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Improving High Speed Road-Holding Using Actively Controlled Aerodynamic Surfaces

机译:使用积极控制的空气动力学表面改善高速道路举行

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Semi-active and active suspension technologies have shown that vehicles road holding can be enhanced, but any such improvement implies decreasing the overall comfort. In this paper, we introduce the use of active aerodynamic surfaces to improve vehicle road-holding without affecting comfort. An H_∞ closed-loop controller is developed to minimize the tire deflection variations, which are responsible for the vehicle bad road holding. The controller is designed on a quarter-car model. Extensive simulations on a multi-body vehicle simulation suit assess the performance of the proposed control scheme, and an exhaustive sensitivity analysis shows the role of road roughness, velocity and airfoil design.
机译:半主动和主动悬架技术表明,可以提高车辆道路持有,但任何这种改进意味着降低整体舒适度。在本文中,我们介绍了有源空气动力学表面的使用,以改善车辆道路控股而不会影响舒适性。开发了H_∞闭环控制器,以最大限度地减少轮胎偏转变化,这负责车辆不良道路持有。控制器采用四分之一车型设计。在多体车辆仿真套装上进行广泛的模拟评估了所提出的控制方案的性能,详尽的灵敏度分析显示了道路粗糙度,速度和翼型设计的作用。

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