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Development of an Active Vibration Isolation System Using Linearized Zero-Power Control With Weight Support Springs

机译:利用线性化零功率控制和重量支撑弹簧开发主动隔振系统

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This paper presents a hybrid vibration isolation system using linearized zero-power control with weight support springs. The isolation system, fundamentally, is developed by linking a mechanical spring in series with a negative stiffness spring realized by zero-power control in order to insulate ground vibration as well as to reject the effect of on-board-generated direct disturbances. In the original system, the table is suspended from the middle table solely by the attractive force produced by the magnets and therefore, the maximum supporting force on the table is limited by the capacity of the permanent magnets used for zero-power control. To meet the growing demand to support heavy payload on the table, the physical model is extended by introducing an additional mechanism-weight support springs, in parallel with the above system. However, the non-linearity of the zero-power control instigates a nonlinear vibration isolation system, which leads to a deviation from zero compliance to direct disturbance. Therefore, a nonlinear compensator for the zero-power control is employed furthermore to the system to meet the ever-increasing precise disturbance rejection requirements in the hi-technology systems. The fundamental characteristics of the system are explained analytically and the improved control performances are demonstrated experimentally.
机译:本文提出了一种混合动力隔振系统,该系统使用带有重量支撑弹簧的线性零功率控制。从根本上说,该隔离系统是通过将机械弹簧与通过零功率控制实现的负刚度弹簧串联连接而开发的,以隔离地面振动并消除车载产生的直接干扰的影响。在原始系统中,工作台仅通过磁体产生的吸引力从中间工作台悬挂下来,因此,工作台上的最大支撑力受到用于零功率控制的永磁体容量的限制。为了满足日益增长的在工作台上支撑重物的需求,与上述系统并行地通过引入额外的机构重量支撑弹簧来扩展物理模型。但是,零功率控制的非线性会引发非线性隔振系统,从而导致从零柔量到直接干扰的偏离。因此,该系统还采用了一种用于零功率控制的非线性补偿器,以满足高科技系统中不断增长的精确干扰抑制要求。分析了系统的基本特征,并通过实验证明了改进的控制性能。

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