Data processing system

By using UWB equipment and data processing systems in underground coal mines to generate and display the movement trajectories of underground personnel, the problem of insufficient monitoring accuracy in existing technologies has been solved, enabling high-precision positioning and rescue of underground personnel.

CN224067140UActive Publication Date: 2026-03-31XI'AN PETROLEUM UNIVERSITY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing underground personnel location monitoring systems have poor accuracy and cannot meet the needs of safe production in coal mines, leading to delays in rescue operations.

Method used

UWB devices are used to detect the location information of target objects. Combined with data processing, storage and display modules, the motion trajectory of the target objects is generated and displayed to improve the accuracy of monitoring.

Benefits of technology

By combining UWB devices and data processing systems, the location and movement trajectory of target objects within the monitoring area can be accurately determined, improving the accuracy of rescue operations.

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Patent Text Reader

Abstract

The utility model discloses a data processing system, and the system comprises UWB equipment which is used for detecting the position information of a target object in a monitoring region; the data processing module is in communication connection with the UWB equipment and is used for receiving the position information of the target object sent by the UWB equipment, performing data processing on the position information of the target object and generating storage data associated with the target object; the storage module is in communication connection with the data processing module and is used for storing multiple pieces of storage data associated with the target object; the display module is in communication connection with the data processing module; wherein the data processing module is also used for calling a plurality of pieces of storage data associated with the target object from the storage module and generating a movement track of the target object in the monitoring area; and the display module is used for displaying the motion trail.
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Description

Technical Field

[0001] This application belongs to the field of monitoring technology, specifically relating to a data processing system. Background Technology

[0002] To transform the coal industry's production methods and coal safety management philosophy, improve the sustainable development of the coal industry and the level of coal mine safety production management, continuously improve the coal industry management system, enhance core coal production technologies, strengthen the application of information technology in coal industry production, and strive to build precise, intelligent, and standardized smart mines. The next five years are a crucial period for building an intelligent coal safety system, implementing the new concept of coal industrialization, and promoting high-quality development. It is an important stage for the coal industry to transform from an outdated model to a new model and a new industry, presenting both opportunities and challenges. We must continuously improve the safety production responsibility system, enhance coal mine safety levels, strengthen the application of information technology in coal mine safety production, and improve the high-level construction of the coal mining industry, providing strong guarantees for the transformation, upgrading, and high-quality development of the coal industry.

[0003] Currently, when a safety accident occurs in a coal mine, it is necessary to locate the position of personnel underground as soon as possible. However, the accuracy of existing location monitoring systems is poor and cannot meet the requirements. Utility Model Content

[0004] One object of this application is to solve at least the problems and / or defects described above, and to provide at least the advantages described below.

[0005] This application provides a data processing system, comprising: a UWB device for detecting the location information of a target object in a monitoring area; a data processing module, communicatively connected to the UWB device, for receiving the location information of the target object sent by the UWB device, processing the location information of the target object, and generating stored data associated with the target object; a storage module, communicatively connected to the data processing module, for storing multiple stored data associated with the target object; and a display module, communicatively connected to the data processing module. The data processing module is further configured to retrieve the multiple stored data associated with the target object from the storage module and generate the motion trajectory of the target object in the monitoring area; and the display module is configured to display the motion trajectory.

[0006] Optionally, in this embodiment of the application, the data processing system further includes: a model module, which is communicatively connected to the data processing module and the storage module, and is used to query multiple stored data associated with the target object from the storage module based on the control of the data processing module.

[0007] Optionally, in this embodiment of the application, the number of UWB devices is at least two.

[0008] Optionally, in this embodiment of the application, the UWB device includes: a device body disposed on a wall in the monitoring area; and an antenna, communicatively connected to the device body, disposed on the top of the monitoring area.

[0009] Optionally, in this embodiment of the application, the UWB device is housed inside a waterproof enclosure.

[0010] Optionally, in this embodiment, a heat dissipation assembly is provided on the first side of the waterproof box; the heat dissipation assembly includes: a protective chamber, fixedly installed on the first side of the waterproof box; a baffle plate fixedly installed on the left side of the inner wall of the protective chamber and fixedly connected to the first side of the waterproof box; a blower fixedly installed on the first side of the waterproof box above the baffle plate; a partition plate fixedly installed on the first side of the inner wall of the protective chamber and fixedly connected to the first side of the waterproof box; the partition plate is located above the blower plate; the air outlet of the blower is connected to a vent that passes through the partition plate and is fixedly connected to the top wall of the inner wall of the protective chamber; a ventilation port is connected to the second side of the vent; a cooler is fixedly installed on the first side of the inner wall of the protective chamber and on the first side of the baffle plate; and a radiator is fixedly installed on the first side of the protective chamber.

