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Provisos for classic linear oscillator design methods. New linear oscillator design based on the NDF/RRT

机译:经典线性振荡器设计方法的条件。基于NDF / RRT的新型线性振荡器设计

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摘要

In this paper, the classic oscillator design methods are reviewed, and their strengths and weaknesses are shown. Provisos for avoiding the misuse of classic methods are also proposed. If the required provisos are satisfied, the solutions provided by the classic methods (oscillator start-up linear approximation) will be correct. The provisos verification needs to use the NDF (Network Determinant Function). The use of the NDF or the most suitable RRT (Return Relation Transponse), which is directly related to the NDF, as a tool to analyze oscillators leads to a new oscillator design method. The RRT is the "true" loop-gain of oscillators. The use of the new method is demonstrated with examples. Finally, a comparison of NDF/RRT results with the HB (Harmonic Balance) simulation and practical implementation measurements prove the universal use of the new methods.
机译:本文回顾了经典的振荡器设计方法,并说明了它们的优缺点。还提出了避免滥用经典方法的条款。如果满足要求,则经典方法(振荡器启动线性逼近)提供的解将是正确的。临时验证需要使用NDF(网络决定因素功能)。将NDF或与NDF直接相关的最合适的RRT(返回关系应答)用作分析振荡器的工具,导致了一种新的振荡器设计方法。 RRT是振荡器的“真实”环路增益。通过示例演示了新方法的使用。最后,将NDF / RRT结果与HB(谐波平衡)仿真和实际实现的测量结果进行比较,证明了新方法的普遍使用。

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