CN210457038U - Safety elevator control system for high-rise building - Google Patents
Safety elevator control system for high-rise building Download PDFInfo
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- CN210457038U CN210457038U CN201921566806.1U CN201921566806U CN210457038U CN 210457038 U CN210457038 U CN 210457038U CN 201921566806 U CN201921566806 U CN 201921566806U CN 210457038 U CN210457038 U CN 210457038U
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- 238000001514 detection method Methods 0.000 claims abstract description 52
- 238000012544 monitoring process Methods 0.000 claims abstract description 12
- 238000004891 communication Methods 0.000 claims description 10
- 230000002618 waking effect Effects 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 9
- 230000001133 acceleration Effects 0.000 description 4
- 230000008054 signal transmission Effects 0.000 description 4
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Abstract
A safety elevator control system for high-rise buildings comprises a main control system for controlling elevator operation, a fault detection system for monitoring elevator operation conditions, a fault alarm system for sending elevator fault signals outwards, and an external control end for externally inputting control signals to the main control system.
Description
Technical Field
The utility model belongs to the technical field of elevator control, concretely relates to safe elevator control system for high-rise building.
Background
With the high-speed expansion of urban construction, high-rise buildings have become the mainstream of houses, elevators are an indispensable part of the high-rise buildings, and the safety and convenience of elevators are widely concerned by people, the existing elevators generally comprise a main control system arranged in a car and external control ends arranged at the bottom layer and the upper layer and used for controlling the elevators to go upwards and downwards, when the elevators are in operation, passengers press an uplink key or a downlink key in an external control section, the external control end sends an uplink signal or a downlink signal to the main control system, the main control system controls the elevators to arrive at the floor to send the passengers, the passengers enter the car and press a floor key of the main control system to enable the elevators to reach the specified floor, and the traditional elevator control system has the following defects:
(1) when the elevator is trapped in a fault, the problem that the help-seeking key is pressed and does not respond to the situation that the mobile phone is required to be used for calling and seeking help outside exists, and the general signal in the elevator is weak, so that the mobile phone cannot be contacted with the outside, the elevator is trapped, the rescue time is long, and certain potential safety hazards exist;
(2) when more passengers are in the elevator car, the buttons are often easily shielded, the passengers can control the elevator by using the buttons only when moving mutually, and the elevator passing and the body collision of the passengers are easy to happen, so that the elevator use experience of the passengers is influenced;
(3) in order to improve the safety protection of a house, part of the existing elevators are provided with access cards for elevator use authority control, the elevators can be used only after the elevators are activated by the access cards, so that foreign persons can be prevented from entering the elevators at will, but when a person visits the elevator, the elevator needs to be sent and received together by a user, and the convenience is not high at the moment, so that the safety and the convenience cannot be considered;
(4) when people use the external control end, the keys can be manually pressed for control, when people carry articles with both hands, the articles need to be put down and then the keys of the external control end are pressed, and the operation is very inconvenient.
SUMMERY OF THE UTILITY MODEL
In order to overcome the not enough of prior art, the utility model provides a high-rise building is with high, simple operation's safe elevator control system.
The utility model provides a technical scheme that its technical problem adopted is:
the utility model provides a safe elevator control system for high-rise building, is including the main control system that is used for controlling the elevator operation, the fault detection system who is used for monitoring the elevator operational aspect, be used for the outside fault alarm system who sends elevator fault signal, be used for the outside external control end to main control system input control signal, fault detection system includes the power failure detection module of parallelly connected in elevator power department, sets up the door state detection module in elevator switch door limit department, sets up flat bed detection module on the car box, sets up the top detection module that dashes at the car top, sets up the bottom detection module of squatting at the car bottom, is used for carrying out the overspeed detection module that car operating speed detected, sets up the human detection module in the car, the external control end includes wireless control system, sets up the bottom control system at the building bottom, sets up the upper control system on the building upper strata, The system comprises a video telephone system arranged in a resident room, a bottom layer control system is connected with a main control system through the video telephone system, an upper layer control system is arranged on each floor of the upper layer of a building, the wireless control system is connected with the main control system through wireless signals, and the upper layer control system is in electric signal connection with the main control system.
