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A novel semi-active quasi-zero stiffness vibration isolation system using a constant-force magnetic spring and an electromagnetic linear motor

机译:新型半主动准零刚度隔振系统,采用恒力磁簧和电磁线性电动机

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The performance of conventional vibration isolation systems are limited by the stiffness of the mount required to support the weight of the payload. A potential method for addressing this limitation is to use the phenomenon of quasi-zero stiffness (QZS), which results in a high static stiffness to support the weight of payload and a low dynamic stiffness to achieve a wider vibration isolation range. Recently, QZS systems with various negative stiffness elements and mechanical configurations have been proposed and studied. This paper presents the design and analysis of a novel semi-active QZS vibration isolation system using a commercial constant-force magnetic spring and an electromagnetic linear motor. The proposed system combines the advantages of both passive QZS systems and active damping control, and therefore is cost-effective, energy-efficient, and has the potential of a large bandwidth of vibration isolation as well as a low resonance peak. The use of a commercial magnetic spring not only allows the system to support a large static payload over a wide range of travel but also simplifies the design. In this paper, the design, identification and control aspects of the proposed vibration isolation system are discussed and the system performance is investigated theoretically and experimentally.
机译:常规振动隔离系统的性能受到支撑有效载荷重量所需的安装架的刚度的限制。解决此限制的一种潜在方法是使用准零刚度(QZS)现象,该现象导致较高的静态刚度以支撑有效载荷的重量,而导致较低的动态刚度以实现更大的隔振范围。最近,已经提出并研究了具有各种负刚度元件和机械构造的QZS系统。本文介绍了一种新型的半主动QZS隔振系统的设计和分析,该系统使用商用恒力电磁弹簧和电磁线性电动机。所提出的系统结合了无源QZS系统和有源阻尼控制的优点,因此具有成本效益,能源效率,并且具有较大的隔振带宽和较低的共振峰值。商业电磁弹簧的使用不仅允许系统在较大的行程范围内支持较大的静态有效载荷,而且还简化了设计。本文讨论了所提出的隔振系统的设计,识别和控制方面,并对系统性能进行了理论和实验研究。

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