首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference 2007 >COMPARISON OF STATIC AND DYNAMIC MODELS FOR THE FORCE OUTPUT OF MAGNETORHEOLOGICAL DAMPERS
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COMPARISON OF STATIC AND DYNAMIC MODELS FOR THE FORCE OUTPUT OF MAGNETORHEOLOGICAL DAMPERS

机译:磁流变阻尼器力输出静态模型和动态模型的比较

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Magnetorheolgical (MR) fluid dampers have the capability of changing their effective damping force depending on the current input to the damper. A number of factors in the construction of the damper, as well as the properties of the fluid and the electromagnet, create a dynamic response of the damper that cannot be fully described with a static model dependant on current and velocity. In this paper, a static deterministic model for the force response of a damper will be compared to a time dependant dynamic model. Data collection was performed by providing a normally distributed random signal for velocity and a uniformly distributed random signal for current to Lord rheonetic seat damper; the signal distributions were chosen so dynamic effects were not artificially reduced. The parameters for the static and dynamic models were found by minimizing the error in force output. The error of the models is then compared, as well as the probability distribution for both models and the original data.
机译:磁流体(MR)流体阻尼器具有根据输入到阻尼器的电流来更改其有效阻尼力的能力。阻尼器构造中的许多因素,以及流体和电磁体的特性,都会产生阻尼器的动态响应,而该动态响应无法通过依赖于电流和速度的静态模型来充分描述。在本文中,将对阻尼器力响应的静态确定性模型与时间相关的动态模型进行比较。通过提供正态分布的速度随机信号和均匀分布的随机信号电流至Lord Rheonetic座椅减震器来执行数据收集。选择了信号分布,因此不会人为地降低动态效果。通过最小化力输出中的误差来找到静态和动态模型的参数。然后比较模型的误差,以及模型和原始数据的概率分布。

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