The utility model discloses in, main control system includes main control unit, for the main control unit power supply main control unit, carries out the GPS module of accurate location, the signal reception module who is used for receiving control signal, is arranged in sending fault information's information transmission module, the detection signal identification module that is used for discerning to the fault detection signal, is used for burning record control program's USB input I in to main control unit's position of main control unit, main control unit includes that the information transmission module is connected with main control unit's output.
The utility model discloses in, wireless control system includes wireless controller, for the wireless power supply of wireless controller power supply, be used for showing wireless power supply residual capacity's electric quantity display module, be used for transmitting control signal wireless transmitting module, be used for selecting button I of elevator control function, be used for to burn the USB input II of recording control program in the wireless controller, wireless power supply, button I, USB input II all are connected with wireless controller's input, electric quantity display module, wireless transmitting module are connected with wireless controller's input.
The utility model discloses in, bottom control system includes the bottom controller, for the bottom power of bottom controller power supply, be used for sending control signal signaling module I, be used for selecting the button II of visitor's resident family's signal switch-on, be used for carrying out communication module that the communication is connected with the video telephone system, be used for carrying out microphone I and the camera of video connection with the video telephone system, bottom power, button II, microphone I, camera all are connected with the input of bottom controller, signaling module I, communication module are connected with the output of bottom controller.
The utility model discloses in, upper control system includes upper controller, for the upper power of upper controller power supply, be used for sending control signal's signalling module II, be used for sending go upward or down elevator control signal's button III, be used for carrying on speech input control signal's microphone II, be used for awakening up the module of awakening up of speech control function, microphone II is connected with upper controller through awakening up the module, upper power, button III are connected with upper controller's input, signalling module II is connected with upper controller's output.
The utility model discloses in, fault alarm system includes monitor room and 110 cloud platforms, be equipped with the timing module between monitor room and the 110 cloud platforms.
The utility model has the advantages that: the utility model discloses a set up the fault detection system in elevator control system, monitor elevator operating parameter through the fault detection system, when monitoring elevator operation fault signal, send fault signal to the monitor through main control unit in, inform the monitor personnel on duty to carry out fault treatment, if the monitor has not responded in appointed time, then main control unit initiative with fault information send to 110 cloud platform and carry out alarm processing, ensure the reliability of elevator trouble rescue, improve the security performance of elevator; further through setting up wireless control system in the external control end, the passenger only needs to use wireless control system can realize the control to the elevator operation, avoid in the car passenger more to be difficult to remove and control main control system, to the visitor, can carry out the communication through the videophone system in bottom control system and the house, the householder can control the elevator through the videophone system, permit the visitor to get into, set up two kinds of control methods of button III and microphone II in the upper control system and supply the passenger to select, it is very convenient effectively to improve the security of elevator use.
Drawings
The invention will be further explained with reference to the drawings and the embodiments below:
FIG. 1 is an overall schematic diagram of the present embodiment;
fig. 2 is a schematic diagram of elevator control connections of the present embodiment;
FIG. 3 is a schematic diagram of a connection of the fault detection system of the present embodiment;
FIG. 4 is a schematic diagram of the connection of the external control terminal according to the present embodiment;
FIG. 5 is a schematic diagram of the connection of the wireless control system according to the embodiment;
FIG. 6 is a schematic diagram of the connection of the main control system according to the present embodiment;
FIG. 7 is a schematic diagram of the connection of the underlying control system of the present embodiment;
FIG. 8 is a schematic diagram of the connection of the upper control system according to this embodiment;
fig. 9 is a schematic diagram of the connection of the malfunction alarm system of the present embodiment.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention.
