CN210563740U - Intelligent electric power operation fence device capable of preventing operators from electric shock - Google Patents

Intelligent electric power operation fence device capable of preventing operators from electric shock Download PDF

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Publication number
CN210563740U
CN210563740U CN201921058283.XU CN201921058283U CN210563740U CN 210563740 U CN210563740 U CN 210563740U CN 201921058283 U CN201921058283 U CN 201921058283U CN 210563740 U CN210563740 U CN 210563740U
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CN
China
Prior art keywords
module
stand
cross
cavity
fence
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Expired - Fee Related
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CN201921058283.XU
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Chinese (zh)
Inventor
彭情
岑斌
杨金海
赖伟聪
岑家娟
潘元忠
施华
黄蕊怡
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Guangxi College of Water Resources and Electric Power
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Guangxi College of Water Resources and Electric Power
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Priority to CN201921058283.XU priority Critical patent/CN210563740U/en
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Abstract

The utility model discloses a prevent intelligent electric power operation rail device of operation personnel electric shock, safety work rail monitored control system includes electronic monitoring unit and two or three above stands, all the stand concatenates each other and puts wantonly and surround the setting and enclose into a warning area, and is adjacent be provided with warning area between the stand, adjacent concatenate each other through warning area between the stand, the bottom of stand is provided with the supporting seat, the stand is hollow structure and open-top, and this hollow structure forms the cavity, just is close to the top department setting of stand in the cavity of every stand the electronic monitoring unit is provided with a roll fence box on the top of stand, the bottom of roll fence box is followed the vertical cavity that inserts of open-top of stand. The utility model discloses can remind and report to the police fast, play powerful guarantee effect to the operation personnel safety at scene, alleviate staff's burden, and then improve work efficiency.

Description

Intelligent electric power operation fence device capable of preventing operators from electric shock
Technical Field
The utility model belongs to the technical field of safety protection operation equipment, in particular to prevent intelligent electric power operation rail device that operation personnel electrocute.
Background
The safety fence is required to be arranged on the power supply construction, high-voltage test or maintenance of the power equipment and other sites, particularly sites with numerous personnel, complex types of workers and many cross operations, the maintenance equipment and the non-maintenance equipment are isolated, the working site is defined, the mistaken entering of a charged interval and the mistaken touch of the charged equipment are prevented, and therefore the idle and miscellaneous personnel are isolated, and the personnel are prevented from approaching dangerous areas such as high-voltage charged parts. The current electric fence mainly adopts a non-fixed temporary fence as an operation site for overhauling equipment. However, the traditional electric fence only has a simple isolation effect, so that an operator can mistakenly enter an electrified area when overhauling equipment, the overhauling process is extremely dangerous, and the electric fence is full of potential safety hazards of electric shock for the operator.
Therefore, need study a novel prevent that operation personnel touches safe fence monitoring system of electric type, so that this technological problem of light solution, prevent that operation personnel from touching the position that electric type safe fence monitoring system can monitor operation personnel, and when operation personnel mistake into electrified region or will touch electrified equipment carrying out the during operation, can send out the police dispatch newspaper at once, remind the staff, reduce the danger that operation personnel touched the electric shock, guarantee operation personnel's life safety, avoid the emergence of personal injury accident.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is not enough to prior art exists, provides an intelligent electric power operation rail device of preventing operation personnel electric shock, according to the utility model discloses a rail device can carry out quick warning and report to the police, plays powerful guarantee effect to the operation personnel safety at scene, has alleviateed staff's burden, and then has improved work efficiency. In order to realize the purpose, the utility model discloses a technical scheme as follows:
according to one aspect of the utility model, an intelligent electric power operation fence device for preventing operators from electric shock is provided, the safety operation fence monitoring system comprises an electronic monitoring unit and two or more than three upright posts, wherein all the upright posts are mutually connected in series and are randomly placed and surrounded to form a warning area, a warning belt is arranged between the adjacent upright posts, the adjacent upright posts are mutually connected in series through the warning belt, a supporting seat is arranged at the bottom end of each upright post, each upright post is of a hollow structure and is provided with an opening at the top end, the hollow structure forms a hollow cavity, the electronic monitoring unit is arranged in the hollow cavity of each upright column and close to the top end of the upright column, the top end of the upright post is provided with a rolling column box, the bottom of the rolling column box is vertically inserted into the hollow cavity from the opening at the top end of the upright post, and the bottom of the rolling column box is positioned at the upper part of the electronic monitoring unit.
