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Large-Signal Stability of Symmetric Multibranch Power Amplifiers Exploiting Floquet Analysis

机译:利用浮球分析的对称多分支功率放大器的大信号稳定性

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摘要

The paper presents a comprehensive analysis of the large-signal stability of symmetric multibranch power amplifiers through the application of Floquet theory implemented directly in the frequency domain. The generality of the approach allows to gain a global assessment of the amplifier stability, without resorting to specific approaches based on layout symmetry or to the implementation of additional analyses with properly placed ad hoc generators. The spurious frequency oscillations and the most critical circuit locations are identified by a novel, computationally efficient, and accurate harmonic-balance evaluation of the Floquet exponents and of their associated eigenvectors. Small- and large-signal stability analyses are validated against conventional criteria and time-domain simulations, respectively. Based on this analysis, significant differences between small- and large-signal stability conditions for intrinsically nonlinear stages are found, thus driving the design toward optimized stabilization solutions.
机译:本文通过直接在频域中实现的Floquet理论,对对称多分支功率放大器的大信号稳定性进行了全面分析。该方法的通用性允许获得对放大器稳定性的整体评估,而无需诉诸基于布局对称性的特定方法或使用适当放置的临时生成器来执行其他分析。杂散频率振荡和最关键的电路位置可通过Floquet指数及其相关特征向量的新颖,计算高效且精确的谐波平衡评估来识别。小信号和大信号稳定性分析分别根据常规标准和时域仿真进行了验证。基于此分析,发现本质上非线性阶段的小信号和大信号稳定条件之间存在显着差异,从而推动了设计朝着优化的稳定解决方案发展。

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