CN114124253B - Method and system for detecting abnormal state of radio signal - Google Patents

Method and system for detecting abnormal state of radio signal Download PDF

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Publication number
CN114124253B
CN114124253B CN202111336140.2A CN202111336140A CN114124253B CN 114124253 B CN114124253 B CN 114124253B CN 202111336140 A CN202111336140 A CN 202111336140A CN 114124253 B CN114124253 B CN 114124253B
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China
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device body
plate
ventilation
radio signal
rack plate
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CN202111336140.2A
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CN114124253A (en
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夏波
王宾
王晓辉
姜蓉
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China Hui Construction Technology Co ltd
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China Hui Construction Technology Co ltd
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Priority to CN202111336140.2A priority Critical patent/CN114124253B/en
Publication of CN114124253A publication Critical patent/CN114124253A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B17/00Monitoring; Testing
    • H04B17/30Monitoring; Testing of propagation channels
    • H04B17/309Measuring or estimating channel quality parameters
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0213Venting apertures; Constructional details thereof

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  • Engineering & Computer Science (AREA)
  • Quality & Reliability (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The invention discloses a method and a system for detecting abnormal states of radio signals, which relate to the field of radio signal detection and comprise the following steps: the heat dissipation and ventilation mechanism comprises a ventilation cooling plate arranged on one side of the device body, ventilation filtering cotton is arranged in the ventilation cooling plate, a handle is arranged on the front surface of the ventilation cooling plate, a hinged rotating rod is arranged on one side of the ventilation cooling plate, a side ventilation opening is formed in one side of the device body, a soft pull rod is arranged on the lower surface of the ventilation cooling plate, a pull groove is formed in one side of the device body, a mounting block is arranged on the lower surface of the ventilation cooling plate, and a dust screen is arranged on one side of the mounting block. According to the invention, the heat dissipation and ventilation mechanism is arranged, the ventilation and heat dissipation plate is used for carrying out heat dissipation and ventilation on the device body, the ventilation and filtration cotton is used for adsorbing impurities entering the device body along with wind from the outside, the ventilation and heat dissipation plate is turned over, and the ventilation area of the device body is increased by the side ventilation opening.

Description

Method and system for detecting abnormal state of radio signal
Technical Field
The invention relates to the field of radio signal detection, in particular to a method and a system for detecting abnormal states of a radio signal.
Background
Along with the development of science and technology, information exchange and transmission are not needed to be carried out face to face, and radio communication is a communication mode that electric signals such as sound, words, data and images to be transmitted are modulated on radio waves and transmitted to the other side through space and ground, so that the communication mode is a novel communication mode that information is transmitted in space by using radio electromagnetic waves, and the information transmission mode is convenient and fast for daily life of people.
When radio communication is used, information transmission failure occurs, at this time, the radio signal is abnormal, the transmitted information is terminated and a transmitter cannot transmit, the information transmission depends on whether the radio signal can be normally used for data transmission, and when the signal is abnormal, adjustment and detection are needed in time, so that a method and a system for detecting abnormal state of the radio signal are needed to detect the radio signal.
According to the existing radio signal abnormal state detection method and system, when external signal transmission equipment is connected, connection looseness of a data connecting wire is easy to occur at a connecting port, the detection device can be influenced to judge and detect abnormal signals transmitted by the signal transmission equipment when the connection looseness occurs, the detection device cannot conduct multi-position heat dissipation and ventilation after long-time detection, the high-temperature detection operation detection device is easy to damage, the detection device cannot work for a long time when a power socket is not provided when the detection device is out of use, the process and the detection accuracy of radio signal detection are influenced, dust is easily accumulated when a data display screen is exposed for a long time, and the data displayed by the data display screen is influenced to be watched by detection personnel.
