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Nonlinear modelling of automatic gain control loops considering loop dynamics and stability

机译:考虑环路动力学和稳定性的自动增益控制环路的非线性建模

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This work presents modelling aspects of automatic gain control (AGC) loops based on linear-in-dB variable gain amplifiers (VGAs). In these loops, the VGA control voltage is also an excellent received signal strength indicator (RSSI). The VGA gain is however nonlinearly related to the control voltage. Moreover, VGAs and detectors undergo nonlinear compression under high input amplitudes during settling transients. In this work, these effects are captured by a nonlinear model based on simple and readily available components from the “analogLib” and “functional” libraries in CADENCE design environment making it very easy and fast to build and simulate. The model is capable of verifying the AGC loop stability and capturing the loop dynamics with high accuracy compared to time consuming circuit level simulations. This provides insights into system level parameters such as AGC loop bandwidth, phase margin, settling time as well as estimating the AGC range and RSSI voltage vs. input power. Measurement results from a fabricated AGC prototype are in good agreement with simulation and modelling results thus validating the proposed modelling approach.
机译:这项工作提出了基于dB线性可变增益放大器(VGA)的自动增益控制(AGC)环路的建模方面。在这些环路中,VGA控制电压也是出色的接收信号强度指示器(RSSI)。但是,VGA增益与控制电压非线性相关。此外,在稳定瞬变期间,VGA和检测器会在高输入幅度下经历非线性压缩。在这项工作中,这些影响是通过非线性模型捕获的,这些非线性模型基于CADENCE设计环境中“ analogLib”和“功能”库中简单易用的组件,从而非常容易,快速地构建和仿真。与耗时的电路级仿真相比,该模型能够验证AGC环路稳定性并以高精度捕获环路动态。这提供了对系统级参数(例如AGC环路带宽,相位裕度,建立时间)的洞察力,以及估算AGC范围和RSSI电压与输入功率的关系。制成的AGC原型的测量结果与仿真和建模结果非常吻合,从而验证了所提出的建模方法。

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