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首页> 外文期刊>Journal of Sound and Vibration >Active-passive vibration absorber of beam-cart-seesaw system with piezoelectric transducers
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Active-passive vibration absorber of beam-cart-seesaw system with piezoelectric transducers

机译:带压电换能器的手推车跷跷板系统的主动-被动减振器

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In contrast with fully controllable systems, a super articulated mechanical system (SAMS) is a controlled underactuated mechanical system in which the dimensions of the configuration space exceed the dimensions of the control input space. The objectives of the research are to develop a novel SAMS model which is called beam-cart-seesaw system, and renovate a novel approach for achieving a high performance active-passive piezoelectric vibration absorber for such system. The system consists of two mobile carts, which are coupled via rack and pinion mechanics to two parallel tracks mounted on pneumatic rodless cylinders. One cart carries an elastic beam, and the other cart acts as a counterbalance. One adjustable counterweight mass is also installed underneath the seesaw to serve as a passive damping mechanism to absorb impact and shock energy. The motion and control of a Bernoulli-Euler beam subjected to the modified cart/seesaw system are analyzed first. Moreover, gray relational grade is utilized to investigate the sensitivity of tuning the active proportional-integral-derivative (PID) controller to achieve desired vibration suppression performance. Consequently, it is shown that the active-passive vibration absorber can not only provide passive damping, but can also enhance the active action authority. The proposed software/hardware platform can also be profitable for the standardization of laboratory equipment, as well as for the development of entertainment tools.
机译:与完全可控的系统相反,超铰接机械系统(SAMS)是一种受控的欠驱动机械系统,其中配置空间的尺寸超过控制输入空间的尺寸。该研究的目的是开发一种称为束推车-跷跷板系统的新型SAMS模型,并对用于实现该系统的高性能主动-被动压电减振器的新颖方法进行革新。该系统由两个移动小车组成,这些小车通过齿条和小齿轮机构耦合到安装在气动无杆气缸上的两个平行轨道。一个小车带有弹性梁,另一个小车起到平衡作用。跷跷板下方还安装了一个可调节的配重块,以用作吸收冲击和冲击能的被动阻尼机构。首先分析了经过改进的手推车/跷跷板系统的伯努利-欧拉梁的运动和控制。此外,利用灰色关联度来研究调整主动比例积分微分(PID)控制器以获得所需的振动抑制性​​能的灵敏度。结果表明,主动-被动减振器不仅可以提供被动阻尼,而且可以增强主动作用的权威性。提议的软件/硬件平台还可以为实验室设备的标准化以及娱乐工具的开发带来利润。

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