Disclosure of Invention
The invention aims at: in order to solve the problems that when external signal transmission equipment is connected, a data connecting wire is easy to generate connection looseness in a connecting port, a detection device can be influenced to judge and detect abnormal signals transmitted by the signal transmission equipment when the connection looseness occurs, the detection device is too high in temperature to enable multi-position heat dissipation and ventilation to be achieved after long-time detection, the high-temperature detection operation detection device is easy to damage, the detection device cannot work for a long time when a power socket is not provided when the detection device is used outdoors, the process and the detection accuracy of radio signal detection are influenced, dust is easy to accumulate due to long-time exposure of a data display screen, and data displayed by the data display screen is influenced to be watched by detection staff, the detection method and the detection system for the radio signal abnormal state are provided.
In order to achieve the above purpose, the present invention provides the following technical solutions: a method for detecting abnormal state of radio signal includes setting heat dissipation and ventilation mechanism at one side of device body, setting heat dissipation and ventilation mechanism at one side of device body and including ventilation heat dissipation plate set at one side of device body, setting ventilation filter cotton at internal installation of ventilation heat dissipation plate, setting handle at front surface of ventilation heat dissipation plate, setting hinged rotary rod at one side of ventilation heat dissipation plate, setting side ventilation opening at one side of device body, setting soft pull rod at lower surface of ventilation heat dissipation plate, setting pull slot at one side of device body, setting installation block at lower surface of ventilation heat dissipation plate, setting dust screen at one side of installation block, setting connecting rod at one end of soft pull rod, setting L-shaped rack at one end of connecting rod, setting slide block at one side of L-shaped rack, setting plate through slot at upper surface of device body, setting plate slide slot at inner wall of plate through slot, setting upper ventilation opening at upper surface of device body, setting dust screen at internal installation of upper ventilation opening, setting sealing plate at one end of L-shaped rack.
As still further aspects of the invention: the supporting unit is arranged in the device body, the supporting unit comprises a gear arranged on one side of an L-shaped rack plate in a meshed mode, the rack plate is arranged on one side of the gear in a meshed mode, supporting feet are arranged at the lower end of the rack plate, and a standby power supply placing plate is arranged on one side of the rack plate.
As still further aspects of the invention: the drive unit is arranged on the front surface of the device body, the drive unit comprises a power interface arranged on the front surface of the device body, a data display screen is arranged on the front surface of the device body, a debugging button is arranged at the lower end of the data display screen, and a drive button is arranged on one side of the data display screen.
As still further aspects of the invention: the limiting unit is arranged on the rear surface of the device body, the limiting unit comprises a signal equipment connecting port arranged on the rear surface of the device body, a rotating nut is arranged at the bottom end of the signal equipment connecting port, a rotating gear is arranged at one end of the rotating nut, a first movable rack plate is meshed and arranged on one side of the rotating gear, a first arc-shaped limiting block is arranged at one end of the first movable rack plate, a second movable rack plate is meshed and arranged on the other side of the rotating gear, and a second arc-shaped limiting block is arranged at one end of the second movable rack plate.
As still further aspects of the invention: the lower surface inside the signal equipment connector is provided with a movable plate groove, and the opening size of the movable plate groove is matched with the first movable rack plate and the second movable rack plate.
As still further aspects of the invention: the cleaning unit comprises a sliding plate groove arranged on the upper surface of the device body, a sliding plate is arranged in the sliding plate groove, a handle is arranged on the upper surface of the sliding plate, and a cleaning brush is arranged on one side of the sliding plate.
As still further aspects of the invention: the buffer unit is arranged on the rear surface of the device body, the buffer unit comprises compression springs arranged on the rear surface of the device body, an anti-abrasion round block is arranged at one end of each compression spring, an anti-collision buffer plate is arranged at one end of each anti-abrasion round block, a plurality of groups of compression springs are arranged, and a plurality of groups of anti-abrasion round blocks are arranged.
As still further aspects of the invention: the number of the signal equipment connectors is two, and the number of the L-shaped rack plates is one.