According to a further preferred embodiment of the above technical scheme, the electronic monitoring unit comprises a support frame, and a transmitting module, a receiving module, a monitoring control module and a direct current power supply which are fixed on the support frame, wherein the support frame is placed into the hollow cavity from the top end of the stand column, the rolling column box is inserted from the top end of the stand column and is abutted against the top of the support frame, the receiving module is electrically connected with the monitoring control module, and the power supply end of the monitoring control module, the power supply end of the transmitting module and the power supply end of the receiving module are respectively electrically connected with the power output end of the direct current power supply.
According to a further preferred embodiment of the above scheme, the support frame comprises a support cylinder, an upper cross-shaped support plate and a lower cross-shaped support plate, the upper cross-shaped support plate and the lower cross-shaped support plate are both in a cross shape, the center of the upper cross-shaped support plate is horizontally and fixedly arranged at the upper cylinder opening of the support cylinder, the center of the lower cross-shaped support plate is horizontally and fixedly arranged at the lower cylinder opening of the support cylinder, and the upper cross-shaped support plate and the lower cross-shaped support plate are parallel to each other and are arranged just opposite; the inside of a supporting cylinder is divided into an upper cavity and a lower cavity, the monitoring control module is arranged in the upper cavity, and the direct-current power supply is arranged in the lower cavity.
The scheme is further preferred, be provided with first bracing piece, second bracing piece between two tip of going up the cross backup pad and two tip of cross backup pad down, this first bracing piece and second bracing piece are located the both sides of a support section of thick bamboo respectively and are vertical level setting go up the cross backup pad and cross backup pad down between set up a set of respectively on the first bracing piece the emission module set up a set of respectively on the second bracing piece the receiving module.
The above scheme is further preferred, the inner wall of the hollow cavity of the upright post is at least provided with a clamping groove which is symmetrical along the axis direction and the center, and the two opposite ends of the upper cross-shaped supporting plate and the two opposite ends of the lower cross-shaped supporting plate are correspondingly clamped in the clamping groove respectively.
In a further preferred embodiment of the above scheme, the first support rods are respectively sleeved with a rotatable first support block, the second support rods are respectively sleeved with a rotatable second support block, the side walls near the upper and lower ends of the first support block are provided with first through holes, the side walls near the upper and lower ends of the second support block are respectively provided with second through holes, the first through holes are provided with the transmitting modules, and the second through holes are provided with the receiving modules.
The above scheme is further preferred, the cross-shaped supporting plate is provided with screw holes on the cross-shaped supporting plate and the cross-shaped supporting plate respectively.
Preferably, the monitoring control module comprises a microcontroller, a first bluetooth communication module and a buzzer, and the transmitting module, the first bluetooth communication module and the buzzer are respectively connected with the microcontroller.
Above-mentioned scheme is further preferred, is provided with the connecting piece on the lateral wall of roll column box, and this connecting piece is couple or inserting groove.
To sum up, the utility model discloses owing to adopted above technical scheme, the utility model discloses have as follows showing the effect:
(1) the utility model discloses a rail device has the function of crossing over the warning, can realize detecting the safety of operation personnel, when someone crossed over the rail, the infrared correlation signal that the emission module sent was sheltered from and is interrupted, and infrared signal can not be received to the receiving module, then electronic monitoring unit sends signal immediately and sends alarm signal for intelligent receiving unit, and electronic monitoring unit sends signal to the bluetooth module of intelligent receiving unit through bluetooth module, and intelligent receiving unit receives the signal and immediately sends voice alarm; therefore, no electric shock hazard of operators is guaranteed, when the operators cross, the system can rapidly remind and alarm, the safety of the operators on site is powerfully guaranteed, the burden of the operators is reduced, and the working efficiency is improved.
