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T.R.I.C.K.-Tire/Road Interaction Characterization & Knowledge -A tool for the evaluation of tire and vehicle performances in outdoor test sessions

机译:T.R.I.C.K.轮胎/道路交互特性与知识-一种用于在户外测​​试中评估轮胎和车辆性能的工具

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摘要

The most powerful engine, the most sophisticated aerodynamic devices or the most complex control systems will not improve vehicle performances if the forces exchanged with the road are not optimized by proper employment and knowledge of tires. The vehicle interface with the ground is constituted by the sum of small surfaces, wide about as one of our palms, in which tire/road interaction forces are exchanged. From this it is clear to see how the optimization of tire behavior represents a key-factor in the definition of the best setup of the whole vehicle. Nowadays, people and companies playing a role in automotive sector are looking for the optimal solution to model and understand tire's behavior both in experimental and simulation environments. The studies carried out and the tool developed herein demonstrate a new approach in tire characterization and in vehicle simulation procedures. This enables the reproduction of the dynamic response of a tire through the use of specific track sessions, carried out with the aim to employ the vehicle as a moving lab. The final product, named TRICK tool (Tire/Road Interaction Characterization and Knowledge), comprises of a vehicle model which processes experimental signals acquired from vehicle CAN bus and from sideslip angle estimation additional instrumentation. The output of the tool is several extra "virtual telemetry" channels, based on the time history of the acquired signals and containing force and slip estimations, useful to provide tire interaction characteristics. TRICK results can be integrated with the physical models developed by the Vehicle Dynamics UniNa research group, providing a multitude of working solutions and constituting an ideal instrument for the prediction and the simulation of the real tire dynamics.
机译:如果未通过适当的轮胎使用和知识来优化与道路交换的力量,那么最强劲的发动机,最先进的空气动力学装置或最复杂的控制系统将无法改善车辆性能。车辆与地面的接触面是由小表面的总和构成的,大约等于我们的手掌之一,在其中交换轮胎/道路相互作用力。由此可以清楚地看到,轮胎性能的优化如何代表整个车辆最佳设置定义中的关键因素。如今,在汽车领域扮演重要角色的人们和公司正在寻找最佳的解决方案,以模拟和理解轮胎在实验和仿真环境中的行为。进行的研究和本文开发的工具证明了轮胎表征和车辆仿真程序中的新方法。这样可以通过使用特定的跟踪会话来再现轮胎的动态响应,目的是将车辆用作移动实验室。最终产品名为TRICK工具(轮胎/道路相互作用特性和知识),包括一个车辆模型,该模型处理从车辆CAN总线和侧滑角估计附加仪器获取的实验信号。该工具的输出是几个额外的“虚拟遥测”通道,这些通道基于所采集信号的时间历史并包含力和滑移估计,可用于提供轮胎相互作用特性。 TRICK的结果可以与Vehicle Dynamics UniNa研究小组开发的物理模型集成,提供大量的工作解决方案,并且是预测和模拟真实轮胎动力学的理想工具。

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