As still further aspects of the invention: the detection method is based on the system of any one of claims 1-8, comprising the steps of:
s1: when in use, a power line of the radio signal transmission equipment is connected into a signal equipment connector formed on the rear surface of the device body, the rotating nut is rotated to drive the rotating gear with one end installed to rotate, and the rotating gear drives the first movable rack plate and the first arc-shaped limiting block which are installed on one side of the outer surface in a meshed manner to clamp one side of the connecting line
S2: the rotary gear drives the other side of the outer surface to be meshed with a second movable rack plate and a second arc limiting block which are arranged on the other side of the connecting line to clamp the other side of the connecting line,
s3: after the radio signal is obtained, the data display screen arranged on the front surface of the device body displays the state of the radio signal, the data are debugged and detected through the debugging button and the driving button, and the detected result is displayed through the data display screen again, so that the final abnormal detection state of the radio signal is obtained.
S4: the ventilation heating panel that one side was installed when the high temperature required heat dissipation ventilation after detection device used for a long time dispels the heat and ventilates the device body, and ventilation filter cotton adsorbs outside along with the impurity of wind entering device body inside.
S5: when the heat dissipation is slower, pulling handle overturns ventilation heating panel through articulated bull stick and soft pull rod, and the side vent improves the area that the device body ventilates, and the dust screen separates the dust that gets into the inside device body and keeps off.
S6: the connecting rod that drives one end installation when soft pull rod pulling works, and the pull rod drives L type rack board and upwards slides in the board spout of seting up at the device body upper surface through the slider, and L type rack board drives the closing plate and breaks away from the inside of the device body, and the last vent exposes, and dustproof otter board separates the dust of upper end and keeps off.
S7: the L-shaped rack plate drives a gear arranged on one side of the rack surface in a meshed manner to rotate in the ascending process, the gear rotates to drive the rack plate arranged on one side in a meshed manner to move downwards, and the rack plate moves downwards to support the device body in a contact manner.
S8: when the electric quantity of the detection device is insufficient after long-time use, the standby power supply placed at the upper end of the standby power supply placement plate is connected with the power supply interface to form a continuous voyage for the detection device, the handle is pulled to drive the sliding plate to slide in the sliding plate groove, and the cleaning brush arranged on one side of the sliding plate is used for cleaning dust on the data display screen.
Compared with the prior art, the invention has the beneficial effects that:
1. through setting up the heat dissipation ventilation mechanism, ventilation heating panel carries out the heat dissipation ventilation to the device body, ventilation filter cotton adsorbs outside along with the impurity of wind entering device body inside, overturn ventilation heating panel, the side vent improves the area that the device body was ventilated, the dust screen separates the dust that gets into the device body inside, guarantee the quality of device body inside, avoid the dust to get into the device body inside and lead to the part ageing influence use of device body inside, drive L type rack board and upwards slide in the board spout when soft pull rod pulling, L type rack board drives the closing plate and breaks away from the inside of device body, it exposes further improvement radiating efficiency to go up the vent, dust screen separates the dust of upper end and keeps off;
2. the L-shaped rack plate moves downwards in the rising process by arranging the supporting unit and the driving unit, the rack plate moves downwards to support the device body in contact with the supporting legs, the placement stability of the device body is improved, the standby power supply placed at the upper end of the standby power supply placement plate is connected with the power supply interface to be a detection device for continuous voyage, the process of detecting the radio signal is prevented from being delayed due to insufficient electric quantity of the detection device, the accuracy of detecting the radio signal is improved, the state of the radio signal is displayed by the data display screen, the data is debugged and detected by the debugging button and the driving button, the detected result is displayed by the data display screen again, and the final abnormal detection state of the radio signal is obtained;
3. through setting up spacing unit and clearance unit, first removal rack board and first arc stopper are with one side centre gripping of connecting wire, and second removal rack board and second arc stopper are to the opposite side centre gripping of connecting wire, guarantee the fastness that detection device and outside radio signal equipment are connected, avoid the connecting wire to connect and take place not hard up detection device and can not obtain the signal state of radio signal equipment, and the clearance brush is erased data display screen dust, avoids data display screen dust to collect more influence the inspection of detection personnel to radio signal testing result.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic diagram of a ventilating and heat dissipating plate according to the present invention;
FIG. 3 is a schematic view of an L-shaped rack plate connection mounting structure of the present invention;
FIG. 4 is a schematic view of the rear surface structure of the present invention;
fig. 5 is a schematic diagram of the internal structure of a signal device connection port according to the present invention;
FIG. 6 is a schematic view of a sliding plate mounting structure of the present invention;
FIG. 7 is a flow chart of the present invention.