(2) The utility model discloses not only can dismantle, conveniently carry and aim at the convenience, improved work efficiency, moreover the invention has audible alarm's function, prevents effectively that personnel from passing through security fence, effectively reduces personnel and misses the operation danger, has improved the safety protection to electrified region, ensures operation personnel's safety better, can extensively be used for setting up security fence and keep apart scene, transformer substation's maintenance, experiment and job site with maintenance equipment and non-maintenance equipment.
Drawings
In order to illustrate the embodiments of the present invention or the technical solutions in the prior art more clearly, the drawings required in the description of the embodiments or the prior art will be briefly introduced below, it is obvious that the drawings in the following description are only some examples of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive step.
Fig. 1 is a schematic structural diagram of a fence monitoring system for electric power safety operation according to the present invention;
FIG. 2 is a schematic structural view of a warning area defined by a plurality of mutually arranged columns;
fig. 3 is a schematic structural diagram of the stand column of the present invention;
fig. 4 is a schematic structural view of a first embodiment of the support frame of the present invention;
fig. 5 is a schematic structural view of the support cylinder of the present invention;
fig. 6 is a schematic top view of the structure relationship between the upright post and the supporting frame of the present invention;
FIG. 7 is a schematic structural view of a second embodiment of the supporting frame of the present invention
Fig. 8 is a schematic structural diagram of the communication between the electronic monitoring unit and the intelligent receiving unit;
fig. 9 is a schematic diagram of a monitoring circuit of the monitoring control module of the present invention;
fig. 10 is a schematic circuit diagram of the smart receiving unit of the present invention;
in the drawing, a vertical column 1, a warning belt 2, a supporting seat 3, an electronic monitoring unit 4, a rolling bar box 5, an intelligent receiving unit 6, a clamping groove 10, a connecting buckle 20, a connecting piece 50, an inserting rod 51, a bolt 52, a supporting frame 40, a transmitting module 41, a receiving module 42, a monitoring control module 43, a direct current power supply 44, a receiving controller 60, a second bluetooth communication module 61, an alarm unit 62, a display unit 63, a warning area 100, a supporting cylinder 400, an upper cavity 400a, a lower cavity 400b, an upper cross-shaped supporting plate 401, a lower cross-shaped supporting plate 402, a first supporting rod 403, a first supporting block 403a, a first through hole 403b, a second supporting rod 404, a second supporting block 404a, a second through hole 404b, a screw hole 412, a microcontroller 430, a first bluetooth communication module 431 and a buzzer 432.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the examples of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1, fig. 2 and fig. 3, according to the utility model, the fence monitoring system for intelligent electric power operation for preventing electric shock of the operator comprises an electronic monitoring unit (4) and two or more than three columns 1, all the columns 1 are connected in series and are placed freely to surround and enclose a warning area 100, a warning belt 2 is arranged between adjacent columns 1, adjacent columns 1 are connected in series through the warning belt 2, the bottom end of each column 1 is provided with a supporting base 3, the column 1 is a hollow structure and has an open top, the hollow structure forms a hollow cavity, the electronic monitoring unit 4 is arranged in the hollow cavity of each column 1 and close to the top end of the column 1, a rolling box 5 is arranged at the top end of the column 1, the bottom of the rolling box 5 is vertically inserted into the hollow cavity from the open top end of the column 1, the bottom of the scroll box 5 is located at the upper part of the electronic monitoring unit 4, in the utility model, the bottom of the scroll box 5 is provided with an inserting rod 51, the top of the upright post 1 is provided with an inserting hole and communicated with the hollow cavity, the inserting rod 51 is vertically inserted into