| [1] |
邓汝奎. 基于CAN总线的胎压监测系统设计与实现[D]. 南宁: 广西大学, 2018.
|
|
DENG Rukui. Design and implementation of tire pressure monitoring system based on CAN BUS[D]. Nanning: Guangxi University, 2018. (in Chinese)
|
| [2] |
梁晨. 汽车胎压监测系统在中国未来发展趋势分析[J]. 汽车零部件, 2017(2): 83-85.
|
|
LIANG Chen. Development trend analysis for tire pressure monitoring system in future China[J]. Automobile Parts, 2017(2): 83-85. (in Chinese)
|
| [3] |
韩宗奇, 刘全有, 王立强, 等. 基于标准脉冲数比较法的汽车轮胎压力监测与报警系统研究[J]. 中国机械工程, 2010, 21(2): 240-244+251.
|
|
HAN Zongqi, LIU Quanyou, WANG Liqiang, et al. Study on tire pressure monitoring and alarming system of automobile based on the comparison among standard pulse numbers[J]. China Mech Engi, 2010, 21(2): 240-244+251. (in Chinese)
|
| [4] |
罗锲铭. 基于频率法的间接式轮胎压力监测系统研究[D]. 武汉: 武汉理工大学, 2014.
|
|
LUO Qiming. The research of indirect tire pressure monitor system based on the frequency method[D]. Wuhan: Wuhan University of Technology, 2014. (in Chinese)
|
| [5] |
苏静. 基于轮速特征分析的胎压估计算法研究[D]. 吉林: 吉林大学, 2017.
|
|
SU Jing. Research on tire pressure estimation algorithm based on wheel speed characteristic analysis[D]. Jilin:Jilin University, 2017. (in Chinese)
|
| [6] |
李亮, 魏凌涛, 王翔宇. 基于轮速的胎压监测方法及装置[P]. 中国: CN110654187B, 2020-10-02.
|
|
LI Liang, WEI Lingtao, WANG Xiangyu. Tire pressure monitoring method and device based on wheel speed [P]. China: CN110654187B, 2020-10-02. (in Chinese)
|
| [7] |
彭加耕, 董倩倩, 张宇, 等. 基于BP神经网络的四轮胎压监测算法研究[J]. 现代制造工程, 2021(2): 43-48+65.
|
|
PENG Jiageng, DONG Qianqian, ZHUANG Yu, et al. Study on the algorithm of four-wheel tire pressure monitoring based on BP neural network[J]. Modern Manu Engi, 2021(2): 43-48+65. (in Chinese)
|
| [8] |
郑玲玲, 段春光, 尹海. 基于ABS轮速传感器的信号模拟系统研究与应用[J]. 实验室研究与探索, 2019, 38(8): 92-95+118.
|
|
ZHENG Lingling, DUAN Chunguang, YI Hai. Research and application on signal simulation system based on ABS wheel speed[J]. Rese Explo Labo, 2019, 38(8): 92-95+118. (in Chinese)
|
| [9] |
卢静. 主动式轮速信号模拟器的设计方法研究[J]. 内燃机与配件, 2018(8): 5-6.
|
|
LU Jing. Research on design method of active wheel speed signal simulator[J]. Internal Combu Engine Parts, 2018(8): 5-6. (in Chinese)
|
| [10] |
杨刚, 尚志诚, 钟欣. 汽车ABS试验轮速信号异常值的识别和处理[J]. 汽车实用技术, 2020, 45(24): 108-110.
|
|
YANG Gang, SHANG Zhicheng, ZHONG Xin. Identification and treatment of abnormal values of wheel speed signals for automobile anti-lock braking[J]. Auto Appl Tech, 2020, 45(24): 108-110. (in Chinese)
|
| [11] |
李倩茹, 王于丁, 张晓芳. 一种变遗忘因子RLS算法的分析与仿真[J]. 现代电子技术, 2008(17): 45-47.
|
|
LI Qianru, WANG Yuding, ZHANG Xiaofang. Analysis and simulation of a variable forgetting factor RLS Algorithm[J]. Modern Elect Tech, 2008(17): 45-47. (in Chinese)
|
| [12] |
ZHAO Jian, SU Jing, ZHU Bing, et al. An Indirect TPMS algorithm based on tire resonance frequency estimated by AR model[J]. SAE Int’l J Passenger Cars: Mech Syst, 2016, 9(1): 99-106.
|
| [13] |
KANG Juyong. Resonance frequency estimation of tire for detecting decrease in tire inflation pressure[J]. Trans Korean Soc Auto Engineers, 2019, 27(11): 847-852.
|