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CN207698952U - A kind of traction and forcibly driving elevator real time on-line safety monitoring system - Google Patents

A kind of traction and forcibly driving elevator real time on-line safety monitoring system Download PDF

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Publication number
CN207698952U
CN207698952U CN201721746470.8U CN201721746470U CN207698952U CN 207698952 U CN207698952 U CN 207698952U CN 201721746470 U CN201721746470 U CN 201721746470U CN 207698952 U CN207698952 U CN 207698952U
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real time
connect
safety monitoring
forcibly driving
monitoring system
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CN201721746470.8U
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梅燕
周文辉
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Chengdu Zhong Chai Technology Co Ltd
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Chengdu Zhong Chai Technology Co Ltd
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  • Indicating And Signalling Devices For Elevators (AREA)
  • Maintenance And Inspection Apparatuses For Elevators (AREA)

Abstract

The utility model discloses a kind of tractions and forcibly driving elevator real time on-line safety monitoring system, including master control system, acquisition system and service system;Master control system includes cpu controller, and signal processing module, memory module and the communication module being connect respectively with cpu controller;Acquisition system includes surface-type strain transducer, acceleration transducer, speed probe, temperature sensor, displacement sensor and the magnetic flux transducer being connect with signal processing module;Service system includes cloud server, and the Terminal Server Client with cloud server communication connection.The utility model application sensing technology, the communication technology and network technology, it is automated, intelligent, scientific real time on-line monitoring and security evaluation, fault diagnosis is carried out according to equipment state, determine type, property, position and the degradation of failure, formulate correct maintenance program, it can ensure the reliance security of equipment and save a large amount of manpower and materials.