the hollow cavity of the upright post 1 through the opening at the top end of the upright post 1, and the inserting rod 51 is located at the upper part of the electronic monitoring unit 4, so that the scroll box 5 can be detachably inserted into the hollow cavity at the top end of the upright post 1; warning area 2 sets up in rolling up fence box 5, warning area 2 can set to the fluorescence area, has improved warning more striking. The outer side wall of the rolling column box 5 is provided with a connecting piece 50, the rolling column box 5 adopts the existing structure, a coil spring and a rotating shaft are mainly arranged in the rolling column box 5, the coil spring is connected with one end of a warning belt 2, the other end of the warning belt 2 extends out of the rolling column box 5 and is provided with a connecting buckle 20, after the warning belt 2 is pulled out of the rolling column box 5 and extends, the connecting buckle 20 (or a plug-in component) on the warning belt 2 is connected with the connecting piece 50 (a hanging piece, a hook or a plug-in groove) on the adjacent upright posts 1 in series, so that the warning belts 2 on a plurality of upright posts 1 are repeatedly connected in series with each other and are arranged to form a warning area 100 according to needs, the utility model adopts 4 upright posts 1 to be connected with each other to form the warning area 100, an operator can carry out safe operation in the warning area, an electronic monitoring unit 4 monitors whether a person crosses over the warning belt to enter the warning area 100, in order to remotely monitor whether a person crosses the fence in the fence device, the electronic monitoring unit 4 can immediately send an alarm and send the monitored signal to the intelligent receiving unit 6 for remote alarm, so that a worker is reminded, and the risk of electric shock of the worker is reduced. The life safety of the operating personnel is guaranteed.
In the present invention, as shown in fig. 4 and 5, the electronic monitoring unit 4 includes a supporting frame 40, a transmitting module 41 fixed on the supporting frame 40, a receiving module 42, a monitoring control module 43, and a dc power supply 44, the supporting frame 40 is inserted into the hollow cavity from the top end of the upright 1, the rolling bar box 5 is inserted from the top end of the upright 1 and is abutted against the top of the supporting frame 40, and the receiving module 42 is electrically connected to the monitoring control module 43; as shown in fig. 6, the power end of the monitoring control module 43, the power end of the emitting module 41, and the power end of the receiving module 42 are electrically connected to the power output end of the dc power supply 44, respectively, because a circular insertion rod 51 is disposed at the lower end of the rolling box 5, the rolling box 5 is inserted into the upper end of the supporting frame 40 from the top end of the upright post 1 through the insertion rod 51, the supporting frame 40, the emitting module 41, the receiving module 42, the monitoring control module 43, and the dc power supply 44 fixed on the supporting frame 40 are first placed into the hollow cavity from the top end of the upright post 1, angles of the emitting module 41 and the receiving module 42 are adjusted to align to the corresponding upright posts 1, the insertion rod 51 is then inserted into the upper end of the supporting frame 40 from the top end of the upright post 1, and the insertion rod 51 is kept in contact or abutting contact with the top surface of the supporting frame 40, and then the bolt 52 penetrates through the top end sidewall of the upright The hollow cavity is internally provided, so that the coil fence box 5 is stably fixed at the top end of the upright post 1; when the power is turned on by a start switch (not shown) on the upright 1, the transmitting module 41 continuously transmits a signal (infrared signal or laser) to the adjacent upright 1 and receives a signal (infrared signal or laser signal) at the same time, the receiving module 42 can receive the signal sent by the adjacent upright 1, which indicates that no one crosses the warning band 2 and enters the warning area 100, and if the receiving module 42 cannot receive the signal sent by the adjacent upright 1, the monitoring control module 43 outputs an alarm signal and gives an alarm, and simultaneously sends the alarm signal to the intelligent receiving unit 6 for remote alarm.
