Energy-saving mobile data acquisition box
By designing an energy-saving mobile data acquisition box, using solar charging panels and dual-channel power supply units to achieve automatic data acquisition and transmission, the inefficiency of manual transcription of data when the well station power supply is not arranged, and real-time remote monitoring and efficient transmission of data are realized.
Patent Information
- Application Number
- CN202311505698.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-13
- Publication Date
- 2025-05-13
AI Technical Summary
When the power supply of the well station is not arranged in place, the existing technology requires manual data transcription, which is time-consuming and labor-intensive and has low efficiency.
An energy-saving mobile data acquisition box is designed, using a solar charging panel and a dual power supply unit to realize dual power supply, and the automatic reception and transmission of front-end data is realized through the reception and transmission unit.
Real-time remote monitoring of data is realized, efficiency is improved, the workload of manual transcription is reduced, error is avoided, and the workload of on-site personnel is saved.
Smart Images

Figure CN119996435A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of data collection, and is an energy-saving mobile data collection box. Background Art
[0002] Data acquisition technology is widely used in communications, radar, aerospace, industry and other fields. With the rapid development of microelectronics and computer technology, the performance of data acquisition systems is constantly improving and their functions are constantly increasing.
[0003] With the popularization of Internet of Things technology, existing oilfield enterprises are also moving towards digital transformation and development; each oil production plant increasingly relies on automated data collection to conduct on-site production command and analysis. However, for temporary demand test well station data required by professional departments, or when the power supply of the newly built well station has not been deployed in place and the supporting front-end automated data collection equipment has not been built, the temperature, pressure and other data of key nodes on site cannot be transmitted remotely, and personnel must be arranged to be on duty 24 hours a day to record, which is time-consuming, labor-intensive and prone to errors. Summary of the invention
[0004] The present invention provides an energy-saving mobile data collection box, which overcomes the shortcomings of the above-mentioned prior art and can effectively solve the problem of manual data transcription, which is time-consuming, labor-intensive and inefficient when the power supply of the well station has not been fully deployed.
[0005] The technical solution of the present invention is achieved through the following measures: an energy-saving mobile data acquisition box, including a box body, a mounting part is arranged on the outside of the rear side of the box body, a box door is hinged at the front end of the box body, a threading hole is arranged at the bottom of the box body, a winding rack is arranged at a position in the box body corresponding to the front side of the threading hole, a solar charging panel is arranged on the outside of the top of the box body through a support, the solar charging panel is placed in an inclined state, a receiving and transmission unit and a dual-way power supply unit are arranged inside the box body, the dual-way power supply unit includes a solar cell group, a 220V power circuit breaker module and a power controller, the solar charging panel is connected to the solar cell group, the solar cell group and the 220V power circuit breaker module are both connected to the power controller, and the power controller is connected to the receiving and transmission unit.
[0006] The following are further optimizations and / or improvements to the above technical solutions: A mounting plate may be provided on the rear side surface inside the box, and the receiving and transmitting unit, the solar cell group, the 220V power circuit breaker module and the power controller may be detachably mounted on the mounting plate.
[0007] The mounting plate can be fixedly mounted on the rear side of the box body by a plurality of bolts.
[0008] The above-mentioned receiving and transmitting unit may include a wireless instrument collection network management module and a 4G CPE module, the power controller is connected to the wireless instrument collection network management module and the 4G CPE module respectively, and the wireless instrument collection network management module is connected to the 4G CPE module.
[0009] The above-mentioned 220V power circuit breaker module may include an external 220V power circuit breaker and an external 220V power socket, the external 220V power socket is connected to the external 220V power circuit breaker, and the external 220V power circuit breaker is connected to the power controller.
[0010] The above may also include a first wiring terminal row and a second wiring terminal row, and the first wiring terminal row and the second wiring terminal row are both arranged on the mounting plate.
[0011] The box door may be provided with a handle, a sealing strip may be provided at the opening and closing position of the box door, and anti-slip patterns may be provided on the surface of the handle.
[0012] The top outer edge of the box body may be surrounded by downwardly inclined rain shielding strips.
[0013] The surfaces of the box body and the box door may be coated with anti-rust paint.