[0011] Optionally, in this embodiment of the application, the UWB device is equipped with at least two radio frequency transmission modules, including an infrared transmission module and a UWB transmission module. The UWB device is used to, when in operation, first send an infrared signal to the monitoring area through the infrared transmission module, and when a target object is detected based on the infrared reflection signal of the infrared signal, send a UWB signal to the monitoring area through the UWB transmission module, and when a target object is detected based on the reflection signal of the UWB signal, determine the location information of the target object.

[0012] Optionally, in this embodiment of the application, the data processing system further includes: at least two camera devices, each camera device being disposed at a position within a preset range of a UWB device, and the camera devices being communicatively connected to the data processing module; wherein, the data processing module is further configured to control the camera device adjacent to any UWB device to be in a working state when any UWB device detects a target object.

[0013] Compared with the prior art, this application has the following beneficial effects:

[0014] The data processing system of this application includes a UWB device for detecting the location information of a target object in a monitoring area; a data processing module, which is communicatively connected to the UWB device, for receiving the location information of the target object sent by the UWB device, and for processing the location information of the target object to generate a stored data associated with the target object; a storage module, which is communicatively connected to the data processing module, for storing multiple stored data associated with the target object; and a display module, which is communicatively connected to the data processing module. The data processing module is further used to retrieve the multiple stored data associated with the target object from the storage module and generate the motion trajectory of the target object in the monitoring area; the display module is used to display the motion trajectory. Because the UWB device in the data processing system can acquire the location information of target objects in the monitoring area, and the data processing module can process the location information of the target object to generate a stored data associated with the target object, and store the stored data associated with the target object in the storage module, so that multiple stored data associated with the target object can be stored in the storage module, so that when it is necessary to determine the location information of the target object in the monitoring area, multiple stored data associated with the target object can be directly obtained from the irrigation storage module, and the movement trajectory of the target object can be accurately determined based on the multiple stored data. The movement trajectory can be displayed through the display module, so that rescuers can accurately find the target object based on the movement trajectory, thereby improving the monitoring accuracy of the data processing system.

[0015] Other advantages, objectives and features of this application will be apparent in part from the description which follows, and in part from what those skilled in the art will understand through study and practice of this application. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of the data processing system provided in the embodiments of this application;

[0018] Figure 2 A schematic diagram of the structure of a UWB device for a data processing system provided in this application embodiment;

[0019] Figure 3 This is a schematic diagram of the structure of the waterproof box of the data processing system provided in the embodiments of this application.

[0020] Figure label:

[0021] 11-UWB device, 12-Data processing module, 13-Storage module, 14-Display module, 15-Waterproof box, 21-Protective space, 22-Baffle, 23-Blower, 24-Separator, 25-Ventilation port, 26-Air vent, 27-Refrigerator, 28-Cooling machine. Detailed Implementation

[0022] The present application will now be described in further detail with reference to the accompanying drawings, so that those skilled in the art can implement it based on the description.

[0023] It should be understood that terms such as “having,” “comprising,” and “including” as used herein do not list the presence or addition of one or more other elements or combinations thereof.

[0024] The technical solution of this application will be described in detail below with reference to the accompanying drawings and specific embodiments.

[0025] Currently, domestic underground personnel positioning systems can be broadly divided into two types: area positioning systems and precision positioning systems. Area positioning systems mainly employ wireless communication technologies such as RFID, WiFi, and ZigBee. As the name suggests, they determine whether a miner is in a specific area underground; they cannot pinpoint a miner to a specific coordinate point, but only show a range. RFID, WiFi, and ZigBee wireless communication technologies all determine location by measuring the RSSI signal strength, using high-frequency carrier communication at a frequency of 2.4 GHz. This positioning method has significant drawbacks: First, it can only locate personnel within a certain area, not their precise location. If underground personnel encounter danger and are unable to escape on their own, and the distress call system is inadequate, rescuers cannot accurately locate the target, leading to rescue delays. Second, the RSSI signal strength ranging accuracy is relatively low, resulting in large positioning errors. The positioning effect is easily affected by environmental conditions, frequently exhibiting unstable positioning distances, jumps, and other anomalies, failing to adequately meet the actual needs of safety production and quality management in modern industrial mines in my country. In other words, the accuracy of existing location monitoring systems is poor and cannot meet the requirements.