Example (b):
as shown in fig. 1 to 9, the embodiment discloses a safety elevator control system for high-rise buildings, which includes a main control system 1 for controlling elevator operation, a fault detection system 2 for monitoring elevator operation conditions, a fault alarm system 3 for sending elevator fault signals outwards, and an external control terminal 4 for inputting control signals to the main control system 1 from the outside, wherein the fault detection system 2 includes a power failure detection module 21 connected in parallel with an elevator power supply, a door state detection module 22 arranged at an elevator door opening and closing limit, a flat layer detection module 23 arranged on a car body, a top impact detection module 24 arranged at the top of the car, a squat bottom detection module 25 arranged at the bottom of the car, an overspeed detection module 26 for detecting car operation speed, and a human body detection module 27 arranged in the car, and the external control terminal 4 includes a wireless control system 41, a wireless control system, The system comprises a bottom layer control system 42 arranged at the bottom layer of a building, an upper layer control system 43 arranged at the upper layer of the building and a video telephone system 44 arranged in a resident room, wherein the bottom layer control system 42 is connected with a main control system 1 through the video telephone system 44, the upper layer control system 43 is arranged on each floor of the upper layer of the building, the wireless control system 41 is connected with the main control system 1 through wireless signals, the upper layer control system 43 is in electric signal connection with the main control system 1, the fault alarm system 3 comprises a monitoring room 31 and a 110 cloud platform 32, and a timing module 33 is arranged between the monitoring room 31 and the 110 cloud platform 32. The elevator control system is provided with the fault detection system 2, the elevator operation parameters are monitored through the fault detection system 2, when a fault signal is monitored during elevator operation, the fault signal is sent to the monitoring room 31 through the main controller 11, the monitoring room 31 is informed of on-duty personnel to perform fault treatment, if the monitoring room 31 does not respond within a specified time, the main controller 11 actively sends fault information to the 110 cloud platform 32 for alarm treatment, the reliability of elevator fault rescue is guaranteed, and the safety performance of the elevator is improved, in the embodiment, the power failure detection module 21 is a photoelectric sensor, the power failure detection module 21 monitors an elevator power supply inlet, the door state detection module 22 is a permanent magnet sensor, the flat layer detection module 23 is a photoelectric sensor, and the top-rushing detection module 24 and the bottom-squatting detection module 25 both adopt proximity switches, the overspeed detection module 26 comprises a speed detector and an acceleration detector, the speed detector is arranged at a flat floor and detects the running speed of the elevator by detecting the time of the elevator passing through the flat floor, the acceleration detector is arranged at the top of the car and is used for detecting the running acceleration of the elevator and jointly controlling the running speed of the elevator by the running speed and the running acceleration of the elevator, the human body detection module 27 comprises an infrared pyroelectric sensor and a microwave radar sensor, and the precision is improved by the composite detection of the infrared pyroelectric sensor and the microwave radar sensor.
As a preferred embodiment, as shown in fig. 6, the main control system 1 includes a main controller 11, a main control power supply 12 for supplying power to the main controller 11, a GPS module 13 for accurately locating the position of the main control system 1, a signal receiving module 14 for receiving a control signal, an information sending module 15 for sending fault information to the fault alarm system 3, a detection signal identifying module 16 for identifying a fault detection signal, and a USB input terminal i 17 for burning a control program into the main controller 11, wherein the main control power supply 12, the GPS module 13, the signal receiving module 14, the detection signal identifying module 16, and the USB input terminal i 17 are all connected to an input terminal of the main controller 11, the information sending module 15 is connected to an output terminal of the main controller 11, the signal receiving module 14 is connected to an external control terminal 4 by a signal, the detection signal identifying module 16 is connected to the fault detection system 2, when the main controller 11 sends alarm information to the fault alarm system 3, the fault signal, the internal condition of the car and the GPS positioning information are sent together, so that workers in the fault alarm system 3 can quickly know the fault condition, the information of the workers in the car and the specific position of a fault elevator, and the rescue time is greatly reduced.
