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An averaging-based Lyapunov technique to design thermal oscillators: A case study on free piston Stirling engine

机译:基于平均的李雅普诺夫技术设计热振荡器:以自由活塞斯特林发动机为例

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摘要

This article introduces a novel averaging-based Lyapunov approach to design complex oscillators such as free-piston Stirling engines (FPSEs). First, a class of thermal oscillators namely the FPSE is introduced. Then, the existence of limit cycle in dynamic response of the oscillator, which is a required criterion for steady operation, is investigated via the proposed technique. Accordingly, a systematic way containing two conditions is presented to justify the performance of the oscillator system. As the preliminary condition, instability of the equilibrium state of the oscillator is studied through the proposed averaging-based Lyapunov theorem (necessary condition). Subsequently, as the second condition, the existence of stable limit cycle in the oscillator response is investigated through the mentioned method (sufficient condition). Next, some useful equations for effective prediction of the oscillator performance are presented using the proposed averaging-based Lyapunov method. Finally, the simulation outcomes, as well as the experimental data, clearly reveal the effectiveness of the proposed methodology in designing the free piston Stirling oscillator, which can be further extended to other oscillators with periodic response such as engines, energy harvesters, vibration/acoustic isolators, and resonant absorbers as well.
机译:本文介绍了一种新颖的基于平均的Lyapunov方法,以设计复杂的振荡器,例如自由活塞斯特林引擎(FPSE)。首先,介绍了一类热振荡器,即FPSE。然后,通过提出的技术研究了振荡器动态响应中极限循环的存在,这是稳定工作的必要标准。因此,提出了一种包含两个条件的系统方式来证明振荡器系统的性能是合理的。作为初始条件,通过提出的基于平均的李雅普诺夫定理(必要条件)研究了振荡器平衡状态的不稳定性。随后,作为第二条件,通过上述方法(充分条件)研究振荡器响应中稳定极限周期的存在。接下来,使用提出的基于平均的李雅普诺夫方法提出了一些有用的方程,可以有效地预测振荡器的性能。最后,仿真结果以及实验数据清楚地表明了所提出的方法在设计自由活塞斯特林振荡器方面的有效性,该方法可以进一步扩展到具有周期性响应的其他振荡器,例如发动机,能量收集器,振动/声学隔离器以及谐振吸收器。

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