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Delayed Feedback Control Laws for Rijke Tube Thermoacoustic Instability, Synthesis, and Experimental Validation

机译:Rijke管的热声不稳定性,合成和实验验证的延迟反馈控制律

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We approach the thermoacoustic instability problem in Rijke tubes from a mathematically novel perspective. In this benchmark experimental setting, the complex dynamic exchange between the unsteady heat release and the acoustic pressure variations creates the instability. When linearized, this behavior leads to a neutral class time-delayed dynamics with multiple independent delays, where our major contribution arrives. We aim to synthesize a series of stabilizing feedback control strategies for this dynamics. A recent mathematical paradigm, called the cluster treatment of characteristic roots (CTCR), is used to facilitate this objective. This paradigm, in essence, declares the necessary and sufficient stability conditions in the space of the system and controller parameters. The main contributions of this brief are in the first-time deployment of CTCR in the syntheses of various feedback control laws and validating experiments.
机译:我们从数学上新颖的角度研究了Rijke管中的热声不稳定性问题。在此基准实验设置中,不稳定的热释放和声压变化之间的复杂动态交换会导致不稳定。当线性化时,此行为会导致具有多个独立延迟的中性类时滞动态,这是我们的主要贡献所在。我们的目标是针对这种动态情况综合一系列稳定的反馈控制策略。最近的数学范式被称为特征根的簇处理(CTCR),用于促进这一目标。本质上,这种范例在系统和控制器参数的空间中声明了必要和充分的稳定性条件。本简介的主要贡献在于首次将CTCR部署在各种反馈控制定律和验证实验的综合中。

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