Citation: | YU Lu, TANG Chaoli, HUANG Yourui, et al. Research on tightly combined positioning method of coal mine robot based on UWB and IMU[J]. Journal of Mine Automation,2022,48(12):79-85. DOI: 10.13272/j.issn.1671-251x.2022070058 |
[1] |
柳玉龙. 煤矿搜救机器人的研究现状及关键技术分析[J]. 矿山机械,2013,41(3):7-12. DOI: 10.16816/j.cnki.ksjx.2013.03.002
LIU Yulong. Analysis on current research status and key technologies of mine search and rescue robots[J]. Mining & Processing Equipment,2013,41(3):7-12. DOI: 10.16816/j.cnki.ksjx.2013.03.002
|
[2] |
张晓莉,王张哲. 井下巡检机器人实时高精度定位方法[J]. 矿业研究与开发,2021,41(10):158-161. DOI: 10.13827/j.cnki.kyyk.2021.10.027
ZHANG Xiaoli,WANG Zhangzhe. Real-time and high-precision positioning method of underground patrol robot[J]. Mining Research and Development,2021,41(10):158-161. DOI: 10.13827/j.cnki.kyyk.2021.10.027
|
[3] |
谭玉新,杨维. 一种基于UKF的井下机器人超声网络定位方法[J]. 煤炭学报,2016,41(9):2396-2404. DOI: 10.13225/j.cnki.jccs.2016.0075
TAN Yuxin,YANG Wei. UKF-based ultrasonic network localization for a mine robot[J]. Journal of China Coal Society,2016,41(9):2396-2404. DOI: 10.13225/j.cnki.jccs.2016.0075
|
[4] |
陈美蓉,王凯,张嘉纯,等. 煤矿井下超宽带定位混合解算方法[J]. 工矿自动化,2021,47(3):53-59. DOI: 10.13272/j.issn.1671-251x.17710
CHEN Meirong,WANG Kai,ZHANG Jiachun,et al. Hybrid solution method for ultra-wideband positioning in coal mines[J]. Industry and Mine Automation,2021,47(3):53-59. DOI: 10.13272/j.issn.1671-251x.17710
|
[5] |
马宏伟,张璞,毛清华,等. 基于捷联惯导和里程计的井下机器人定位方法研究[J]. 工矿自动化,2019,45(4):35-42. DOI: 10.13272/j.issn.1671-251x.2018100054
MA Hongwei,ZHANG Pu,MAO Qinghua,et al. Research on positioning method of underground robot based on strapdown inertial navigation and odometer[J]. Industry and Mine Automation,2019,45(4):35-42. DOI: 10.13272/j.issn.1671-251x.2018100054
|
[6] |
杨金衡,宋单阳,田慕琴,等. 基于自适应卡尔曼滤波的双惯导采煤机定位方法[J]. 工矿自动化,2021,47(7):14-20,28. DOI: 10.13272/j.issn.1671-251x.2021030113
YANG Jinheng,SONG Danyang,TIAN Muqin,et al. Double inertial navigation shearer positioning method based on adaptive Kalman filter[J]. Industry and Mine Automation,2021,47(7):14-20,28. DOI: 10.13272/j.issn.1671-251x.2021030113
|
[7] |
贺磊,魏明生,仇欣宇,等. 基于UWB的井下人员定位算法研究[J]. 工矿自动化,2022,48(6):134-138.
HE Lei,WEI Mingsheng,QIU Xinyu,et al. Research on positioning algorithm of underground personnel based on UWB[J]. Journal of Mine Automation,2022,48(6):134-138.
|
[8] |
火元亨. 基于惯性导航和UWB定位的室内无人车导航技术研究[D]. 哈尔滨: 哈尔滨工业大学, 2021.