In the utility model, as shown in fig. 4 and 5, the support frame 40 comprises a support cylinder 400, an upper cross-shaped support plate 401 and a lower cross-shaped support plate 402, the upper cross-shaped support plate 401 and the lower cross-shaped support plate 402 are both in a cross shape, the center of the upper cross-shaped support plate 401 is horizontally and fixedly arranged at the upper opening of the support cylinder 400, the center of the lower cross-shaped support plate 402 is horizontally and fixedly arranged at the lower opening of the support cylinder 400, and the upper cross-shaped support plate 401 and the lower cross-shaped support plate 402 are parallel to each other and are arranged right opposite to each other; the inside of the supporting cylinder 400 is divided into an upper cavity 400a and a lower cavity 400b, the monitoring and control module 43 is arranged in the upper cavity 400a, the dc power supply 44 is arranged in the lower cavity 400b, and a group of the transmitting modules 41 and a group of the receiving modules 42 are arranged between the upper cross-shaped supporting plate 401 and the lower cross-shaped supporting plate 402 and outside the supporting cylinder 400, so that the monitoring and control module 43 and the dc power supply 44 are sealed in the supporting cylinder 400 through the upper cross-shaped supporting plate 401 and the lower cross-shaped supporting plate 402 respectively by the upper cavity 400a and the lower cavity 400 b; the utility model discloses in, as shown in fig. 6 be provided with a draw-in groove 10 along axis direction and central symmetry at least on the inner wall of the cavity of stand 1, go up two of cross backup pad 401 just to the tip with two of cross backup pad 402 under with just corresponding the block respectively to the tip in the draw-in groove 10, will go up cross backup pad 401 and cross backup pad 402 down and put into the cavity along stand 1's draw-in groove 10, can also the bolt of stand 1 and the screw 412 of last cross backup pad 401 and cross backup pad 402 do whole support frame 40 near one step fixedly down.
In the present invention, as shown in fig. 4 and 5, a first supporting rod 403 and a second supporting rod 404 are disposed between two ends of the upper cross-shaped supporting plate 401 and two ends of the lower cross-shaped supporting plate 402, the first supporting rod 403 and the second supporting rod 404 are respectively disposed on two sides of the supporting cylinder 400 and are vertically and horizontally disposed between the upper cross-shaped supporting plate 401 and the lower cross-shaped supporting plate 402, a set of the transmitting modules 41 are respectively disposed on the first supporting rod 403, a set of the receiving modules 42 are respectively disposed on the second supporting rod 404, the transmitting modules 41 and the receiving modules 42 are respectively disposed on the two supporting rods by fasteners or adhesive methods, and the directions of signals transmitted by the transmitting modules 41 and the receiving modules 42 are respectively aligned with the adjacent columns 1, that is, the transmitting modules 41 and the receiving modules 42 form a certain angle in space, and ensures that the transmitter module 41 and the receiver module 42 are located at the outer side (both sides) of the support cylinder 400.
In the present invention, as another embodiment of the present invention, referring to fig. 5 and 7, a rotatable first supporting block 403a is sleeved on the first supporting rod 403, a rotatable second supporting block 404a is sleeved on the second supporting rod 404, a first through hole 403b is formed on the sidewall near the upper and lower ends of the first supporting block 403a, a second through hole 404b is formed on the sidewall near the upper and lower ends of the second supporting block 404a, the transmitting module 41 is disposed in the first through hole 403b, and the receiving module 42 is disposed in the second through hole 404b, in the present invention, the first through hole 403b and the second through hole 404b are spatially arranged at a certain angle by rotating the first supporting block 404a and the second supporting block 404a, respectively, so as to keep the transmitting module 41 and the receiving module 42 aligned with the corresponding column 1, thereby ensuring that the transmitting module 41 and the receiving module 42 are spatially arranged at a certain angle and aligned with the column 1 state, it is ensured that the signal (infrared ray or laser) emitted by the emitting module 41 is aligned with the adjacent upright 1, so that the receiving module 42 receives the signal emitted by the corresponding emitting module 41, and transparent emitting windows and receiving windows are respectively arranged at the emitting module 41 and the receiving module 42 arranged in the upright 1 to ensure the intensity of the emitted or received signal.