[0014] The invention has a reasonable and compact structure and is easy to use. Through the quick installation of the invention, dual power supply is achieved based on the solar charging panel and the dual-channel power supply unit. The power supply mode can be automatically switched according to the on-site power supply environment to power the receiving and transmission units. Further, the automatic reception and transmission of front-end collected data can be achieved through the receiving and transmission units, and real-time remote monitoring of data is achieved. The efficiency is high, error-prone, and the workload of on-site personnel in transcribing data is saved. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Attached Figure 1 It is a schematic diagram of the external structure of the device of the present invention.
[0016] Attached Figure 2 It is a schematic diagram of the device structure when the box door is open in the present invention.
[0017] Attached Figure 3 It is a structural schematic diagram of the bottom of the box body in the present invention.
[0018] Attached Figure 4 It is a schematic diagram of the circuit structure of the present invention.
[0019] The codes in the accompanying drawings are: 1 is a box body, 2 is a box door, 3 is a threading hole, 4 is a winding rack, 5 is a support, 6 is a solar charging panel, 7 is a solar cell group, 8 is a first bolt, 9 is a power controller, 10 is a U-shaped frame, 11 is a second bolt, 12 is a winding hole, 13 is a mounting plate, 14 is a wireless instrument collection network management module, 15 is a 4G CPE module, 16 is an external 220V power circuit breaker, 17 is an external 220V power socket, 18 is a first terminal block, 19 is a second terminal block, 20 is a handle, 21 is a sealing strip, and 22 is a rain shield. DETAILED DESCRIPTION
[0020] The present invention is not limited by the following embodiments, and specific implementation methods can be determined based on the technical solution of the present invention and actual conditions.
[0021] In the present invention, for the convenience of description, the relative position relationship of each component is described according to the attached Figure 1 The positional relationships such as front, back, top, bottom, left, and right are described according to the layout directions of the drawings in the specification.
[0022] The present invention will be further described below in conjunction with embodiments and drawings: Embodiment 1, as attached Figure 1 As shown, an embodiment of the present invention discloses an energy-saving mobile data acquisition box, including a box body 1, a box door 2 is hinged at the front end of the box body 1, a threading hole 3 is arranged at the bottom of the box body 1, a winding rack 4 is arranged at a position in the box body 1 corresponding to the front side of the threading hole 3, a solar charging panel 6 is arranged on the outer side of the top of the box body 1 through a support member 5, the solar charging panel 6 is placed in an inclined state, a receiving and transmission unit and a dual-way power supply unit are arranged inside the box body 1, the dual-way power supply unit includes a solar cell group 7, a 220V power supply circuit breaker module and a power controller 9, the solar charging panel 6 is connected to the solar cell group 7, the solar cell group 7 and the 220V power supply circuit breaker module are both connected to the power controller 9, and the power controller 9 is connected to the receiving and transmission unit.
[0023] In the above embodiment, the solar charging panel 6 and the dual-circuit power supply unit realize the power supply system of the present invention. The solar charging panel 6 is installed on the top outer side of the box body 1 through a support frame, and the solar charging panel 6 is placed in an inclined state, so that the solar charging panel 6 can be in contact with sunlight over a large area, thereby improving the solar energy conversion efficiency. The above dual-circuit power supply unit includes a solar cell group 7, a 220V power supply circuit breaker module and a power controller 9. The solar charging panel 6 can be a 30V solar charging panel 6, and the solar cell group 7 can be a 15V or 24V solar cell group 7. The solar charging panel 6 charges the solar cell group 7. The 220V power supply circuit breaker module is used to access the 220V mains. The power controller 9 can be a mains and solar energy complementary type boost constant current integrated controller, which can switch between battery power supply and mains power supply, and can convert the 220V mains power into 12V direct current, thereby realizing the energy-saving dual-circuit power supply of the present invention. The specific dual-circuit power supply steps include: Power supply method 1 of the present invention: When there is no electricity on the site where the present invention needs to be installed, the present invention can be installed in a safe explosion-proof area, and the solar cell group 7 in the box can be charged by the solar panel, and the power controller 9 can control the solar cell group 7 to output 12V or 24V DC power. The receiving and transmission units in the present invention can use a wide power supply, so the solar cell group 7 can output 12V to 24V DC power to power the receiving and transmission units, thereby realizing the front-end data collection and feedback.