In the figure: 1. a device body; 2. a ventilation heat dissipation plate; 3. ventilating and filtering cotton; 4. a handle; 5. a rotating rod is hinged; 6. a side vent; 7. a soft pull rod; 8. drawing a groove; 9. a mounting block; 10. a dust screen; 11. a connecting rod; 12. l-shaped rack plate; 13. a slide block; 14. a plate through groove; 15. a plate chute; 16. a sealing plate; 17. an upper vent; 18. a dust-proof screen; 19. a gear; 20. rack plate; 21. supporting feet; 22. a standby power supply placing plate; 23. a power interface; 24. a data display screen; 25. a debug button; 26. a drive button; 27. a signal device connection port; 28. rotating the nut; 29. a rotary gear; 30. a first movable rack plate; 31. the first arc limiting block; 32. a second movable rack plate; 33. the second arc limiting block; 34. a handle; 35. a sliding plate; 36. a slide plate groove; 37. cleaning brushes; 38. a compression spring; 39. anti-abrasion round blocks; 40. and an anti-collision buffer plate.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
In the description of the present invention, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present invention and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. In the description of the present invention, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "configured" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present invention will be understood in specific cases by those of ordinary skill in the art. Hereinafter, an embodiment of the present invention will be described in accordance with its entire structure.
Referring to fig. 1 to 6, in the embodiment of the present invention, a method and a system for detecting abnormal state of a radio signal, a heat dissipation and ventilation mechanism is provided at one side of a device body 1, the heat dissipation and ventilation mechanism includes a ventilation cooling plate 2 provided at one side of the device body 1, ventilation filtering cotton 3 is installed inside the ventilation cooling plate 2, a handle 4 is installed at a front surface of the ventilation cooling plate 2, a hinge rotating rod 5 is installed at one side of the ventilation cooling plate 2, a side ventilation opening 6 is provided at one side of the device body 1, a soft pull rod 7 is installed at a lower surface of the ventilation cooling plate 2, a pull groove 8 is provided at one side of the device body 1, a mounting block 9 is installed at a lower surface of the ventilation cooling plate 2, a dust screen 10 is installed at one side of the mounting block 9, a connecting rod 11 is installed at one end of the soft pull rod 7, an L-shaped rack plate 12 is installed at one end of the connecting rod 11, a slider 13 is installed at one side of the L-shaped rack plate 12, the upper surface of the device body 1 is provided with a plate through groove 14, the inner wall of the plate through groove 14 is provided with a plate sliding groove 15, the upper surface of the device body 1 is provided with an upper vent 17, the inside of the upper vent 17 is provided with a dustproof screen plate 18, one end of the L-shaped rack plate 12 is provided with a sealing plate 16, the device body 1 is radiated and ventilated by the ventilating and radiating plate 2, the ventilating and filtering cotton 3 adsorbs impurities entering the device body 1 from the outside along with wind, when the heat radiation is slower, the handle 4 is pulled to overturn the ventilating and radiating plate 2 through the hinged rotating rod 5 and the soft pull rod 7, the side vent 6 improves the ventilation area of the device body 1, the dustproof screen 10 separates dust entering the device body 1, the quality of the device body 1 is ensured, the part inside the device body 1 is prevented from being aged and influencing the use by the dust, the soft pull rod 7 is pulled and simultaneously drives the connecting rod 11 with one end installed to work, the pull rod 11 drives the L-shaped rack plate 12 to slide upwards in a plate chute 15 formed in the upper surface of the device body 1 through the sliding block 13, the L-shaped rack plate 12 drives the sealing plate 16 to be separated from the inside of the device body 1, the upper vent 17 is exposed, the heat dissipation efficiency is further improved, and the dust screen 18 is used for blocking dust at the upper end.
