Development of single-Axis Wheel Speed Sensor HiL Test Bench for Vehicle Velocity Control

Jan-Philipp Kress, A. Morgado-Estevez, F. Perez-Peña, K. Schmidt, Hektor Hebert
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引用次数: 1

Abstract

The precise measurement and processing of dynamic vehicle data lays the foundation for modern active safety systems and driver assistance systems for automobiles and two-wheelers. For the determination of the longitudinal vehicle dynamics, sensing the wheel speed is one elementary measured quantity. This paper proposes a Hardware in the Loop (HiL) test bench that is used for the development and evaluation of a velocity measurement, consisting of two redundant magneto-resistive sensor elements and an encoder disk. This is intended to precisely determine the vehicle velocity on the rear axle (single axis) of scooters with an engine displacement of 50 cubic centimeters. Therefore, a stepper motor powers the encoder disk on which two sensors are placed. An Electronic Control Unit (ECU) manages the measurement, the motor control, the Human Machine Interface (HMI) and the real-time communication through a serial interface to the computer, running the simulation. To represent the virtual test vehicle, the mathematical model is integrated into Matlab Simulink. The test bench was developed under the criteria of low cost, small size and different operating modes.
车辆速度控制单轴轮速传感器HiL试验台的研制
车辆动态数据的精确测量和处理是现代汽车和两轮车主动安全系统和驾驶员辅助系统的基础。为了确定车辆的纵向动力学特性,车轮速度的感知是一个基本的测量量。本文提出了一种由两个冗余磁阻传感器元件和一个编码器盘组成的硬件在环(HiL)测试台,用于速度测量的开发和评估。这是为了精确地确定发动机排量为50立方厘米的摩托车后轴(单轴)上的车辆速度。因此,一个步进电机为放置两个传感器的编码器磁盘提供动力。电子控制单元(ECU)管理测量、电机控制、人机界面(HMI)以及通过串行接口与计算机的实时通信,运行仿真。为了表示虚拟试验车辆,将数学模型集成到Matlab Simulink中。该试验台是按照低成本、小体积、多工况的原则研制的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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