[0026] However, the data processing system of this application includes a UWB device for detecting the location information of a target object in the monitoring area; a data processing module, which is communicatively connected to the UWB device, for receiving the location information of the target object sent by the UWB device and processing the location information of the target object to generate a stored data associated with the target object; a storage module, which is communicatively connected to the data processing module, for storing multiple stored data associated with the target object; and a display module, which is communicatively connected to the data processing module. The data processing module is also used to retrieve multiple stored data associated with the target object from the storage module and generate the motion trajectory of the target object in the monitoring area; the display module is used to display the motion trajectory. Because the UWB device in the data processing system can acquire the location information of target objects in the monitoring area, and the data processing module can process the location information of the target object to generate a stored data associated with the target object, and store the stored data associated with the target object in the storage module, so that multiple stored data associated with the target object can be stored in the storage module, so that when it is necessary to determine the location information of the target object in the monitoring area, multiple stored data associated with the target object can be directly obtained from the irrigation storage module, and the movement trajectory of the target object can be accurately determined based on the multiple stored data. The movement trajectory can be displayed through the display module, so that rescuers can accurately find the target object based on the movement trajectory, thereby improving the monitoring accuracy of the data processing system.

[0027] like Figures 1 to 3 As shown, this application provides a data processing system, including: a UWB device 11 for detecting the location information of a target object in a monitoring area; a data processing module 12, communicatively connected to the UWB device 11, for receiving the location information of the target object sent by the UWB device 11, and performing data processing on the location information of the target object to generate a stored data associated with the target object; a storage module 13, communicatively connected to the data processing module 12, for storing multiple stored data associated with the target object; and a display module 14, communicatively connected to the data processing module 12. The data processing module 12 is further configured to retrieve the multiple stored data associated with the target object from the storage module 13 and generate a motion trajectory of the target object in the monitoring area; the display module 14 is configured to display the motion trajectory.

[0028] In some embodiments of this application, the target object can be a person or an item.

[0029] In some embodiments of this application, the UWB device 11 described above can be a UWB location monitoring module. The UWB location monitoring module can transmit signals to the target object and determine the location information of the target object in the monitoring area based on the transmitted signals.

[0030] In some embodiments of this application, the number of the above-mentioned UWB devices 11 is at least two.

[0031] In some embodiments of this application, the UWB device 11 includes: a device body disposed on a wall in the monitoring area; and an antenna, communicatively connected to the device body, disposed on the top of the monitoring area.

[0032] In some embodiments of this application, the UWB device 11 described above is housed inside a waterproof enclosure 15.

[0033] In this embodiment of the application, since the environment in the mine may be relatively humid, the UWB device 11 can be placed in a waterproof box 15 to prevent the UWB device 11 from being damaged due to moisture.

[0034] In some embodiments of this application, a heat dissipation assembly is provided on the first side of the waterproof box 15; the heat dissipation assembly includes: a protective space 21 fixedly installed on the first side of the waterproof box 15; a baffle 22 fixedly installed on the first side of the inner wall of the protective space 21 and fixedly connected to the first side of the waterproof box 15; a blower 23 fixedly installed on the first side of the waterproof box 15 above the baffle 22; a partition 24 fixedly installed on the first side of the inner wall of the protective space 21 and fixedly connected to the first side of the waterproof box 15; the partition 24 is located above the blower 23; the air outlet of the blower 23 is connected to a vent 25 with one end penetrating through the partition 24 and fixedly connected to the inner top wall of the protective space 21; a vent 26 is connected to the second side of the vent 25; a cooler 27 is fixedly installed on the first side of the inner wall of the protective space 21 and below the baffle 22; and a radiator 28 is fixedly installed on the first side of the protective space 21.

[0035] In some embodiments of this application, the data processing module 12 can start the blower 23 to draw gas into the protective space 21, and then turn on the cooler 27 and the radiator 28 to cool the gas. In this way, the cold gas enters the vent 25 and is blown into the device body of the UWB device 11 through the vent 26, which accelerates the gas flow speed in the device body and thus heats up and cools the device body.

[0036] In this embodiment, the interior of the protective space 21, located below the baffle 22, can also be filled with a desiccant. The desiccant absorbs the moisture contained in the gas in the protective space 21, thereby keeping the gas dry and preventing moisture from entering the equipment body. A movable door is installed on the front of the protective space 21, which the user can open to easily replace the desiccant.