HUO Yuanheng. Indoor unmanned vehicle navigation based on inertial navigation and UWB positioning[D]. Harbin: Harbin Institute of Technology, 2021.
|
[9] |
牛小骥,旷俭,陈起金. 采用MEMS惯导的小口径管道内检测定位方案可行性研究[J]. 传感技术学报,2016,29(1):40-44. DOI: 10.3969/j.issn.1004-1699.2016.01.008
NIU Xiaoji,KUANG Jian,CHEN Qijin. Study on the possibility of the PIG positioning using MEMS-based IMU[J]. Chinese Journal of Sensors and Actuators,2016,29(1):40-44. DOI: 10.3969/j.issn.1004-1699.2016.01.008
|
[10] |
张宝军,陈曦,廖延娜,等. 基于DL−LSTM的UWB/INS室内定位算法[J]. 传感器与微系统,2021,40(10):147-150. DOI: 10.13873/J.1000-9787(2021)10-0147-04
ZHANG Baojun,CHEN Xi,LIAO Yanna,et al. UWB/INS indoor positioning algorithm based on DL-LSTM[J]. Transducer and Microsystem Technologies,2021,40(10):147-150. DOI: 10.13873/J.1000-9787(2021)10-0147-04
|
[11] |
XU Yuan,LI Yueyang,CHOON K A,et al. Seamless indoor pedestrian tracking by fusing INS and UWB measurements via LS-SVM assisted UFIR filter[J]. Neurocomputing,2020,388:301-308. DOI: 10.1016/j.neucom.2019.12.121.
|
[12] |
蒋来来. 基于LSSVM优化的电厂NO_x排放预测方法研究[D]. 保定: 华北电力大学, 2021.
JIANG Lailai. Research on NO_x emission prediction method of power plant based on optimized LSSVM [D]. Baoding: North China Electric Power University, 2021.
|
[13] |
邹强,陆甫光,兰馗博,等. 基于ISRUKF的UWB/INS组合室内定位方法研究[J]. 天津大学学报(自然科学与工程技术版),2022,55(5):496-503.
ZOU Qiang,LU Fuguang,LAN Kuibo,et al. UWB/INS combined indoor positioning method based on ISRUKF[J]. Journal of Tianjin University (Science and Technology),2022,55(5):496-503.
|
[14] |
SHIN E H. Estimation techniques for low-cost inertial navigation[D]. Calgary: University of Calgary (Canada), 2005.
|
[15] |
秦永元, 张洪钺, 汪叔华. 卡尔曼滤波与组合导航原理[M]. 西安: 西北工业大学出版社, 2015.
QIN Yongyuan, ZHANG Hongyu, WANG Shuhua. Kalman filtering and combinatorial navigation principle[M]. Xi'an: Northwestern Polytechnical University Press, 2015.
|
[16] |
FENG Daquan,WANG Chunqi,HE Chunlong,et al. Kalman-filter-based integration of IMU and UWB for high-accuracy indoor positioning and navigation[J]. IEEE Internet of Things Journal,2020,7(4):3133-3146. DOI: 10.1109/JIOT.2020.2965115
|
[17] |
徐爱功,刘韬,隋心,等. UWB/INS紧组合的室内定位定姿方法[J]. 导航定位学报,2017,5(2):14-19. DOI: 10.3969/j.issn.2095-4999.2017.02.003
XU Aigong,LIU Tao,SUI Xin,et al. Indoor positioning and attitude determination method based on UWB/INS tightly coupled[J]. Journal of Navigation and Positioning,2017,5(2):14-19. DOI: 10.3969/j.issn.2095-4999.2017.02.003
|
[18] |
王川阳,王坚. 超宽带应急定位基站布设研究[J]. 测绘科学,2019,44(8):174-181. DOI: 10.16251/j.cnki.1009-2307.2019.08.025
WANG Chuanyang,WANG Jian. Study of base station layout of ultra wideband emergency positioning[J]. Science of Surveying and Mapping,2019,44(8):174-181. DOI: 10.16251/j.cnki.1009-2307.2019.08.025
|
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