Volume 67 Issue 10
Oct.  2023
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ZENG Weixian, TANG Hao, LIN Wenhui, YIN Lan, DENG Qiuxi, LING Fu, XIA Yihong. Developing a Verification Method for Electronic Police Systems in Monitoring Illegal Vehicle Spacing[J]. Metrology Science and Technology, 2023, 67(10): 3-7, 53. doi: 10.12338/j.issn.2096-9015.2023.0265
Citation: ZENG Weixian, TANG Hao, LIN Wenhui, YIN Lan, DENG Qiuxi, LING Fu, XIA Yihong. Developing a Verification Method for Electronic Police Systems in Monitoring Illegal Vehicle Spacing[J]. Metrology Science and Technology, 2023, 67(10): 3-7, 53. doi: 10.12338/j.issn.2096-9015.2023.0265

Developing a Verification Method for Electronic Police Systems in Monitoring Illegal Vehicle Spacing

doi: 10.12338/j.issn.2096-9015.2023.0265
  • Received Date: 2023-11-10
  • Accepted Date: 2023-11-29
  • Rev Recd Date: 2023-11-30
  • Available Online: 2023-12-04
  • Publish Date: 2023-10-18
  • This paper addresses the heightened risk of rear-end collisions associated with insufficient vehicle spacing during high-speed driving. In response, traffic authorities have introduced an electronic police system equipped with cameras to identify vehicles failing to maintain a safe following distance. Despite the system's technological advancements, China currently lacks specialized measurement and testing equipment for its calibration and maintenance. This study proposes a novel laser-based device, integrating a laser rangefinder and a speedometer, to accurately determine the distance between vehicles and their speed. The data, including distance, speed, and time, are displayed on an LED screen installed in the test vehicle. This information is captured by the electronic police system to assess discrepancies between the LED display and the system's measurements. The device aims to offer robust evidence for law enforcement and encourage safer driving practices, thereby enhancing road safety.
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  • [1]
    万明, 吴倩, 严利鑫, 等. 道路交通安全研究的现状与热点分析[J]. 交通信息与安全, 2022, 40(2): 11-21,37.
    [2]
    林亨, 方华建, 吴冬雁. 基于动态安全距离的CACC车辆混合交通流模型[J]. 北京交通大学学报, 2022, 46(6): 36-42,51.
    [3]
    中央人民政府. 中华人民共和国道路交通安全法实施条例(根据2017年10月7日《国务院关于修改部分行政法规的决定》修订)[EB/OL].https://www.gov.cn/zhengce/202203/content_3338273.htm.
    [4]
    王伟杰, 王春磊, 王玖, 等. 高速公路最小行车安全距离及预警系统设计[J]. 大连交通大学学报, 2010, 31(5): 6-10,20.
    [5]
    Baldwin C, May J. Loudness interacts with semantics in auditory warnings to impact rear-end collisions[J]. Transportation Research Part F Traffic Psychology & Behaviour, 2011, 14(1): 36-42.
    [6]
    林琳. 高速公路追尾事故链风险演化状态及阻断方案研究[D]. 重庆: 重庆交通大学, 2020.
    [7]
    张志勇. 交通事故中车辆安全技术状况检验及典型案例车速计算[J]. 中国司法鉴定, 2012(5): 91-93.
    [8]
    宋晓辉, 任道远. 用于测量行驶车辆车间距离的新方法[J]. 工业计量, 2006, 16(6): 25-26.
    [9]
    邓明哲, 阮祥发. 高速公路最小安全行车车间距离数学模型的研究[J]. 中国水运(学术版), 2006, 6(6): 109-110.
    [10]
    佚名. 天津启用高速公路车间距违法抓拍电子警察[J]. 中国公路, 2018(10): 10.
    [11]
    孙姣姣. 高速公路车间距控制系统关键技术研究[D]. 西安: 长安大学, 2022.
    [12]
    马兴. 一种高速公路车间距检测电子警察系统 检测方法的讨论[J]. 科技资讯, 2018, 16(33): 6-7.
    [13]
    潘勋, 张立尧. 车间距离隐含的信息分析[J]. 客车技术, 2003(3): 8-11.
    [14]
    蔡志达. 车间行车增加激光测距控制改造[J]. 加气混凝土, 2014(6): 3.
    [15]
    Tang H, Zeng W, Lin W. et al. Research on the Verification Method of the Electronic Police System for Capturing the Illegal Distance Between Vehicles[C]. 2021 IEEE International Workshop on Metrology for Automotive (MetroAutomotive). IEEE, 2021.
    [16]
    张乐, 秦石乔, 王省书, 等. 用于智能汽车的小型LD激光测距仪[J]. 激光技术, 2005, 29(2): 130-131,168.
    [17]
    Kerhascoet H, Laurent J, Senn E. Speedometer fault detection and GNSS fusion using Kalman filters[C]. Oceans. IEEE, 2016.
    [18]
    廖春梅. 导致汽油发动机车辆抖动的原因[J]. 汽车运用, 2015(6): 44-45.
    [19]
    陈书明, 王登峰, 季枫, 等. 制动抖动传递路径试验[J]. 吉林大学学报(工学版), 2014, 44(2): 305-310.
    [20]
    罗裕雄. 车辆低速车身抖动的故障诊断与排除[J]. 内燃机与配件, 2023(20): 47-49.
    [21]
    李科, 成健, 赵世明. 车辆制动抖动仿真与优化[J]. 汽车工业研究, 2021(3): 57-60.
    [22]
    王伟东. 基于WT和STFT车辆启动抖动特性时频分析[J]. 应用技术学报, 2020, 20(1): 103-106.
    [23]
    Stapleton L, Sorrell S, Schwanen T. et al. Peak car and increasing rebound: A closer look at car travel trends in Great Britain[J]. Transportation Research Part D:Transport and Environment, 2017, 53: 217-233. doi: 10.1016/j.trd.2017.03.025
    [24]
    阎莹, 朱彤, 曹林涛. 面向交通安全的车辆间距测试技术研究[J]. 交通与计算机, 2007, 25(3): 106-109.
    [25]
    张伟宾. 高速公路长大纵坡载重车最小安全行车间距研究[D]. 西安: 长安大学, 2018.
    [26]
    徐鹏, 唐一夫. 基于视觉AI的车道参照车距测量方法[J]. 贵州大学学报(自然科学版), 2022, 39(1): 113-119.
    [27]
    中央人民政府. 中华人民共和国道路交通安全法实施条例(根据2021 年 4 月 29 日《国务院关于修改部分行政法规的决定》修订)[EB/OL]. https://www.gov.cn/banshi/2005-08/23/content_25579.htm.
    [28]
    王俊. 基于自动驾驶的激光雷达测距技术研究[D]. 成都: 电子科技大学, 2020.
    [29]
    李磊, 曹生炜. 智能小车避障技术的实现[J]. 微电机, 2011, 44(6): 109-111.
    [30]
    段敏, 刘振朋, 陈天任. 智能汽车可变车头时距的车间纵向控制研究[J]. 计算机仿真, 2019, 36(10): 129-135.
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