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Theoretical and Experimental Analysis of a Vibration Isolation System Using Hybrid Magnet

机译:混合磁铁振动隔离系统的理论与实验分析

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An active vibration isolation system using hybrid magnet is investigated theoretically and experimentally. A quarter car model with one degree of freedom spring mass system is considered for this analysis. A cylindrical type hybrid magnet, considered as actuator is placed in parallel to the springs to provide external force on the top and bottom plates to suppress vibration. The theoretical time response characteristics of the model have been determined and correlated with experimental analysis. For theoretical analysis, the response of the top plate is analyzed by considering the base plate disturbance as a input signal to vary the actuator force .The force exerted by the hybrid magnet is non linear in nature and the simplified relation for this force was obtained using Bessel's recurrence formula. The modeling of undamped one degree of freedom quarter car model is carried out using MATLAB Simulink tool. The above study is also investigated experimentally by employing a shaker and analyzed using LABVIEW and fast Fourier transform (FFT) analyzer.
机译:理论上和实验研究了使用混合磁体的主动振动隔离系统。对于该分析,考虑了具有一定自由度的四分之一的汽车模型。作为致动器的圆柱形混合磁体被平行地置于弹簧上,以在顶部和底板上提供外力以抑制振动。模型的理论时间响应特性已经确定并与实验分析相关。为了理论分析,通过将基板扰动视为输入信号来分析顶板的响应,以改变致动器力。由混合磁体施加的力在自然界中是非线性的,并且使用该力的简化关系贝塞尔的复发配方。使用MATLAB Simulink工具进行稳定一度自由季度汽车模型的建模。还通过采用振动筛来实验研究了上述研究,并使用LabVIEW和快速傅里叶变换(FFT)分析仪进行分析。

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