The utility model discloses in, combine fig. 4, fig. 5, fig. 6, fig. 7 and fig. 8 to show, monitoring control module 43 includes microcontroller 430, first bluetooth communication module 431 and bee calling organ 432, emission module 41, first bluetooth communication module 431 and bee calling organ 432 respectively with microcontroller 430 connects, and dc power supply 44's power take off end respectively with microcontroller 430's power end, first bluetooth communication module 431's power end are connected, and dc power supply 44 utilizes 18650 lithium cells to obtain +5V direct current through the steady voltage, provides the required dc power of work for whole circuit, in the utility model discloses in, adopted intelligent receiving unit 6 for realizing remote monitoring control, intelligent receiving unit 6 includes receiving controller 60, second bluetooth communication module 61, alarm unit 62 and display unit 63, receiving controller 60 respectively with second bluetooth communication module 61, An alarm unit 62 and a display unit 63, the microcontroller 430 is connected with the receiving controller 60 through a first bluetooth communication module 431 and a second bluetooth communication module 61 in a wireless communication manner. In the present invention, the microcontroller 430 and the receiving controller 60 mainly adopt a minimum single chip microcomputer system composed of a single chip microcomputer chip with model number IAP15W4K58S4, the emitting module 41 adopts an infrared emitting module or a laser correlation module, the receiving module 42 adopts an infrared receiving module or a laser correlation module, and more specifically, the emitting module 41 and the receiving module 42 respectively adopt an M18 laser correlation photoelectric switch, the M18 laser correlation photoelectric switch can emit infrared signals or sense red line signals, and can also sense light-reflecting objects, the sensing distance range is 0-30M, when the receiving module 42 detects a crossing signal of a person, the signal is transmitted to the microcontroller 430, the microcontroller 430 sends a signal to the receiving controller 60 through the first bluetooth fence communication module 431 and the second bluetooth communication module 61, the model numbers adopted by the first bluetooth communication module 431 and the first bluetooth communication module 61 are HC-08 bluetooth chips, the penetration ability is strong, and the distance of receiving signals is long. As shown in fig. 9, the GND pin of the IAP15W4K58S4 monolithic chip U1 is connected to the GND pin of the receiving module 42, the VCC pin of the IAP15W4K58S4 monolithic chip U1 is connected to the VCC pin of the receiving module 42, the P5.5 pin of the IAP15W4K58S4 monolithic chip U1 is connected to the CK pin of the receiving module 42, the VCC pin of the first bluetooth communication module 431(HC-08 bluetooth chip U2) is connected to the VCC pin of the IAP15W4K58S4 monolithic chip U1, the GND pin of the first bluetooth communication module 431(HC-08 bluetooth chip U2) is connected to the GND pin of the IAP15W4K58S4 monolithic chip U1, the TX pin of the first bluetooth communication module 431(HC-08 bluetooth chip U2) is connected to the RX pin of the IAP 1.0 of the IAP15W4K58S4 monolithic chip U1, and the first bluetooth communication module 431(HC-08 bluetooth chip U2) is connected to the RX pin 581.1 pin of the IAP 581U 581K 26; when the receiving controller 60(IAP15W4K58S4 single chip microcomputer chip U3) receives a signal from the second bluetooth communication module 61(HC-08 bluetooth chip U4) that someone crosses the fence, the receiving controller 60(IAP15W4K58S4 single chip microcomputer chip U3) sends out a voice alarm through the alarm unit 62 (composed of the voice module U5 and the speaker U6, the voice module U5 adopts a model FS-K63 voice module chip) to remind the staff that the person has crossed the fence. As shown in fig. 10: a P3.0 pin of the receiving controller 60(IAP15W4K58S4 one-chip microcomputer chip U3) is connected to a K1 pin of the voice module U5, a P3.1 pin of the IAP15W4K58S4 one-chip microcomputer chip U3 is connected to a K2 pin of the voice module U5, a P3.2 pin of the IAP15W4K58S4 one-chip microcomputer chip U3 is connected to a K3 pin of the voice module U5, a P3.3 pin of the IAP15W4K58S4 one-chip microcomputer chip U3 is connected to a K4 pin of the voice module U5, a P3.4 pin of the IAP15W4K58S4 one-chip U3 is connected to a K5 pin of the voice module U5, a P3.5 pin of the IAP15W4K58S 5 chip U5 is connected to a K5 pin of the voice module U5, a P3 pin of the IAP 72 of the IAP 15K 4K58S 5 chip U5 is connected to a GND U5 pin of the voice module U5, a voice module U5 pin of the IAP 5 is connected to a GND U5 pin of the voice module U5, a VCC module U5 is connected to a voice module U5 pin of the voice module U5, a GND 5 pin of the voice module U5 is connected to a voice, the negative electrode pin of the voice module U5 is connected with the negative electrode of the loudspeaker U6, and an alarm signal is output to the voice module U5 and the loudspeaker U6 through the IAP15W4K58S4 single chip microcomputer chip U3 to alarm. The monitoring system consisting of the electronic monitoring unit 4 and the intelligent receiving unit can realize the safety detection of the operators, and when the operators cross, the system can quickly remind and alarm.