[0037] In this embodiment, heat dissipation holes are provided on both the left and right sides of the device body to facilitate air circulation. A first filter screen is fixedly installed inside the heat dissipation hole on the right side to filter and intercept dust.

[0038] In this embodiment, a ventilation hole is provided on the left side of the protective space 21 and below the radiator 28. A second filter screen is fixedly installed inside the ventilation hole. Before the gas enters the protective space 21, it passes through the second filter screen to filter and intercept the dust it carries, thereby playing a dustproof function. Waterproof and breathable membranes are fixedly installed on the right side of the first filter screen and the left side of the second filter screen to pre-intercept the water vapor carried by the gas entering the protective space 21, thereby further improving the moisture-proof effect on the equipment body.

[0039] In this embodiment, the cooler 27 and the radiator 28 are matched, and the air inlet of the blower 23 is connected to an air extraction pipe that extends through and to the bottom of the baffle 22.

[0040] In this embodiment, there are six vents 26, which are distributed at equal intervals on the right side of the ventilation opening 25. The air outlets of the vents 26 face the same direction as the heat dissipation holes on the left side, thereby improving the efficiency of heat dissipation for the device body.

[0041] In some embodiments of this application, the UWB device 11 includes at least two types of radio frequency transmission modules: an infrared transmission module and a UWB transmission module. The UWB device 11, when in operation, first transmits an infrared signal to the monitoring area via the infrared transmission module. If a target object is detected based on the infrared reflection signal of the infrared signal, it then transmits a UWB signal to the monitoring area via the UWB transmission module. If a target object is detected based on the reflection signal of the UWB signal, it determines the location information of the target object.

[0042] In some examples, a tag can be carried on the target object. This tag can be a work badge location tag or an intrinsically safe location tag. In this way, the UWB device 11 can first send a signal to the monitoring area through at least one other radio frequency transmission module so that the tag can receive the signal and reflect the signal. Then, the at least one other radio frequency transmission module can receive the reflected signal and determine whether the target object exists in the monitoring area based on the reflected signal.

[0043] In some examples, when at least one other radio frequency transmitting module determines that a target object exists in the monitoring area, a signal can be sent to the monitoring area by the UWB device 11 so that the tag carried on the target object can receive the signal and reflect the signal, so that the UWB device 11 can receive the reflected signal and determine whether a target object exists in the monitoring area based on the reflected signal.

[0044] It is understandable that, due to the complex environment in mines, it may be inaccurate to determine the presence of a target object in a monitoring area using a single radio frequency transmission module. Therefore, multiple radio frequency transmission modules can be set in the UWB device 11 to reduce the impact of the environment on the accuracy of the presence of a target object in the monitoring area.

[0045] In some embodiments of this application, the data processing module 12 can be any of the following: CPU, MCU, etc. The data processing module 12 can be wired to the UWB device 11 or connected via a wireless network. The wireless network can include Wi-Fi.

[0046] In some embodiments of this application, when the data processing module 12 receives the location information of the target object, it can first perform data persistence processing on the location information to obtain data that can be stored persistently, and then add a timestamp to the data to generate a storage data associated with the target object.

[0047] It is understandable that the data stored in the storage module has undergone data persistence processing and has a timestamp. Therefore, in subsequent steps, the data processing module can accurately determine the motion trajectory of the target object based on this timestamp. For example, the data processing module can connect the location information corresponding to multiple stored data in order from oldest to newest time to obtain the motion trajectory.

[0048] In some embodiments of this application, the storage module described above may specifically be a memory.

[0049] In some embodiments of this application, the above-mentioned display module may specifically be a display.

[0050] This application provides a data processing system comprising: a UWB device for detecting the location information of a target object in a monitoring area; a data processing module, communicatively connected to the UWB device, for receiving the location information of the target object sent by the UWB device, processing the location information of the target object, and generating stored data associated with the target object; a storage module, communicatively connected to the data processing module, for storing multiple stored data associated with the target object; and a display module, communicatively connected to the data processing module. The data processing module is further configured to retrieve the multiple stored data associated with the target object from the storage module and generate the motion trajectory of the target object in the monitoring area; the display module is configured to display the motion trajectory. Because the UWB device in the data processing system can acquire the location information of target objects in the monitoring area, and the data processing module can process the location information of the target object to generate a stored data associated with the target object, and store the stored data associated with the target object in the storage module, so that multiple stored data associated with the target object can be stored in the storage module, so that when it is necessary to determine the location information of the target object in the monitoring area, multiple stored data associated with the target object can be directly obtained from the irrigation storage module, and the movement trajectory of the target object can be accurately determined based on the multiple stored data. The movement trajectory can be displayed through the display module, so that rescuers can accurately find the target object based on the movement trajectory, thereby improving the monitoring accuracy of the data processing system.

