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On the dynamics of two-dimensional array beam scanning viaperimeter detuning of coupled oscillator arrays

机译:耦合振荡器阵列周向失谐的二维阵列束扫描动力学

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Arrays of voltage-controlled oscillators coupled to nearest neighbors have been proposed as a means of controlling the aperture phase of one-dimensional (1-D) and two-dimensional (2-D) array antennas. It has been demonstrated, both theoretically and experimentally, that one may achieve linear distributions of phase across a linear array aperture by tuning the end oscillators of the array away from the ensemble frequency of a mutually injection-locked array of oscillators. These linear distributions result in steering of the radiated beam. It is demonstrated theoretically that one may achieve similar beamsteering in two dimensions by appropriately tuning the perimeter oscillators of a 2-D array. The analysis is based on a continuum representation of the phase in which a continuous function satisfying a partial differential equation of diffusion type passes through the phase of each oscillator as its independent variables pass through integer values indexing the oscillators. Solutions of the partial differential equation for the phase function exhibit the dynamic behavior of the array during the beamsteering transient
机译:已经提出了耦合到最近邻居的压控振荡器的阵列,作为控制一维(1-D)和二维(2-D)阵列天线的孔径相位的一种手段。在理论上和实验上都已证明,通过使阵列的末端振荡器远离相互注入锁定的振荡器阵列的整体频率,可以在线性阵列孔径上实现相位的线性分布。这些线性分布导致辐射束的转向。从理论上证明,通过适当地调整二维阵列的周边振荡器,可以在二维上实现类似的波束控制。该分析基于相位的连续表示,其中满足其扩散类型的偏微分方程的连续函数通过每个振荡器的相位,而其独立变量则通过索引振荡器的整数值。相位函数的偏微分方程的解在波束转向瞬变过程中表现出阵列的动态行为

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