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Harmonic balance analysis of pull-in range and oscillatory behavior of third-order type 2 analog PLLs

机译:三阶2种模拟PLL的拉入范围和振荡行为的谐波平衡分析

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The most important design parameters of each phase-locked loop (PLL) are the local and global stability properties, and the pull-in range. To extend the pull-in range, engineers often use type 2 PLLs. However, the engineering design relies on approximations which prevent a full exploitation of the benefits of type 2 PLLs. Using an exact mathematical model and relying on a rigorous mathematical thinking this problem is revisited here and the stability and pull-in properties of the third-order type 2 analog PLLs are determined. Both the local and global stability conditions are derived. As a new idea, the harmonic balance method is used to derive the global stability conditions. That approach offers an extra advantage, the birth of unwanted oscillations can be also predicted. As a verification it is shown that the sufficient conditions of global stability derived by the harmonic balance method proposed here and the well-known direct Lyapunov approach coincide with each other, moreover, the harmonic balance predicts the birth of oscillations in the gap between the local and global stability conditions. Finally, an example when the conditions for local and global stability coincide, is considered.
机译:每个锁相环(PLL)的最重要的设计参数是局部和全局稳定性属性,以及拉入范围。为了延长拉入范围,工程师经常使用2型PLL。然而,工程设计依赖于防止完全开发2型PLL的益处的近似值。使用精确的数学模型并依赖于严格的数学思维,此问题被重新审视,确定了三阶类型2模拟PLL的稳定性和拉动性质。派生本地和全局稳定性条件。作为一个新的想法,谐波平衡方法用于导出全局稳定条件。该方法提供了额外的优势,还可以预测不需要的振荡的诞生。作为验证,结果表明,通过此处提出的谐波平衡方法和众所周知的直接Lyapunov方法得到的全局稳定性的充分条件彼此重合,而且谐波平衡预测局部间隙中的振荡诞生和全球稳定条件。最后,考虑了局部和全局稳定性条件的示例。

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