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Revisiting spurious-free dynamic range of communication receivers

机译:回顾通信接收机的无杂散动态范围

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摘要

The spurious free dynamic range (SFDR) is commonly used as a measure of dynamic range for the radio frequency and microwave front-end receivers. Although well defined in narrow-band systems, the definition becomes less clear in wide-band systems, when the nonlinearity is memoryless and the the noise figure is frequency dependent. To generalize the SFDR to wide-band systems, a meaningful physical interpretation of the conventional two-tone test is first developed. Based on this interpretation, the upper bound of the wide-band SFDR is obtained by applying a multitone test, while the lower bound is computed using the effective noise figure. The multitone test in both the memoryless and memory nonlinear Volterra systems is considered. A practical measurement technique to characterize the Volterra kernel is also provided. A realistic example based on a low noise amplifier shows a significant difference between the conventional and wide-band SFDR values. In this example, our results suggest that the use of two tones widely separated in frequency to model the interferers provides sufficiently accurate results compared to a multitone approximation.
机译:无杂散动态范围(SFDR)通常用作射频和微波前端接收器动态范围的度量。尽管在窄带系统中定义良好,但当非线性无记忆且噪声系数与频率有关时,该定义在宽带系统中变得不太清楚。为了将SFDR推广到宽带系统,首先开发了对传统两音测试的有意义的物理解释。基于此解释,宽带SFDR的上限是通过应用多音测试获得的,而下限是使用有效噪声系数来计算的。考虑了无记忆和记忆非线性Volterra系统中的多音测试。还提供了表征Volterra内核的实用测量技术。一个基于低噪声放大器的实际示例显示了常规SFDR值和宽带SFDR值之间的显着差异。在此示例中,我们的结果表明,与多音近似相比,使用频率上相距较远的两个音调来模拟干扰源可提供足够准确的结果。

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