超宽带接收机电路级非线性/电磁协同仿真与协同设计

A. Costanzo, F. Mastri, D. Masotti, V. Rizzoli
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引用次数: 4

摘要

本文介绍了一种高效、精确的电路级超宽带接收机与宽带天线集成协同设计方法。前端的全非线性仿真与基于电磁(EM)的天线阻抗和远场性能描述相结合。对于发射的UWB脉冲的每个入射方向,利用EM理论生成了一组诺顿等效电流源形式下的接收机激励电路描述。源内阻抗是通过全波电磁分析确定的天线阻抗。采用基于Krylov子空间的模型降阶谐波平衡(HB)技术对接收机进行非线性分析。通过考虑天线引入的幅度和相位畸变,该程序允许准确地评估实际接收器灵敏度,这些畸变可能随着UWB脉冲入射方向发生显着变化。它还可以有效地预测链路功率预算,这在超低功率脉冲无线电(IR) -超宽带应用中尤为重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circuit-level nonlinear/EM co-simulation and co-design of UWB receivers
The paper describes an efficient and accurate circuit-level approach to the co-design of UWB receivers integrated with broadband antennas. A full nonlinear simulation of the front end is integrated with the electromagnetically (EM)-based description of the antenna impedance and far-field performance. For each direction of incidence of the transmitted UWB pulse, a circuit description of the receiver excitation under the form of a set of Norton equivalent current sources is generated by EM theory. The source internal impedance is the antenna impedance determined by full-wave EM analysis. The receiver nonlinear analysis is carried out by a model-order reduction Harmonic Balance (HB) technique based on Krylov subspaces. The procedure allows the actual receiver sensitivity to be accurately evaluated by taking into account the amplitude and phase distortion introduced by the antenna, which may significantly change with the UWB pulse direction of incidence. It also allows an effective prediction of the link power budget, which is particularly critical in ultra-low power Impulse Radio (IR) -UWB applications.
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