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Large signal design of broadband monolithic microwave frequency dividers and phase-locked oscillators

机译:宽带单片微波分频器和锁相振荡器的大信号设计

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This paper presents a design method for phaselocked devices such as frequency dividers or injection-locked oscillators. The method requires a full nonlinear analysis of the circuit. This analysis relies upon harmonic balance techniques and is suitable for monolithic circuits simulation. First, a modified formulation of the general harmonic balance equation is proposed which includes the presence of probes. These probes allow us to suppress the degenerated solution of the HB equation in autonomous cases. Moreover, a global stability analysis of phaselocked regimes is carried out. It provides invaluable information on the nonlinear behavior of the device. In particular, synchronization bandwidths as well as power ranges for which the circuit can be synchronized are obtained from the stability loci drawn in the parameter space. All these features have been used to design a broadband monolithic frequency divider, and the simulated and experimental results have been compared with very good accuracy. Therefore, the method proposed is a very useful tool for the design of potentially unstable circuits.
机译:本文提出了一种用于分频器或注入锁定振荡器等锁相器件的设计方法。该方法需要对电路进行完全非线性分析。该分析依赖于谐波平衡技术,适用于单片电路仿真。首先,提出了一种通用谐波平衡方程的改进公式,其中包括探头的存在。这些探针使我们能够在自主情况下抑制HB方程的退化解。此外,对锁相机制进行了全局稳定性分析。它提供了有关设备非线性行为的宝贵信息。特别地,可以从参数空间中绘制的稳定性轨迹获得同步带宽以及电路可以同步的功率范围。所有这些功能均已用于设计宽带单片分频器,并且对模拟和实验结果进行了比较,并具有非常好的精度。因此,提出的方法对于设计潜在不稳定的电路是非常有用的工具。

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