Referring to fig. 3, a supporting unit is disposed in the device body 1, and the supporting unit includes a gear 19 disposed on one side of the L-shaped rack plate 12 and engaged with the gear 19, a rack plate 20 engaged with one side of the gear 19, a supporting leg 21 mounted on the lower end of the rack plate 20, and a standby power supply placing plate 22 mounted on one side of the rack plate 20.
As a preferred embodiment of the present solution: the L-shaped rack plate 12 drives a gear 19 mounted on one side of a rack surface in a meshing manner to rotate in the ascending process, the gear 19 rotates to drive a rack plate 20 mounted on one side of the rack surface in a meshing manner to move downwards, a supporting leg 21 is moved downwards to support the device body 1 in a contact manner, stability of placing the device body 1 is improved, meanwhile, when the detection device is used for a long time, after the electric quantity is insufficient, a standby power supply placed at the upper end of a standby power supply placing plate 22 is utilized to be connected with a power supply interface 23 for the duration of the detection device, the situation that the detection device is insufficient in electric quantity and delays the process of detecting radio signals is avoided, and accuracy of detecting the radio signals is improved.
Referring to fig. 1 and 7, a driving unit is disposed on a front surface of the device body 1, the driving unit includes a power interface 23 disposed on the front surface of the device body 1, a data display screen 24 is mounted on the front surface of the device body 1, a debug button 25 is mounted on a lower end of the data display screen 24, and a driving button 26 is mounted on one side of the data display screen 24.
As a preferred embodiment of the present solution: the data display screen 24 displays the state of the radio signal, the data is debugged and detected through the debugging button 25 and the driving button 26, and the detected result is displayed through the data display screen 24 again, so that the final abnormal detection state of the radio signal is obtained.
Referring to fig. 4, 5 and 7, the limiting unit is disposed on the rear surface of the device body 1, and the limiting unit includes a signal device connection port 27 disposed on the rear surface of the device body 1, a rotating nut 28 is installed at the bottom end of the signal device connection port 27, a rotating gear 29 is installed at one end of the rotating nut 28, a first moving rack plate 30 is installed on one side of the rotating gear 29 in a meshed manner, a first arc-shaped limiting block 31 is installed at one end of the first moving rack plate 30, a second moving rack plate 32 is installed on the other side of the rotating gear 29 in a meshed manner, and a second arc-shaped limiting block 33 is installed at one end of the second moving rack plate 32.
As a preferred embodiment of the present solution: the power cord of transmission radio signal equipment is connected into the signal equipment connector 27 that the device body 1 rear surface was seted up, rotate rotatory nut 28 and drive the rotatory gear 19 rotation of one end installation, rotatory gear 29 drives the first removal rack board 30 and the first arc stopper 31 of surface one side meshing installation and holds one side centre gripping of connecting wire, simultaneously rotatory gear 29 drives the second removal rack board 32 and the opposite side centre gripping of second arc stopper 33 to the connecting wire of surface opposite side meshing installation, guarantee the fastness that detection device and outside radio signal equipment are connected, avoid the connecting wire to connect and take place not hard up detection device can not obtain the signal state of radio signal equipment.
Referring to fig. 4, a moving rack is formed on the lower surface of the signal device connection port 27, and the moving rack is adapted to the first moving rack plate 30 and the second moving rack plate 32.
As a preferred embodiment of the present solution: the first arc-shaped limiting block 31 and the second arc-shaped limiting block 33 are convenient to slide to clamp the electric wires.
Referring to fig. 1 and 6, the cleaning unit includes a sliding plate slot 36 disposed on the upper surface of the device body 1, a sliding plate 35 is mounted in the sliding plate slot 36, a handle 34 is mounted on the upper surface of the sliding plate 35, and a cleaning brush 37 is mounted on one side of the sliding plate 35.
As a preferred embodiment of the present solution: pulling the handle 34 drives the sliding plate 35 to slide in the sliding plate groove 36, and the cleaning brush 37 arranged on one side of the sliding plate 35 erases dust on the data display screen 24, so that the dust accumulation on the data display screen 24 is avoided to influence the observation of detection personnel on the detection result of the radio signal.
