单的调制方案,也有理由用数字解调器代替模拟解调器。这种系统的设计需要考虑采样率,输入ADC精度以及后续数字运算的数值条件。在要执行窄带滤波与非线性运算相结合进行解调的系统中,系统的输入动态范围可以轻松降低到远低于输入转换精度所隐含的范围。为了抵消动态范围的这种减小,可以在输入信号转换之后立即以数字方式实现自动增益控制。在广播公司使用的宽带数字传输方案中,采样率高,精度适中,并且数字AGC在6位系统(典型的QPSK卫星广播ASIC解调器)中提供10-12 dB的有效输入动态范围。本文讨论了用于窄带接收器的数字AGC的设计,该设计在低IF情况下使用低成本的可编程DSP实现。

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