[0051] In some embodiments of this application, the data processing system further includes a model module, which is communicatively connected to the data processing module and the storage module, and is used to query multiple stored data associated with the target object from the storage module based on the control of the data processing module.

[0052] In some embodiments of this application, the aforementioned model module can specifically be an AI model. Since the AI ​​model is a trained AI model, it can accurately query multiple stored data associated with the target object from the storage module.

[0053] In some embodiments of this application, the data processing system further includes: at least two camera devices, each camera device being disposed at a position within a preset range of a UWB device 11, and the camera devices being communicatively connected to the data processing module; wherein, the data processing module is further configured to control the camera device adjacent to any UWB device to be in a working state when any UWB device 11 detects a target object.

[0054] In some embodiments of this application, the above-mentioned camera device may be a webcam.

[0055] In this embodiment of the application, since the data processing module 12 can also control the camera device adjacent to any UWB device 11 to be in working state when any UWB device 11 detects the target object, on the one hand, the camera device can collect the image of the target object so that the user can know whether the target object is the object the user is looking for through the image, and on the other hand, the current situation of the target object can be known through the image, which is convenient for rescue.

[0056] Although the embodiments of this application have been disclosed above, they are not limited to the applications listed in the specification and embodiments. They can be applied to various fields suitable for this application. Other modifications can be readily implemented by those skilled in the art. Therefore, without departing from the general concept defined by the claims and their equivalents, this application is not limited to the specific details and examples shown and described herein.

Claims

1. A data processing system, characterized by The application relates to a data processing system. The application comprises: an UWB device for detecting position information of a target object in a monitoring area; a CPU in communication connection with the UWB device, for receiving the position information of the target object sent by the UWB device and performing data processing on the position information of the target object to generate a storage data associated with the target object; a storage in communication connection with the CPU, for storing a plurality of storage data associated with the target object; a display in communication connection with the CPU; wherein the CPU is further configured to call the plurality of storage data associated with the target object from the storage and generate a motion trail of the target object in the monitoring area; the display is configured to display the motion trail; at least two radio frequency transmitting modules arranged in the UWB device, including an infrared transmitting module and a UWB transmitting module; 2. The data processing system of claim 1, wherein, wherein the UWB device is configured to, when in a working state, first send an infrared signal to the monitoring area through the infrared transmitting module, and when it is determined that the target object is monitored according to an infrared reflection signal of the infrared signal, send a UWB signal to the monitoring area through the UWB transmitting module, and when it is determined that the target object is monitored according to a reflection signal of the UWB signal, determine the position information of the target object. The data processing system further comprises:

3. The data processing system of claim 1, wherein, a model module in communication connection with the CPU and the storage, configured to query the plurality of storage data associated with the target object from the storage based on the control of the CPU.

4. The data processing system of claim 1, wherein, The number of the UWB devices is at least two. The UWB device comprises: a device body arranged on a wall in the monitoring area; 5. The data processing system of claim 1, wherein, an antenna in communication connection with the device body and arranged on the top of the monitoring area.

6. The data processing system of claim 5, wherein, The UWB device is arranged in a waterproof box. A heat dissipation assembly is arranged on the first side of the waterproof box. The heat dissipation assembly comprises:

7. The data processing system of claim 1, wherein, a protection cabin fixedly installed on the first side of the waterproof box, a baffle fixedly installed on the left side of the inner wall of the protection cabin and fixedly connected with the first side of the waterproof box, a hair dryer fixedly installed on the first side of the waterproof box and located above the baffle, a partition plate fixedly installed on the first side of the inner wall of the protection cabin and fixedly connected with the first side of the waterproof box, the partition plate being located above the hair dryer, a ventilation opening communicated with the second side of the ventilation opening and communicated with the air inlet of the hair dryer, the air outlet of the hair dryer being communicated with a ventilation opening penetrating through the partition plate and fixedly connected with the inner top wall of the protection cabin, a refrigeration device fixedly installed on the first side of the protection cabin and located on the first side of the baffle, and a radiator fixedly installed on the first side of the protection cabin. The data processing system further comprises: at least two camera devices, each of which is arranged at a position within a preset range of one of the UWB devices, and in communication connection with the CPU; wherein the CPU is further configured to control the camera device adjacent to any one of the UWB devices to be in a working state when the target object is monitored by any one of the UWB devices.