Referring to fig. 4, the buffer unit is disposed on the rear surface of the device body 1, and the buffer unit includes a compression spring 38 disposed on the rear surface of the device body 1, an anti-wear round block 39 is mounted at one end of the compression spring 38, an anti-collision buffer plate 40 is mounted at one end of the anti-wear round block 39, a plurality of groups of compression springs 38 are provided, and a plurality of groups of anti-wear round blocks 39 are provided.
As a preferred embodiment of the present solution: the compression spring 38 and the anti-collision buffer plate 40 mounted on the rear surface of the device body 1 protect the device body 1 when toppling over, and the anti-collision round block 39 reduces damage caused by contact between the device body 1 and the ground, so that the service life of the device body 1 is prolonged.
Referring to fig. 3 and 4, the number of signal device connectors 27 is two, and the number of L-shaped rack plates 12 is one.
As a preferred embodiment of the present solution: two groups of signal equipment connectors 27 are arranged, so that the problem that transmission detection work of radio signals cannot be carried out when a single signal equipment connector 27 cannot be normally connected is avoided, and the L-shaped rack plate 12 is provided with a group of sealing plate 16 for improving the moving stability.
The working principle of the invention is as follows: when in use, a power line for transmitting radio signal equipment is connected into a signal equipment connecting port 27 formed on the rear surface of the device body 1, a rotating nut 28 is rotated to drive a rotating gear 19 arranged at one end to rotate, the rotating gear 29 drives a first movable rack plate 30 and a first arc-shaped limiting block 31 which are arranged on one side of the outer surface in a meshed manner to clamp one side of the connecting line, meanwhile, the rotating gear 29 drives a second movable rack plate 32 and a second arc-shaped limiting block 33 which are arranged on the other side of the outer surface in a meshed manner to clamp the other side of the connecting line, the connection firmness of the detection device and external radio signal equipment is ensured, the situation that the connection of the connecting line is loose and the detection device cannot obtain the signal state of the radio signal equipment is avoided, after a radio signal is obtained, data is displayed through a data display screen 24 formed on the front surface of the device body 1, the data are debugged and detected through the debugging button 25 and the driving button 26, the detected result is displayed through the data display screen 24 again, the final abnormal detection state of the radio signal is obtained, the ventilation cooling plate 2 arranged on one side of the device body 1 carries out heat dissipation and ventilation when the temperature is too high after the detection device is used for a long time and needs heat dissipation and ventilation, the ventilation filtering cotton 3 adsorbs impurities entering the device body 1 from the outside along with wind, when the heat dissipation is slower, the handle 4 is pulled to overturn the ventilation cooling plate 2 through the hinged rotating rod 5 and the soft pull rod 7, the ventilation area of the device body 1 is increased through the side ventilation opening 6, the dust screen 10 separates dust entering the device body 1, the quality of the device body 1 is ensured, the influence of the part inside the device body 1 caused by the dust entering the device body 1 is avoided, the connecting rod 11 arranged at one end is driven to work while the soft pull rod 7 is pulled, the pull rod 11 drives the L-shaped rack plate 12 to slide upwards in a plate chute 15 formed in the upper surface of the device body 1 through the sliding block 13, the L-shaped rack plate 12 drives the sealing plate 16 to separate from the interior of the device body 1, the upper vent 17 is exposed to further improve the radiating efficiency, the dust screen 18 separates dust at the upper end, the L-shaped rack plate 12 drives the gear 19 mounted on one side of the rack surface to rotate in the ascending process, the gear 19 rotates to drive the rack plate 20 mounted on one side to move downwards, the rack plate 20 moves downwards to support the device body 1 in a contact manner, the stability of the placement of the device body 1 is improved, meanwhile, when the detection device is used for a long time, the standby power supply arranged at the upper end of the standby power supply placing plate 22 is used for connecting the power interface 23 for the continuous navigation of the detection device, the process of radio signal detection is prevented from being delayed due to insufficient electric quantity of the detection device, the accuracy of radio signal detection is improved, the pulling handle 34 drives the sliding plate 35 to slide in the sliding plate 36, the cleaning brush 37 mounted on one side of the sliding plate 35 erases the data display screen 24, the dust is prevented from being accumulated on the side of the sliding plate 35, the dust display screen 24 is prevented from influencing more dust detection result, the dust is prevented from being accumulated on the sliding plate 35, the user is prevented from affecting the dust display screen 24, the quality is prevented from being more dust is prevented from being compressed, and the device body 1 is prevented from being compressed, and the device 1 is protected from being damaged by the device body 1, and the device is placed on the surface is protected by the buffer body 40.