Referring to fig. 1, 2 and 7, the working principle of the present invention is further illustrated, the dc power supply 44 supplies power to the whole pillar, when the emitting module 41 on the pillar a 1 emits infrared rays to the receiving module of the pillar B1, the emitting module in the pillar B1 emits infrared rays to the receiving module of the pillar C1, and the emitting module in the pillar C1 emits infrared rays to the receiving module of the pillar D1, so as to monitor whether a person crosses the fence to enter the warning area 100 between the pillars 1 forming the series connection, of course, the emitting module of the pillar D1 can emit infrared rays to the receiving module 42 of the pillar a 1, forming an open ring connection, when the microcontroller 430 cannot detect the infrared signal of the receiving module 42, the buzzer 432 emits a sound of a droplet, and at the same time, the first bluetooth communication module 431 sends a signal to the second bluetooth communication module 61 in the intelligent receiving unit 6, (the signal is as follows: assuming that the receiving module of the a-pillar 1 fails to receive the infrared signal, the microcontroller 430 in the a-pillar 1 sends an alarm signal to the buzzer 432 to warn, meanwhile, the microcontroller 430 in the a-pillar 1 sends a text signal of 'someone crossing the fence' at the a-pillar 1 to the second bluetooth communication module 61 of the intelligent receiving unit 6 through the first bluetooth communication module 431, and when the receiving controller 60 of the intelligent receiving unit receives the signal of the second bluetooth communication module 61, the alarm signal received by the second bluetooth communication module 61 is reported through the voice module U5 in the alarm unit 3562 and through the speaker U6.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not intended to limit the present invention, and all modifications, equivalents, improvements and the like that are made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (6)

1. The utility model provides a prevent intelligent electric power operation rail device that operation personnel electrocute which characterized in that: the safety operation fence monitoring system comprises electronic monitoring units (4) and two or more than three stand columns (1), wherein all the stand columns (1) are connected in series, placed randomly and surrounded to form a warning area (100), warning belts (2) are arranged between every two adjacent stand columns (1), the adjacent stand columns (1) are connected in series through the warning belts (2), a supporting seat (3) is arranged at the bottom end of each stand column (1), each stand column (1) is of a hollow structure and is provided with an opening at the top end, the hollow structure forms a hollow cavity, the electronic monitoring units (4) are arranged in the hollow cavity of each stand column (1) and close to the top end of the stand column (1), a fence rolling box (5) is arranged at the top end of each stand column (1), the bottom of the fence rolling box (5) is vertically inserted into the hollow cavity from the opening at the top end of the stand column (1), -the bottom of the coil box (5) is located above the electronic monitoring unit (4); the outer side wall of the rolling fence box (5) is provided with a connecting piece (50), the connecting piece (50) is a hook or an insertion groove, the end part of the warning belt (2) is provided with a connecting buckle (20), and the warning belt (2) extends out of the rolling fence box (5) and then is connected with the connecting piece (50) on the adjacent upright post (1) through the connecting buckle (20); the electronic monitoring unit (4) comprises a support frame (40), a transmitting module (41), a receiving module (42), a monitoring control module (43) and a direct-current power supply (44), wherein the transmitting module (41), the receiving module (42), the monitoring control module (43) and the direct-current power supply (44) are fixed on the support frame (40), the support frame (40) is placed into the hollow cavity from the top end of the upright post (1), the rolling column box (5) is inserted from the top end of the upright post (1) and is abutted against the upper side of the support frame (40), the receiving module (42) is electrically connected with the monitoring control module (43), and the power supply end of the monitoring control module (43), the power supply end of the transmitting module (41) and the power supply end of the receiving module (42) are; the monitoring control module (43) comprises a microcontroller (430), a first Bluetooth communication module (431) and a buzzer (432), and the transmitting module (41), the first Bluetooth communication module (431) and the buzzer (432) are respectively connected with the microcontroller (430).
