大学物理 ›› 2026, Vol. 45 ›› Issue (1): 54-.doi: 10.16854/j.cnki.1000-0712. 240576

• 物理实验 • 上一篇    下一篇

基于落球法的重力加速度智能测量实验装置及其应用

陈晶,杨晓华,朱巧萍   

  1. 宁夏大学 物理学院,宁夏回族自治区 银川市750021
  • 收稿日期:2024-12-11 修回日期:2025-05-12 出版日期:2026-04-13 发布日期:2026-04-19
  • 作者简介:陈晶(2001—),女,宁夏中卫人,宁夏大学学科教学(物理)研究生,主要从事物理教学和物理实验研究工作.

Intelligentmeasurement experimental device of gravity acceleration based on drop ball method and its application#br#

CHEN Jing, YANG Xiao-hua, ZHU Qiao-ping    

  1. College of Physics,Ningxia University, Yinchuan, Ningxia 750021, China
  • Received:2024-12-11 Revised:2025-05-12 Online:2026-04-13 Published:2026-04-19

摘要: 针对传统重力加速度测量实验装置存在的不足,本研究开发了一套基于落球法原理的高精度自动化测量装置,用于实验教学.该装置采用高精度霍尔传感器和ESP32主控板,对模拟信号进行算法处理.经过多次仪器优化和算法调试,该装置能够精确测定重力加速度.实验结果表明,与银川市的重力加速度参考值相比,该系统的测量误差小于2.5%.该装置有效降低了实验误差,克服了传统实验中因使用秒表、光电门或打点计时器而引入的视觉误差和操作者反应时间偏差,对激发学生对物理实验的学习兴趣具有重要意义。


关键词: 重力加速度, 实验教学装置, ESP32, 霍尔传感计时模块

Abstract: Aiming at the deficiencies of traditional gravitational acceleration measurement experimental devices, this study has developed a high-precision automated measurement device based on the falling-ball method for experimental teaching. The device employs high-precision Hall sensors and an ESP32 microcontroller to process analog signals through algorithmic methods. After multiple rounds of instrument optimization and algorithm debugging, the device is capable of accurately determining the gravitational acceleration. Experimental results show that compared with the reference value of gravitational acceleration in Yinchuan, the measurement error of the system is less than 2.5%. The device effectively reduces experimental errors and overcomes the visual errors and operator reaction time biases introduced by the use of stopwatches, photoelectric gates, or dot timers in traditional experiments. It is of great significance in stimulating students' interest in learning physics experiments.

Key words: gravitational acceleration, experimental teaching device, ESP32, Hall sensor timing module