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1.
公开(公告)号:US20240089879A1
公开(公告)日:2024-03-14
申请号:US18260532
申请日:2022-09-30
发明人: Gongbo ZHOU , Chuansheng ZHANG , Fan JIANG , Lianfeng HAN , Shudong WANG , Xin LIU , Duifang GU , Tao WANG , Chuansong WANG , Libing WANG , Niansheng LIU , Fuxing SHI , Dongrun LIU , Lizheng LI , Zhencai ZHU
CPC分类号: H04W56/001 , H04B10/27 , H04W64/00 , H04W84/22
摘要: The present disclosure discloses a time service and positioning network system for an underground chain-shaped large space in a coal mine. The system adopts a base station-level network internal time synchronization method which takes an optical fiber time service as a main part and takes a satellite time service as an auxiliary part to construct a time service and positioning network system with an unified time within the ad-hoc network base stations, based on the ad-hoc network base stations linearly arranged in the underground chain-shaped large space in the coal mine. Through the network construction, the network stabilization and the network application, the system unifies the time reference of the base station-level network and improves the positioning accuracy of the network application by utilization of the base station-level network internal time synchronization method. The system integrates the time service and positioning network system suitable for the underground coal mine and expands the network applicability based on an existing underground communication ring network.
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2.
公开(公告)号:US20240317283A1
公开(公告)日:2024-09-26
申请号:US18034386
申请日:2022-09-30
发明人: Fan JIANG , Zhencai ZHU , Xingtao HUANG , Gongbo ZHOU , Niansheng LIU , Libing WANG , Chuansheng ZHANG , Yuxing PENG , Gang SHEN , Chaofan ZHANG , Wenwen YI , Shuman CHENG , Zhengxu WANG
IPC分类号: B61L25/02
CPC分类号: B61L25/025
摘要: The present disclosure discloses a method for positioning an auxiliary transportation vehicle in a coal mine and a positioning system thereof. The method comprises: acquiring a rotation velocity of each wheels and a rotation angle of a steering wheel, constructing a kinematics model based on wheels not for steering of the vehicle and a kinematics model based on wheels for steering of the vehicle respectively, and constructing a kinematics model based on a geometric center of the vehicle according to the above two kinematics models; and according to a travelling condition of the vehicle, integrating the kinematics model based on the geometric center with a strap-down inertial navigation system for positioning, when the vehicle is in a normal travelling state; and integrating, the kinematics model based on the wheels not for steering with the strap-down inertial navigation system for positioning, when the vehicle is in an abnormal travelling state.
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3.
公开(公告)号:US20230331263A1
公开(公告)日:2023-10-19
申请号:US18029326
申请日:2022-09-30
发明人: Zhencai ZHU , Fan JIANG , Xingtao HUANG , Gongbo ZHOU , Niansheng LIU , Libing WANG , Chuansheng ZHANG , Junfeng GUO , Gang SHEN , Shuman CHENG , Jinlei MA , Chaofan ZHANG , Wenwen YI
CPC分类号: B61D11/00 , E21F17/18 , G05D1/028 , G05D2201/021
摘要: The present disclosure discloses a low-energy-consumption grading and positioning method and system for a coal mine auxiliary transportation vehicle, which belongs to the technical field of mine tunnel transportation. The method comprises the following steps: S10, determining an optimal transportation route of a vehicle, and dividing the optimal transportation route into a plurality of locked intervals; S20, determining an initial velocity v0 of the vehicle passing through each locked interval; S30, constructing a discretization mileage estimation model to update a real-time position of the vehicle, and obtaining dynamic track information of the vehicle in each locked interval; S40, constructing a [v0, t] prediction model, and obtaining a theoretical time t0 of the vehicle passing through each locked interval through the prediction model; S50, comparing a actual time t and the theoretical time t0 of the vehicle passing through each locked interval, and selecting whether to start overtime early warning or overtime alarm; and S60, repeating S30 to S50 after the vehicle enters the next locked interval. The low-energy-consumption grading and positioning method and system for the coal mine auxiliary transportation vehicle provided in the present disclosure realizes on-demand positioning of the underground vehicle and reduces the consumption and cost of positioning.
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4.
公开(公告)号:US11930463B1
公开(公告)日:2024-03-12
申请号:US18260532
申请日:2022-09-30
发明人: Gongbo Zhou , Chuansheng Zhang , Fan Jiang , Lianfeng Han , Shudong Wang , Xin Liu , Duifang Gu , Tao Wang , Chuansong Wang , Libing Wang , Niansheng Liu , Fuxing Shi , Dongrun Liu , Lizheng Li , Zhencai Zhu
CPC分类号: H04W56/001 , H04B10/27 , H04W64/00 , H04W84/22
摘要: The present disclosure discloses a time service and positioning network system for an underground chain-shaped large space in a coal mine. The system adopts a base station-level network internal time synchronization method which takes an optical fiber time service as a main part and takes a satellite time service as an auxiliary part to construct a time service and positioning network system with an unified time within the ad-hoc network base stations, based on the ad-hoc network base stations linearly arranged in the underground chain-shaped large space in the coal mine. Through the network construction, the network stabilization and the network application, the system unifies the time reference of the base station-level network and improves the positioning accuracy of the network application by utilization of the base station-level network internal time synchronization method. The system integrates the time service and positioning network system suitable for the underground coal mine and expands the network applicability based on an existing underground communication ring network.
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公开(公告)号:US11772687B1
公开(公告)日:2023-10-03
申请号:US18029326
申请日:2022-09-30
发明人: Zhencai Zhu , Fan Jiang , Xingtao Huang , Gongbo Zhou , Niansheng Liu , Libing Wang , Chuansheng Zhang , Junfeng Guo , Gang Shen , Shuman Cheng , Jinlei Ma , Chaofan Zhang , Wenwen Yi
CPC分类号: B61D11/00 , E21F17/18 , G05D1/02 , G05D2201/021
摘要: The present disclosure discloses a low-energy-consumption grading and positioning method and system for a coal mine auxiliary transportation vehicle, which belongs to the technical field of mine tunnel transportation. The method comprises the following steps: S10, determining an optimal transportation route of a vehicle, and dividing the optimal transportation route into a plurality of locked intervals; S20, determining an initial velocity v0 of the vehicle passing through each locked interval; S30, constructing a discretization mileage estimation model to update a real-time position of the vehicle, and obtaining dynamic track information of the vehicle in each locked interval; S40, constructing a [v0, t] prediction model, and obtaining a theoretical time t0 of the vehicle passing through each locked interval through the prediction model; S50, comparing a actual time t and the theoretical time t0 of the vehicle passing through each locked interval, and selecting whether to start overtime early warning or overtime alarm; and S60, repeating S30 to S50 after the vehicle enters the next locked interval. The low-energy-consumption grading and positioning method and system for the coal mine auxiliary transportation vehicle provided in the present disclosure realizes on-demand positioning of the underground vehicle and reduces the consumption and cost of positioning.
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