The foregoing description is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical solution of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.

Claims (9)

1. The utility model provides a radio signal abnormal state detecting system, includes heat dissipation ventilation mechanism, its characterized in that, heat dissipation ventilation mechanism sets up in one side of device body (1), and heat dissipation ventilation mechanism is including setting up ventilation heating panel (2) in one side of device body (1), the internally mounted of ventilation heating panel (2) has ventilation filter cotton (3), and the front surface mounting of ventilation heating panel (2) has handle (4), articulated bull stick (5) are installed to one side of ventilation heating panel (2), side vent (6) have been seted up to one side of device body (1), soft pull rod (7) have been installed to the lower surface mounting of ventilation heating panel (2), draw groove (8) have been seted up to one side of device body (1), lower surface mounting of ventilation heating panel (2) has installation piece (9), and dust screen (10) are installed to one side of installation piece (9), connecting rod (11) are installed to one end of connecting rod (11), L type tooth slat (12) are installed to one side of L type rack slat (12), slider (13) are installed to one side of device body (1), the upper surface mounting of device (14) has seted up on the surface mounting groove (14) has been seted up on the device body (14), the dustproof screen plate (18) is arranged in the upper vent (17), and a sealing plate (16) is arranged at one end of the L-shaped rack plate (12).
2. The system for detecting abnormal state of radio signal according to claim 1, wherein the supporting unit is arranged in the device body (1), the supporting unit comprises a gear (19) arranged on one side of the L-shaped rack plate (12) in a meshed manner, a rack plate (20) is arranged on one side of the gear (19) in a meshed manner, supporting feet (21) are arranged at the lower end of the rack plate (20), and a standby power supply placing plate (22) is arranged on one side of the rack plate (20).
3. The system for detecting abnormal state of radio signal according to claim 1, wherein the driving unit is arranged on the front surface of the device body (1), the driving unit comprises a power interface (23) arranged on the front surface of the device body (1), a data display screen (24) is arranged on the front surface of the device body (1), a debugging button (25) is arranged at the lower end of the data display screen (24), and a driving button (26) is arranged on one side of the data display screen (24).
4. The system for detecting abnormal states of radio signals according to claim 1, wherein the limiting unit is arranged on the rear surface of the device body (1), the limiting unit comprises a signal equipment connecting port (27) arranged on the rear surface of the device body (1), a rotating nut (28) is arranged at the bottom end of the signal equipment connecting port (27), a rotating gear (29) is arranged at one end of the rotating nut (28), a first movable rack plate (30) is arranged at one side of the rotating gear (29) in a meshed mode, a first arc-shaped limiting block (31) is arranged at one end of the first movable rack plate (30), a second movable rack plate (32) is arranged at the other side of the rotating gear (29) in a meshed mode, and a second arc-shaped limiting block (33) is arranged at one end of the second movable rack plate (32).
5. A radio signal abnormal state detection system according to claim 1, wherein a moving plate groove is provided on the lower surface inside the signal device connection port (27), and the opening size of the moving plate groove is adapted to the first moving rack plate (30) and the second moving rack plate (32).
6. The system according to claim 1, wherein the cleaning unit comprises a slide plate groove (36) arranged on the upper surface of the device body (1), a slide plate (35) is arranged in the slide plate groove (36), a handle (34) is arranged on the upper surface of the slide plate (35), and a cleaning brush (37) is arranged on one side of the slide plate (35).
