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Vibration control of a Stirling engine with an electromagnetic active tuned mass damper

机译:具有电磁主动调谐质量阻尼器的斯特林发动机的振动控制

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Active tuned mass damper (ATMD) systems have been used extensively to reduce vibrations in machines. The motivation of this study is attenuating the vibrations in a Free-Piston Stirling Engine/Linear Alternator (FPSE/LA) for a frequency band of 47-53 Hz using an electromagnetic ATMD that employs a linear Voice Coil Motor (VCM) for periodic excitation rejection. To the authors' knowledge, however several approaches to minimize vibrations in Stirling machines have been patented, the technique proposed in this research differs from other patented work by the simplicity of the proposed control law which aims to attenuate the engine vibrations at the fundamental operating frequency. The proposed control system features a zero-placement technique that utilizes both relative or absolute position and velocity feedback from the system response as well as a feedthrough measurement of the disturbance frequency that is used to determine the position gain online. The performance of the control system with the ATMD was evaluated both theoretically and experimentally. A test rig emulating the vibration behavior of the Stirling engine, featuring an electrodynamic shaker and an ATMD was developed and a model of the rig is presented and validated. A novel experimental procedure of identifying unknown stiffness and unknown dynamic mass of a spring-mass system is also presented. Similarly, another experimental procedure of determining the damping coefficient in the electromagnetic ATMD is shown. The implementation findings illustrate that the proposed active controller succeeds in broadening the attenuation band from 50 ± 0.5 Hz to between 45 Hz and 55 Hz.
机译:主动调谐质量阻尼器(ATMD)系统已广泛用于减少机器的振动。这项研究的动机是使用电磁ATMD来衰减自由活塞斯特林发动机/线性交流发电机(FPSE / LA)在47-53 Hz频带上的振动,该电磁ATMD采用线性音圈电动机(VCM)进行周期性激励拒绝。据作者所知,然而,已获得几种使斯特林机器中的振动最小化的方法的专利,此研究中提出的技术与其他专利工作有所不同,其所提议的控制律旨在简化基本工作频率下的发动机振动。 。所提出的控制系统具有零位放置技术,该技术利用来自系统响应的相对或绝对位置和速度反馈,以及对干扰频率的馈通测量(用于确定在线位置增益)。在理论上和实验上都评估了带有ATMD的控制系统的性能。开发了具有电动振动筛和ATMD的,模拟斯特林发动机振动行为的试验台,并提出并验证了该台架的模型。还提出了一种新颖的实验程序,用于识别弹簧质量系统的未知刚度和未知动态质量。类似地,示出了确定电磁ATMD中的阻尼系数的另一实验过程。实施发现表明,所提出的有源控制器成功地将衰减范围从50±0.5 Hz扩大到45 Hz至55 Hz。

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