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Analysis and compact behavioral modeling of nonlinear distortion in analog communication circuits

机译:模拟通信电路中非线性失真的分析和紧凑行为建模

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The design of analog front-ends of digital telecommunication transceivers requires mixed-signal simulations at the architectural level. The nonlinear nature of the analog front-end blocks is a complication for their modeling at the architectural level, especially when the nonlinear behavior is frequency dependent. This paper describes an analysis and modeling method based on Volterra theory. The method derives bottom-up models of nonlinear analog continuous-time circuits. These behavioral models predict the dominant nonlinear effects using a composition of linear transfer functions and multiplications. This makes it possible to accurately model frequency dependencies and to gain insight into the dominant nonlinear sources of the circuit. The basic models are afterwards described using its multicarrier complex low-pass representation to enable their efficient cosimulation with the digital circuits in a dataflow simulation environment. The multicarrier representation is a direct extension of the classically used complex low-pass equivalent models, which considers the modulation of a single carrier only. The accuracy of the multicarrier representation is higher than classical complex low-pass equivalent models since out-of-band nonlinear distortion is taken into account. The main advantage of the proposed technique is that it yields both insight in the nonlinear behavior at the circuit level and that it provides an important gain in simulation efficiency of RF integrated circuits at the system level. Both aspects are demonstrated on a 5-GHz WLAN design.
机译:数字电信收发器的模拟前端的设计需要在体系结构级别进行混合信号仿真。模拟前端模块的非线性本质是在架构级别对其建模的复杂性,尤其是当非线性行为与频率有关时。本文介绍了一种基于Volterra理论的分析和建模方法。该方法得出非线性模拟连续时间电路的自下而上模型。这些行为模型使用线性传递函数和乘法的组合来预测主要的非线性效应。这样就可以准确地对频率依赖性进行建模,并深入了解电路的主要非线性源。随后使用其多载波复数低通表示来描述基本模型,以使其能够在数据流仿真环境中与数字电路进行有效的协同仿真。多载波表示是经典使用的复杂低通等效模型的直接扩展,该模型仅考虑单个载波的调制。由于考虑了带外非线性失真,因此多载波表示的准确性高于经典的复杂低通等效模型。所提出的技术的主要优点是,它既可以提供电路级非线性行为的见解,又可以提供系统级RF集成电路仿真效率的重要提升。这两个方面均在5 GHz WLAN设计中进行了演示。

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