[0024] Power supply 2 of the present invention: When there is electricity on site where the present invention needs to be installed, the present invention can be installed on a mounting piece (the mounting piece can be but is not limited to a piece with a magnet bar, a back-hanging bracket or a clamp interface) and fixed near a distribution box, and the 220V power supply is connected to a 220V power circuit breaker module. After the 220V AC power supply is converted into a 12V DC power supply by the power controller 9, it is supplied to the receiving and transmission units for use, thereby realizing the front-end data collection and feedback.
[0025] When the 220V power supply on site is suddenly interrupted or out of power, the power controller 9 in the box automatically switches the power supply mode to the battery mode. Thus, the present invention realizes energy-saving power supply.
[0026] In the above embodiment, a threading hole 3 is provided at the bottom of the box body 1, and a winding rack 4 is provided at a position inside the box body 1 corresponding to the front side of the threading hole 3. All cables that need to be connected to the inside of the box body 1 are inserted into the box body 1 through the threading hole 3. The threading holes 3 are evenly arranged at the bottom of the box body 1, and the winding rack 4 is used to organize the cables inside the box body 1 while playing the role of threading. The cable is kept tidy and convenient for the staff to maintain it later. The winding rack 4 can be an inverted U-shaped frame 10, and the U-shaped frame 10 is provided with a second bolt 11. A plurality of winding holes 12 are provided on the upper end surface of the U-shaped frame 10. The cables pass through the winding holes 12 and are wound on the second bolts 11.
[0027] The present invention discloses an energy-saving mobile data collection box. Through the quick installation of the present invention, dual power supply is realized based on a solar charging panel 6 and a dual-channel power supply unit. The power supply mode can be automatically switched according to the on-site power supply environment to power a receiving and transmitting unit. Further, the front-end collected data can be automatically received and transmitted through the receiving and transmitting unit, so that real-time remote monitoring of data is realized, which is highly efficient, not prone to errors, and saves the workload of on-site personnel in transcribing data.
[0028] Embodiment 2, as attached Figure 1 As shown, an embodiment of the present invention discloses an energy-saving mobile data acquisition box, and a mounting plate 13 is further provided on the rear side surface inside the box body 1, and the receiving and transmitting unit, the solar cell group 7, the 220V power circuit breaker module and the power controller 9 can all be detachably mounted on the mounting plate 13.
[0029] In the above embodiment, a mounting plate 13 is provided on the rear side surface inside the box body 1. The mounting plate 13 can be fixedly installed on the rear side surface inside the box body 1 by a plurality of first bolts 8, so as to facilitate the detachable installation and arrangement of the components inside the box (receiving and transmitting unit, solar cell group 7, 220V power circuit breaker module and power controller 9).
[0030] Embodiment 3, as attached Figure 1 As shown, an embodiment of the present invention discloses an energy-saving mobile data collection box, and further the receiving and transmitting units include a wireless instrument collection network management module 14 and a 4G CPE module 15, the power controller 9 is connected to the wireless instrument collection network management module 14 and the 4G CPE module 15 respectively, and the wireless instrument collection network management module 14 is connected to the 4G CPE module 15.
[0031] In the above embodiment, the wireless instrument collection network management module 14 is used to receive the data collected by the wireless instrument; the 4GCPE module 15 is used to transmit the collected data to the remote control room through the 4G network, thereby realizing automatic real-time remote monitoring of data and saving the workload of on-site personnel in transcribing data.
[0032] Embodiment 4, as attached Figure 1 As shown, the embodiment of the present invention discloses an energy-saving mobile data acquisition box, and further the 220V power supply circuit breaker module includes an external 220V power supply circuit breaker 16 and an external 220V power socket 17, the external 220V power socket 17 is connected to the external 220V power supply circuit breaker 16, and the external 220V power supply circuit breaker 16 is connected to the power controller 9. Based on the external 220V power supply circuit breaker 16 accessing the external 220V mains, the external 220V power supply circuit breaker 16 is used when electricity is needed on site.
[0033] Embodiment 5, as attached Figure 1As shown, the embodiment of the present invention discloses an energy-saving mobile data acquisition box, which further includes a first terminal row 18 and a second terminal row 19 , and the first terminal row 18 and the second terminal row 19 are both arranged on the mounting plate 13 .
