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An analysis of mode-locked arrays of automatic level controloscillators

机译:自动电平控制振荡器的锁模阵列分析

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The locking region for beat frequency entrained, or mode-locked arrays of discrete microwave oscillators, is exceedingly small, which presents great difficulty in array design. This paper shows that introducing a time-delayed gain control loop can enhance the entrainment region and that this region is maximized for a coupling phase of 90 degrees. For this value of coupling phase the location, size, shape, and orientation of the stable mode locking region is derived for arrays of arbitrary size. A study of the dependence of the stable mode locking region on the number of array elements shows that the region becomes highly eccentric as the number increases, thus making array tuning difficult and causing high sensitivity to particular oscillator tuning errors. The analysis is confirmed with a low frequency realization of a three-element array
机译:离散微波振荡器的拍频夹带或锁模阵列的锁定区域非常小,这给阵列设计带来很大困难。本文表明,引入延时增益控制环路可以增强夹带区域,并且对于90度的耦合相位,该区域将最大化。对于此耦合相位值,可为任意大小的阵列导出稳定模式锁定区域的位置,大小,形状和方向。对稳定模式锁定区域对阵列元件数量的依赖性的研究表明,随着数量的增加,该区域会变得高度偏心,从而使阵列调谐变得困难,并对特定的振荡器调谐误差产生高度敏感性。通过三元素阵列的低频实现来确认分析

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