As a preferred embodiment, as shown in fig. 5, the wireless control system 41 comprises a wireless controller 411, a wireless power supply 412 for supplying power to the wireless controller 411, a power display module 413 for displaying the remaining power of the wireless power supply 412, a wireless transmission module 414 for transmitting a control signal, a button i 415 for selecting an elevator control function, a USB input terminal ii 416 for burning a control program into the wireless controller 411, the wireless power supply 412, the key I415 and the USB input end II 416 are all connected with the input end of the wireless controller 411, the electric quantity display module 413 and the wireless transmitting module 414 are connected with the input end of the wireless controller 411, so that passengers can control the operation of the elevator only through the wireless control system 41, the situation that more passengers in the elevator car are difficult to move to control the main control system 1 is avoided, in this embodiment, the wireless control system 41 is a controller such as a wireless remote controller or a mobile phone capable of implementing a wireless control function.
As a preferred embodiment, as shown in fig. 7, the floor control system 42 includes a floor controller 421, a floor power supply 422 for supplying power to the floor controller 421, a signal transmission module i 423 for transmitting a control signal, a button ii 424 for selecting a signal to turn on a visitor, a communication module 425 for performing communication connection with the videophone system 44, a microphone i 426 and a camera 427 for performing video connection with the videophone system 44, where the floor power supply 422, the button ii 424, the microphone i 426 and the camera 427 are all connected to an input end of the floor controller 421, the signal transmission module i 423 and the communication module 425 are connected to an output end of the floor controller 421, for the visitor, the floor control system 42 can communicate with the videophone system 44 in the house, and the owner can control the elevator through the videophone system 44, and allowing the visitor to enter.
As a preferred embodiment, as shown in fig. 8, the upper control system 43 includes an upper controller 431, an upper power 432 for supplying power to the upper controller 431, a signal transmission module ii 433 for transmitting a control signal, a button iii 434 for transmitting an up or down elevator control signal, a microphone ii 435 for inputting a voice control signal, and a wake-up module 436 for waking up a voice control function, where the microphone ii 435 is connected to the upper controller 431 through the wake-up module 436, the upper power 432 and the button iii 434 are connected to an input terminal of the upper controller 431, the signal transmission module ii 433 is connected to an output terminal of the upper controller 431, and when a person cannot press the button iii 434 to control the elevator operation by hands, the voice control function of the elevator can be woken up by inputting a designated language command, and the elevator operation can be controlled by inputting an up or down voice command, the use convenience is improved.
The above description is only the preferred embodiment of the present invention, and the technical solutions of the objects of the present invention are all within the protection scope of the present invention as long as the objects are achieved by the substantially same means.
Claims (6)
1. A safety elevator control system for high-rise buildings is characterized in that: including main control system (1) that is used for controlling the elevator operation, fault detection system (2) that is used for monitoring the elevator operation condition, fault alarm system (3) that is used for outside sending elevator trouble signal, outside control end (4) that is used for outside to main control system (1) input control signal, fault detection system (2) are including parallelly connected at power failure detection module (21) of elevator power department, set up door state detection module (22) in elevator switch door limit department, flat bed detection module (23) of setting on the car box, set up at top of a car detection module (24), set up at the bottom of the car detection module (25), be used for carrying out overspeed detection module (26) that car functioning speed detected, set up human detection module (27) in the car, outside control end (4) include wireless control system (41), The household intelligent control system comprises a bottom layer control system (42) arranged at the bottom layer of the building, an upper layer control system (43) arranged at the upper layer of the building and a video telephone system (44) arranged in a household, wherein the bottom layer control system (42) is connected with a main control system (1) through the video telephone system (44), one upper layer control system (43) is arranged on each floor of the upper layer of the building, the wireless control system (41) is connected with the main control system (1) through wireless signals, and the upper layer control system (43) is in electric signal connection with the main control system (1).
