基于STM32的汽车电子节气门测试装置

Zheng Chen, Xinfu Liu, Runli Zhang, Hailong Liu
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引用次数: 4

摘要

近年来,中国的汽车保有量急剧上升,汽车对人们日常生活的影响也越来越大,因此对汽车的安全性提出了非常重要的要求。介绍了一种基于STM32微处理器的汽车电子节气门测试装置。与传统的单片机相比,STM32是一种高性能、低成本、低功耗的嵌入式单片机。设计了双h桥驱动电路和节流阀故障诊断流程。在分析汽车电子节气门机电结构的基础上,对电机驱动电路和PID控制算法进行了设计,建立了电子节气门的数学模型和MATLAB仿真模型,降低了设备成本,提高了测试设备控制系统的精度。实验表明,该算法的稳定时间和设计超调量均小于PID算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Automotive Electronic Throttle Testing Equipment Based on STM32
Car ownership in China has risen sharply in recent years, and the impact of car for people's daily life is becoming more and more larger, so car's security is put forward with very important requirement. Automotive electronic throttle testing equipment based on STM32 Microprocessor is presented. Compared with the traditional microcontroller, STM32 is a high performance, low cost, low-power embedded microcontroller. Double H-bridge driving circuit and throttle fault diagnosis process are designed. Mechanical and electrical structure of automobile electronic throttle are analyzed on the basis of the motor drive circuit and PID control algorithm is designed, established the mathematical model of the electronic throttle and MATLAB simulation model, and the equipment cost was reduced, the accuracy of the testing equipment control system is improved. The experiments show that stability time and overshoot amount of design are less than the PID algorithm.
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