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Takagi-Sugeno Fuzzy Model of a One-Half Semiactive Vehicle Suspension: Lateral Approach

机译:半高半车辆悬架的Takagi-Sugeno模糊模型:横向方法

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This work presents a novel semiactive model of a one-half lateral vehicle suspension. The contribution of this research is the inclusion of actuator dynamics (two magnetorheological nonlinear dampers) in the modelling, which means that more realistic outcomes will be obtained, because, in real life, actuators have physical limitations. Takagi-Sugeno (T-S) fuzzy approach is applied to a four-degree-of-freedom (4-DOF) lateral one-half vehicle suspension. The system has two magnetorheological (MR) dampers, whose numerical values come from a real characterization. T-S allows handling suspension’s components and actuator’s nonlinearities (hysteresis, saturation, and viscoplasticity) by means of a set of linear subsystems interconnected via fuzzy membership functions. Due to their linearity, each subsystem can be handled with the very well-known control theory, for example, stability and performance indexes (this is an advantage of the T-S approach). To the best of authors’ knowledge, reported work does not include the aforementioned nonlinearities in the modelling. The generated model is validated via a case of study with simulation results. This research is paramount because it introduces a more accurate (the actuator dynamics, a complex nonlinear subsystem) model that could be applied to one-half vehicle suspension control purposes. Suspension systems are extremely important for passenger comfort and stability in ground vehicles.
机译:这项工作提出了一种新型的半主动侧向车辆悬架半主动模型。该研究的贡献是在模型中包括了执行器动力学(两个磁流变非线性阻尼器),这意味着可以获得更现实的结果,因为在现实生活中,执行器具有物理局限性。 Takagi-Sugeno(T-S)模糊方法应用于四自由度(4-DOF)侧向半车辆悬架。该系统具有两个磁流变(MR)阻尼器,其数值来自真实的特征。 T-S允许通过一组通过模糊隶属函数互连的线性子系统来处理悬架的部件和执行器的非线性(磁滞,饱和度和粘塑性)。由于它们的线性,每个子系统都可以使用非常著名的控制理论来处理,例如稳定性和性能指标(这是T-S方法的优势)。据作者所知,报告的工作并未在建模中包括上述非线性。通过带有模拟结果的研究案例验证了生成的模型。这项研究至关重要,因为它引入了更精确的模型(执行器动力学,一个复杂的非线性子系统),该模型可用于半车辆悬架控制目的。悬架系统对于地面车辆的乘客舒适性和稳定性至关重要。

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