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Wireless-Coupled Oscillator Systems With an Injection-Locking Signal

机译:具有注入锁定信号的无线耦合振荡器系统

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摘要

A detailed analysis of wireless-coupled oscillator systems under the effect of an injection-locking signal is presented. The injection source of high spectral purity is introduced at a single node and enables a reduction of the phase-noise spectral density. Under this injection source, the behavior of the coupled system is qualitatively different from the one obtained in free-running conditions. Two cases are considered: bilateral synchronization, in which an independent source is connected to a particular system oscillator, coupled to the other oscillator elements, and unilateral synchronization, in which one of these elements is replaced by an independent source that cannot be influenced by the rest. The two cases are illustrated through the analysis of a wireless-coupled system with a star topology, such that the injection signal is introduced at the central node. The investigation involves an insightful analytical calculation of the coexisting steady-state solutions, as well as a determination of their stability and bifurcation properties and phase noise. The injection signal stabilizes the system in a large and continuous distance interval, enabling a more robust operation than in autonomous (noninjected) conditions. A coupled system operating at 2.45 GHz has been manufactured and experimentally characterized, obtaining a very good agreement between simulations and measurements.
机译:给出了在注入锁定信号作用下的无线耦合振荡器系统的详细分析。高光谱纯度的注入源在单个节点处引入,可以降低相噪光谱密度。在这种注入源下,耦合系统的行为在质量上与在自由运行条件下获得的行为不同。考虑了两种情况:双边同步,其中一个独立的源连接到一个特定的系统振荡器,并耦合到其他振荡器元件;单边同步,其中的一个元件被一个独立的源代替,而独立的源不受该振荡器的影响。休息。通过对具有星形拓扑结构的无线耦合系统的分析来说明这两种情况,以便在中心节点处引入注入信号。研究涉及对共存的稳态解进行有见地的分析计算,并确定它们的稳定性和分叉特性以及相位噪声。注入信号可在较大且连续的距离间隔内稳定系统,从而比自主(非注入)条件下的运行更稳定。已制造出工作在2.45 GHz的耦合系统,并对其进行了实验表征,从而在仿真和测量之间获得了很好的一致性。

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