Citation: | GUO Qianqian, CUI Lizhen, YANG Yong, et al. PDR algorithm for precise positioning of underground personnel based on LSTM personalized step size estimation[J]. Industry and Mine Automation,2022,48(1):33-38. doi: 10.13272/j.issn.1671-251x.2021070052 |
[1] |
李晨辉, 甄杰, 祝会忠, 等. 复杂环境下的超宽带高精度定位算法[J]. 测绘科学,2020,45(1):4-10.
LI Chenhui, ZHEN Jie, ZHU Huizhong, et al. Ultra wideband high precision positioning algorithm in complex environment[J]. Science of Surveying and Mapping,2020,45(1):4-10.
|
[2] |
YU N, ZHAN X, ZHAO S, et al, A precise dead reckoning algorithm based on bluetooth and multiple sensors[J]. IEEE Internet Things Journal, 2018, 5(1): 336-351.
|
[3] |
孙哲星. 煤矿井下人员精确定位方法[J]. 煤炭科学技术,2018,46(3):130-134.
SUN Zhexing. Accurate positioning method of underground personnel in coal mine[J]. Coal Science and Technology,2018,46(3):130-134.
|
[4] |
孙延鑫, 毛善君, 苏颖, 等. 改进的井下人员定位PDR算法研究[J]. 工矿自动化,2021,47(1):43-48.
SUN Yanxin, MAO Shanjun, SU Ying, et al. Research on improved PDR algorithm for underground personnel positioning[J]. Industry and Mine Automation,2021,47(1):43-48.
|
[5] |
郭娅婷, 杨君, 甘露. 基于改进PDR与RSSI融合的定位算法[J]. 传感技术学报,2020,33(7):1027-1032. doi: 10.3969/j.issn.1004-1699.2020.07.016
GUO Yating, YANG Jun, GAN Lu. Localization algorithm based on improved PDR and RSSI fusion[J]. Journal of Sensor Technology,2020,33(7):1027-1032. doi: 10.3969/j.issn.1004-1699.2020.07.016
|
[6] |
WEINBERG H. Using the ADXL202 in pedometer and personal navigation applications[EB/OL]. (2016-09-23) [2021-06-15].https://www.docin.com/p-1743985325.html.
|
[7] |
KIM J W, HAN J J, HWANG D H, et al. A step, stride and heading determination for the pedestrian navigation system[J]. Journal of Global Positioning Systems,2004,3(1/2):273-279.
|
[8] |
SCARLETT J. Enhancing the performance of pedometers using a single accelerometer [EB/OL]. (2020-06-02) [2021-06-15].https://www.86ic.net/qiche/xinnengyuan/44427.html.
|
[9] |
HAN G, GROVES P D . Context determination for adaptive navigation using multiple sensors on a smartphone [C]//Ion Gnss, 2016: 12-16.
|
[10] |
HANNINK J, KAUTZ T, PASLUOSTA C, et al. Mobile stride length estimation with deep convolutional neural networks[J]. IEEE Biomedical and Health Informatics,2018,22(2):354-362. doi: 10.1109/JBHI.2017.2679486
|
[11] |
张荣辉, 贾宏光, 陈涛, 等. 基于四元数法的捷联式惯性导航系统的姿态解算[J]. 光学精密工程,2008,16(10):1963-1970. doi: 10.3321/j.issn:1004-924X.2008.10.029
ZHANG Ronghui, JIA Hongguang, CHEN Tao, et al. Attitude calculation of strapdown inertial navigation system based on quaternion method[J]. Optics and Precision Engineering,2008,16(10):1963-1970. doi: 10.3321/j.issn:1004-924X.2008.10.029
|
[12] |
肖宇. 基于互补滤波算法的四旋翼飞行器姿态和高度解算[J]. 工业控制计算机,2016,29(10):94-96. doi: 10.3969/j.issn.1001-182X.2016.10.045
XIAO Yu. Attitude and height estimation of quad-rotor aircraft based on complementary filter[J]. Industrial Control Computer,2016,29(10):94-96. doi: 10.3969/j.issn.1001-182X.2016.10.045
|
[13] |
YADAV N, BLEAKLEY C. Accurate orientation estimation using AHRS under conditions of magnetic distortion[J]. Sensors,2014,14(11):20008-20024. doi: 10.3390/s141120008
|
[14] |
WANG Qu, LUO Haiyong, YE Langlang, et al. Personalized stride-length estimation based on active online learning[J]. IEEE Internet of Things Journal,2020,7(6):4885-4897. doi: 10.1109/JIOT.2020.2971318
|
[15] |
毕京学, 汪云甲, 曹鸿基, 等. 一种波峰波谷检测的智能手机计步算法[J]. 中国惯性技术学报,2020,28(3):287-292.
BI Jingxue, WANG Yunjia, CAO Hongji, et al. A step counting algorithm for smartphone with peak-valley detection[J]. Journal of Chinese Inertial Technology,2020,28(3):287-292.
|