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Effect of fractional order damping control on braking performance for electric vehicles

机译:小数秩序阻尼控制对电动汽车制动性能的影响

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Active suspensions are an object of interest nowadays, they have been a topic of research for decades due to their key role in Global Chassis Control (GCC). Indeed, a well-controlled active suspension system may considerably improve not only the passenger comfort by compensating the chassis dynamics but also road handling by minimizing the dynamics of the wheels normal forces. It may enhance vehicle stability by controlling the wheel load distribution, which influences the lateral and longitudinal dynamics to provide better steering performance, and safety by reducing the braking distance. The main contribution of this paper is to study the impact of fractional order (FO) control methods in the context of an active suspension system and in particular fractional order damping control. We derive two optimal damping control strategies: a comfort-oriented and a road holding oriented strategy, based on non-integer derivation of suspension deflection. The relevant benefits of both methods on vehicle response while driving on rough roads and during braking are evaluated using computer simulations applied on a two-wheel vehicle model.
机译:现在,积极的暂停是一个感兴趣的对象,由于他们在全球底盘控制(GCC)中的关键作用,他们已经是几十年的研究。实际上,通过补偿底盘动态,而且通过最小化车轮正常力的动态,还可以通过补偿底盘动态来显着改善乘客舒适度。它可以通过控制车轮载荷分布来提高车辆稳定性,这影响横向和纵向动力学来提供更好的转向性能,通过减少制动距离来提供更好的转向性能。本文的主要贡献是研究分数阶(FO)控制方法在主动悬架系统和特定的分数级阻尼控制的上下文中的影响。我们得出了两个最佳阻尼控制策略:基于悬架偏转的非整数推导,这是一种舒适化的和道路持有的策略。使用计算机模拟在双轮车型上施加的计算机模拟评估两种车辆反应方法的相关益处。

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