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Low-speed longitudinal controllers for mass-produced cars: A comparative study

机译:批量生产汽车的低速纵向控制器:比较研究

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摘要

Four longitudinal control techniques are compared: a classical Proportional-Integral (PI) control; an advanced technique-called the i-PI-that adds an intelligent component to the PI; a fuzzy controller based on human experience; and an adaptive-network-based fuzzy inference system. The controllers were designed to tackle one of the challenging topics as yet unsolved by the automotive sector: managing autonomously a gasoline-propelled vehicle at very low speeds. The dynamics involved are highly nonlinear and constitute an excellent test-bed for newly designed controllers. A Citroën C3 Pluriel car was modified to permit autonomous action on the accelerator and the brake pedals-i.e., longitudinal control. The controllers were tested in two stages. First, the vehicle was modeled to check the controllers' feasibility. Second, the controllers were then implemented in the Citroën, and their behavior under the same conditions on an identical real circuit was compared.
机译:比较了四种纵向控制技术:经典的比例积分(PI)控制;一种称为i-PI的先进技术,可以为PI添加智能组件;基于人类经验的模糊控制器;以及基于自适应网络的模糊推理系统。控制器的设计旨在解决汽车领域尚未解决的挑战性课题之一:以极低的速度自动管理汽油驱动的车辆。涉及的动力学是高度非线性的,构成了新设计控制器的出色测试平台。改装了雪铁龙C3 Pluriel轿车,以允许对油门和制动踏板进行自主动作,即进行纵向控制。控制器分两个阶段进行了测试。首先,对车辆进行建模以检查控制器的可行性。其次,然后在雪铁龙中实现控制器,并比较它们在相同真实电路上相同条件下的行为。

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