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Solenoid actuator design and modeling with application in engine vibration isolators

机译:电磁执行器的设计与建模及其在发动机隔振器中的应用

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This paper investigates the performance of a modified conventional solenoid valve as a low-cost controllable reciprocating force actuator. The applied modifications include adding a spring for plunger return mechanism, applying a bias current for pre-compression of the spring, and minor machining of the plunger rod. Potentially, this actuator can be employed in many applications, e.g. active noise and vibration control systems. A mathematical model of the actuator is given using the fundamental electromagnetic relationships. This model identifies the transfer function between the applied current and the output force. An experimental analysis in the frequency domain is conducted to obtain the current/force transfer function and validate the mathematical model. It is shown that in the stroke range of interest, the nonlinear analytical model of this actuator can be well estimated by a linear model. To investigate the performance of the actuator in a real application, this actuator is installed and tested in an active engine mount prototype. The analytical model of this engine mount is modified to include the actuator. The simulation result indicates that the stiffness and damping of this mount is tunable by controlling the input current to the actuator. The experimental results are also in close agreement with the simulations.
机译:本文研究了改进的常规电磁阀作为低成本可控往复运动执行器的性能。所应用的修改包括添加用于柱塞复位机构的弹簧,施加用于预压缩弹簧的偏置电流以及对柱塞杆进行较小的机械加工。潜在地,该致动器可以在许多应用中使用,例如,在一些实施例中。主动噪声和振动控制系统。使用基本电磁关系给出了执行器的数学模型。该模型确定了施加电流和输出力之间的传递函数。在频域中进行了实验分析,以获得电流/力传递函数并验证了数学模型。结果表明,在感兴趣的行程范围内,该执行器的非线性分析模型可以通过线性模型很好地估计。为了研究执行器在实际应用中的性能,该执行器已安装在主动发动机安装原型中并经过测试。对该发动机支架的分析模型进行了修改,以包括执行器。仿真结果表明,通过控制执行器的输入电流,该安装座的刚度和阻尼是可调的。实验结果也与仿真结果非常吻合。

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