7. The system for detecting abnormal states of radio signals according to claim 1, wherein the buffer unit is arranged on the rear surface of the device body (1), the buffer unit comprises compression springs (38) arranged on the rear surface of the device body (1), an anti-abrasion round block (39) is arranged at one end of each compression spring (38), an anti-collision buffer plate (40) is arranged at one end of each anti-abrasion round block (39), a plurality of groups of compression springs (38) are arranged, and a plurality of groups of anti-abrasion round blocks (39) are arranged.
8. A radio signal abnormal state detection system according to claim 1, wherein the number of signal device connection ports (27) is two, and the number of L-shaped rack plates (12) is one.
9. A method for detecting abnormal states of a radio signal, characterized in that the method is based on the system of any one of claims 1-8, comprising the steps of:
s1: when the device is used, a power line of radio signal transmission equipment is connected into a signal equipment connecting port (27) formed in the rear surface of the device body (1), a rotating nut (28) is rotated to drive a rotating gear (19) arranged at one end to rotate, and the rotating gear (29) drives a first movable rack plate (30) and a first arc-shaped limiting block (31) which are arranged on one side of the outer surface in a meshed manner to clamp one side of the connecting line;
s2: the rotary gear (29) drives the second movable rack plate (32) and the second arc limiting block (33) which are arranged on the other side of the outer surface in a meshed manner to clamp the other side of the connecting line;
s3: after the radio signal is obtained, the data display screen (24) arranged on the front surface of the device body (1) displays the state of the radio signal, the debugging button (25) and the driving button (26) are used for debugging and detecting the data, and the detected result is displayed again through the data display screen (24) to obtain the final abnormal detection state of the radio signal;
s4: a ventilation cooling plate (2) arranged on one side of the detection device for cooling and ventilating the device body (1) when the temperature is too high after the detection device is used for a long time, and ventilation filter cotton (3) adsorbs impurities entering the device body (1) from outside along with wind;
s5: when the heat dissipation is slower, the handle (4) is pulled to turn over the ventilation heat dissipation plate (2) through the hinged rotating rod (5) and the soft pull rod (7), the side ventilation opening (6) improves the ventilation area of the device body (1), and the dust screen (10) separates dust entering the device body (1);
s6: the soft pull rod (7) pulls and drives a connecting rod (11) arranged at one end to work, the pull rod (11) drives an L-shaped rack plate (12) to slide upwards in a plate chute (15) formed in the upper surface of the device body (1) through a sliding block (13), the L-shaped rack plate (12) drives a sealing plate (16) to be separated from the inside of the device body (1), an upper vent (17) is exposed, and a dust screen (18) is used for blocking dust at the upper end;
s7: the L-shaped rack plate (12) drives a gear (19) arranged on one side of a rack surface in a meshed manner to rotate in the ascending process, the gear (19) rotates to drive a rack plate (20) arranged on one side in a meshed manner to move downwards, and a supporting leg (21) moves downwards to contact and support the device body (1);
s8: when the electric quantity of the detection device is insufficient after long-time use, a standby power supply placed at the upper end of the standby power supply placement plate (22) is connected with a power supply interface (23) to be used for the duration of the detection device, the pull handle (34) is pulled to drive the sliding plate (35) to slide in the sliding plate groove (36), and a cleaning brush (37) arranged on one side of the sliding plate (35) is used for erasing dust on the data display screen (24).
CN202111336140.2A 2021-11-12 2021-11-12 Method and system for detecting abnormal state of radio signal Active CN114124253B (en)

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Publication number Priority date Publication date Assignee Title
CN115208034B (en) * 2022-09-17 2022-12-23 国铁吉讯科技有限公司 An intelligent charging cabinet for a multi-screen advertising disinfection robot
CN116600549A (en) * 2023-06-20 2023-08-15 福建国遁网络科技有限公司 A device and method for automatic identification, detection and early warning based on wireless signal characteristics

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