2. The intelligent electric power operation fence device for preventing an operator from getting electric shock according to claim 1, characterized in that: the supporting frame (40) comprises a supporting cylinder (400), an upper cross-shaped supporting plate (401) and a lower cross-shaped supporting plate (402), the upper cross-shaped supporting plate (401) and the lower cross-shaped supporting plate (402) are in a cross shape, the center of the upper cross-shaped supporting plate (401) is horizontally and fixedly arranged at the upper cylinder opening of the supporting cylinder (400), the center of the lower cross-shaped supporting plate (402) is horizontally and fixedly arranged at the lower cylinder opening of the supporting cylinder (400), and the upper cross-shaped supporting plate (401) and the lower cross-shaped supporting plate (402) are parallel to each other and are just opposite to each other; the inside of a supporting cylinder (400) is divided into an upper cavity (400a) and a lower cavity (400b), the monitoring control module (43) is arranged in the upper cavity (400a), and the direct-current power supply (44) is arranged in the lower cavity (400 b).
3. The intelligent electric power operation fence device for preventing operators from getting electric shock as claimed in claim 2, characterized in that: go up and be provided with first bracing piece (403), second bracing piece (404) between two tip of cross backup pad (401) and lower cross backup pad (402), this first bracing piece (403) and second bracing piece (404) are located the both sides of a support section of thick bamboo (400) respectively and are vertical level setting at last cross backup pad (401) and between lower cross backup pad (402) set up a set of respectively on first bracing piece (403) emission module (41) set up a set of respectively on second bracing piece (404) receiving module (42).
4. The intelligent electric power operation fence device for preventing an operator from getting electric shock as claimed in claim 2 or 3, wherein: at least one clamping groove (10) which is symmetrical along the axis direction and the center is arranged on the inner wall of the hollow cavity of the upright post (1), two pairs of upper cross-shaped supporting plates (401) are correspondingly clamped in the clamping grooves (10) respectively to the end parts and two pairs of lower cross-shaped supporting plates (402).
5. The intelligent electric power operation fence device for preventing electric shock of operators as claimed in claim 3, wherein: the transmitting module is characterized in that a rotatable first supporting block (403a) is sleeved on each first supporting rod (403), a rotatable second supporting block (404a) is sleeved on each second supporting rod (404), first through holes (403b) are formed in the side walls close to the upper end and the lower end of each first supporting block (403a), second through holes (404b) are formed in the side walls close to the upper end and the lower end of each second supporting block (404a), the transmitting module (41) is arranged in each first through hole (403b), and the receiving module (42) is arranged in each second through hole (404 b).
6. The intelligent electric power operation fence device for preventing electric shock of operators as claimed in claim 3, wherein: screw holes (412) are respectively formed in the sections of the end parts of the two ends of the upper cross-shaped support plate (401) and the lower cross-shaped support plate (402).
CN201921058283.XU 2019-07-09 2019-07-09 Intelligent electric power operation fence device capable of preventing operators from electric shock Expired - Fee Related CN210563740U (en)

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CN201921058283.XU CN210563740U (en) 2019-07-09 2019-07-09 Intelligent electric power operation fence device capable of preventing operators from electric shock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921058283.XU CN210563740U (en) 2019-07-09 2019-07-09 Intelligent electric power operation fence device capable of preventing operators from electric shock

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113775239A (en) * 2021-09-13 2021-12-10 西安热工研究院有限公司 Electronic overhaul fence for thermal power plant hazardous equipment overhaul safety system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113775239A (en) * 2021-09-13 2021-12-10 西安热工研究院有限公司 Electronic overhaul fence for thermal power plant hazardous equipment overhaul safety system

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