[0034] The present invention utilizes the first wiring terminal row 18 and the second wiring terminal row 19 to expand the wiring interface, making wiring more convenient and neat, and reducing the use of overly long cables.
[0035] Embodiment 6, as attached Figure 1 As shown, the embodiment of the present invention discloses an energy-saving mobile data collection box, further comprising a handle 20 on the box door 2, a sealing strip 21 at the opening and closing portion of the box door 2, and anti-slip patterns on the surface of the handle 20.
[0036] The present invention can play an anti-skid role by arranging an anti-skid feature on the surface of the handle 20; and by arranging a sealing strip 21 at the opening and closing of the box door 2, the sealing performance of the box body 1 is improved to prevent a large amount of dust and water from entering, thereby ensuring the service life of the components inside the box body 1.
[0037] Embodiment 7, as attached Figure 1 As shown, the embodiment of the present invention discloses an energy-saving mobile data collection box, and further, downwardly inclined rain shielding strips 22 are arranged around the top outer edge of the box body 1. The rain shielding strips 22 of the present invention can reduce the impact of rainy days on the energy-saving mobile data collection box and ensure the stability of the front-end data collection and transmission.
[0038] Embodiment 8, as attached Figure 1 As shown, the embodiment of the present invention discloses an energy-saving mobile data collection box, and further, anti-rust paint is coated on the surface of the box body 1 and the box door 2. By coating the anti-rust paint, the box body 1 and the box door 2 are protected and the use time is increased.
[0039] The above technical features constitute the best embodiment of the present invention, which has strong adaptability and best implementation effect. Non-essential technical features can be added or reduced according to actual needs to meet the requirements of different situations.
Claims
1. An energy-saving mobile data collection box, characterized in that: It includes a box body, a mounting part is arranged on the outside of the rear side surface of the box body, a box door is hinged on the front end of the box body, a threading hole is arranged on the bottom of the box body, a winding rack is arranged at a position in front of the threading hole inside the box body, a solar charging panel is arranged on the outside of the top of the box body through a support, the solar charging panel is placed in an inclined state, a receiving and transmission unit and a dual-way power supply unit are arranged inside the box body, the dual-way power supply unit includes a solar cell group, a 220V power circuit breaker module and a power controller, the solar charging panel is connected to the solar cell group, the solar cell group and the 220V power circuit breaker module are both connected to the power controller, and the power controller is connected to the receiving and transmission unit.
2. The energy-saving mobile data acquisition box according to claim 1 is characterized in that: A mounting plate is arranged on the rear side surface inside the box body, and the receiving and transmitting unit, the solar cell group, the 220V power circuit breaker module and the power controller can be detachably mounted on the mounting plate.
3. The energy-saving mobile data acquisition box according to claim 2 is characterized in that: The mounting plate is fixedly mounted on the rear side surface of the box body by a plurality of bolts.
4. The energy-saving mobile data acquisition box according to claim 1, 2 or 3, characterized in that: The receiving and transmitting unit comprises a wireless instrument collection network management module and a 4G CPE module, the power controller is connected to the wireless instrument collection network management module and the 4G CPE module respectively, and the wireless instrument collection network management module is connected to the 4G CPE module.
5. The energy-saving mobile data acquisition box according to claim 1, 2 or 3, characterized in that: The 220V power circuit breaker module includes an external 220V power circuit breaker and an external 220V power socket. The external 220V power socket is connected to the external 220V power circuit breaker, and the external 220V power circuit breaker is connected to the power controller.
6. The energy-saving mobile data acquisition box according to claim 3 is characterized in that: The first terminal block and the second terminal block are both arranged on the mounting plate.
7. The energy-saving mobile data acquisition box according to any one of claims 1 to 6, characterized in that: A handle is arranged on the box door, a sealing strip is arranged at the opening and closing position of the box door, and anti-slip patterns are arranged on the surface of the handle.
8. The energy-saving mobile data acquisition box according to any one of claims 1 to 6, characterized in that: Rain shield strips inclined downwards are arranged around the outer edge of the top of the box body.
9. The energy-saving mobile data acquisition box according to any one of claims 1 to 6, characterized in that: The surfaces of the box body and the box door are coated with anti-rust paint.