2. The safety elevator control system for high-rise buildings according to claim 1, characterized in that: the main control system (1) comprises a main controller (11), a main control power supply (12) for supplying power to the main controller (11), a GPS module (13) for accurately positioning the position of the main control system (1), a signal receiving module (14) for receiving a control signal, an information sending module (15) for sending fault information to the fault alarm system (3), a detection signal identification module (16) for identifying a fault detection signal, and a USB input end I (17) for burning a control program into the main controller (11), the main control power supply (12), the GPS module (13), the signal receiving module (14), the detection signal identification module (16) and the USB input end I (17) are all connected with the input end of the main controller (11), and the information sending module (15) is connected with the output end of the main controller (11).
3. The safety elevator control system for high-rise buildings according to claim 1, characterized in that: the wireless control system (41) comprises a wireless controller (411), a wireless power supply (412) for supplying power to the wireless controller (411), an electric quantity display module (413) for displaying the residual electric quantity of the wireless power supply (412), a wireless transmitting module (414) for transmitting a control signal, a key I (415) for selecting an elevator control function, and a USB input end II (416) for burning a control program in the wireless controller (411), wherein the wireless power supply (412), the key I (415), and the USB input end II (416) are connected with the input end of the wireless controller (411), and the electric quantity display module (413) and the wireless transmitting module (414) are connected with the input end of the wireless controller (411).
4. The safety elevator control system for high-rise buildings according to claim 1, characterized in that: the bottom layer control system (42) comprises a bottom layer controller (421), a bottom layer power supply (422) for supplying power to the bottom layer controller (421), a signal sending module I (423) for sending a control signal, a key II (424) for selecting a visitor to be connected with a signal, a communication module (425) for being in communication connection with the video telephone system (44), a microphone I (426) and a camera (427) for being in video connection with the video telephone system (44), wherein the bottom layer power supply (422), the key II (424), the microphone I (426) and the camera (427) are all connected with the input end of the bottom layer controller (421), and the signal sending module I (423) and the communication module (425) are connected with the output end of the bottom layer controller (421).
5. The safety elevator control system for high-rise buildings according to claim 1, characterized in that: the upper-layer control system (43) comprises an upper-layer controller (431), an upper-layer power supply (432) for supplying power to the upper-layer controller (431), a signal sending module II (433) for sending a control signal, a key III (434) for sending an uplink or downlink elevator control signal, a microphone II (435) for inputting the control signal in a voice mode, and a wake-up module (436) for waking up the voice control function, wherein the microphone II (435) is connected with the upper-layer controller (431) through the wake-up module (436), the upper-layer power supply (432) and the key III (434) are connected with the input end of the upper-layer controller (431), and the signal sending module II (433) is connected with the output end of the upper-layer controller (431).
6. The safety elevator control system for high-rise buildings according to claim 1, characterized in that: the fault alarm system (3) comprises a monitoring room (31) and a 110 cloud platform (32), and a timing module (33) is arranged between the monitoring room (31) and the 110 cloud platform (32).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921566806.1U CN210457038U (en) | 2019-09-19 | 2019-09-19 | Safety elevator control system for high-rise building |
Applications Claiming Priority (1)
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CN201921566806.1U CN210457038U (en) | 2019-09-19 | 2019-09-19 | Safety elevator control system for high-rise building |
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CN210457038U true CN210457038U (en) | 2020-05-05 |
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CN201921566806.1U Expired - Fee Related CN210457038U (en) | 2019-09-19 | 2019-09-19 | Safety elevator control system for high-rise building |
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CN (1) | CN210457038U (en) |
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2019
- 2019-09-19 CN CN201921566806.1U patent/CN210457038U/en not_active Expired - Fee Related
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Legal Events
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TR01 | Transfer of patent right | ||
TR01 | Transfer of patent right |
Effective date of registration: 20200722 Address after: Danzao Town, Nanhai District of new rural village in the delta Patentee after: GUANGDONG HUAKAI ELEVATOR Co.,Ltd. Address before: 528000 room 602, building 1, No. 2, Jinxiu street, Guicheng Street, Nanhai District, Foshan City, Guangdong Province Patentee before: He Yi |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200505 |