Description

A kind of traction and forcibly driving elevator real time on-line safety monitoring system
Technical field
The utility model is related to machine-building, special equipment fields, and in particular to a kind of traction is real with forcibly driving elevator When on-line monitoring system.
Background technology
Under the premise of meeting state's laws laws and regulations requirement, the related present situation of China's elevator work is taken into account, for traction and by force The safety supervision of system driving elevator and inspection, it is proposed that relevant monitoring content, requirement and method.To ensure the safety fortune of elevator Row meets country for traction and forcibly driving elevator detection requirement, has formulated a kind of traction and forcibly driving elevator exists in real time Line safety monitoring system is monitored elevator critical piece, key position.
But existing elevator monitoring systems are generally not in place, imperfect to the monitoring of the operation data of elevator, cannot achieve intelligence It can monitoring, intelligent control and inquiry.
Utility model content
In order to solve the above technical problems, the utility model discloses a kind of tractions and forcibly driving elevator real-time online to pacify Full monitoring system.It solves existing elevator monitoring systems and not in place, incomplete ask generally is monitored to the operation data of elevator Topic.The utility model carries out data processing and data analysis, to elevator main member by acquiring the data information monitored automatically Working stress, vibration characteristics, operating status, steel wire rope state carry out safety overall merit, decision system support under, and Shi Jinhang fault diagnosises work out Optimal Maintenance, maintenance procedure, it is ensured that its safe operation.
The technical solution adopted in the utility model is:
A kind of traction and forcibly driving elevator real time on-line safety monitoring system, including master control system, acquisition system kimonos Business system;The master control system includes cpu controller, and signal processing module, the storage mould being connect respectively with CPU controllers Block and communication module;The acquisition system includes the surface-type strain transducer being connect with signal processing module, acceleration biography Sensor, speed probe, temperature sensor, displacement sensor and magnetic flux transducer;The service system includes cloud service Device, and the Terminal Server Client with cloud server communication connection, the cloud server are logical by communication module and cpu controller Letter connection.
By the utility model, more complete elevator operation can be obtained and use data, and elevator is carried out simultaneously Safe early warning, reliability comprehensive estimation.
Specifically, the master control system further includes the display module being connect with cpu controller.
Further, the master control system further includes the alarm module being connect with cpu controller.
Further, the acquisition system further includes the headstock gear PLC control signal acquisitions being connect with signal processing module Module.
Further, the acquisition system further includes the video sensor being connect with signal processing module.
Further, the cloud service system further includes the mobile terminal communicated to connect with cloud server.
A kind of implementation method of traction and forcibly driving elevator real time on-line safety monitoring system, includes the following steps:
S1, corresponding sensor composition acquisition system is arranged to critical control point, acquisition system uses shape to elevator operation State data are into real time on-line monitoring;
S2, master control system receive the data of acquisition system real time on-line monitoring, and are built after being handled by signal processing module Vertical online monitoring data library;
S3, cpu controller manage database, the operation to elevator according to online monitoring data library and existing operational safety State and its security reliability make comprehensive assessment, judge elevator operation whether in zone of reasonableness, and will exist in real time Line monitoring data and operational safety management data are sent to service system;
S4, service system are in the case where cpu controller judges that elevator is not in zone of reasonableness, according to operational safety pipe Reason data are controlled by Terminal Server Client.
By on-line monitoring system, elevator operation big data cloud service is opened, Terminal Server Client control is realized And mobile terminal enquiry.
Further, in step sl, the elevator operation use state data include:Strain stress, mode of oscillation, electricity A variety of data of machine rotating speed, temperature, displacement, steel rope abrasion or fracture of wire, headstock gear PLC control signal and video.
Further, in step s3, also logical in the case where cpu controller judges that elevator is not in zone of reasonableness Cross alarm module Realtime Alerts.
Further, in step s 4, real time on-line monitoring data can also be inquired by mobile terminal.
Compared with prior art, the beneficial effects of the utility model are:
The utility model supervises sensing technology, the communication technology and application of net in traction and forcibly driving elevator online In survey, real time on-line monitoring system is established, is automated, intelligent, scientific real time on-line monitoring and security evaluation, root Fault diagnosis is carried out according to equipment state, type, property, position and the degradation of failure is determined, formulates correct maintenance program, Accomplish to shoot the arrow at the target, can ensure the reliance security of equipment and saves a large amount of manpower and materials.
Description of the drawings
It, below will be to required use in embodiment in order to illustrate more clearly of the technical solution of the utility model embodiment Attached drawing be briefly described, it should be understood that the following drawings only shows the section Example of the utility model, therefore does not answer Regard the restriction to range as, for those of ordinary skill in the art, without creative efforts, may be used also To obtain other relevant attached drawings according to these attached drawings.
Fig. 1 is the system block diagram of the utility model.
Specific implementation mode
The utility model is described in further detail below in conjunction with the accompanying drawings.The embodiment of the utility model includes but not limited to The following example.
Embodiment
As shown in Figure 1, a kind of traction and forcibly driving elevator real time on-line safety monitoring system, including master control system 200, Acquisition system 100 and service system 300.
In the present embodiment, master control system includes cpu controller 211, and the signal being connect respectively with CPU controllers 211 Processing module 212, memory module 213, communication module 214, display module 221 and alarm module 222.
Acquisition system 100 includes the surface-type strain transducer 111 being connect with signal processing module 212, acceleration biography Sensor 112, speed probe 113, temperature sensor 114, displacement sensor 115, magnetic flux transducer 116, headstock gear PLC controls Signal acquisition module 117 processed and video sensor 118.
Surface-type strain transducer 111, acceleration transducer 112, speed probe 113, temperature sensor 114, displacement Sensor 115, magnetic flux transducer 116 and video sensor 118 are wired or wireless sensor.
In embodiment, strain stress, the surface-type strain transducer 111 are monitored by surface-type strain transducer 111 It is installed on strain stress monitoring point, strain stress monitoring point specific location is the present embodiment does not limit.
By 112 monitoring vibration mode of acceleration transducer, which is installed on mode of oscillation monitoring Point, mode of oscillation monitoring point specific location is the present embodiment does not limit.
Motor speed is monitored by speed probe 113, which is installed on motor shaft.
By 114 monitoring temperature of temperature sensor, which is installed on temperature monitoring point, temperature monitoring point Specific location is the present embodiment does not limit.
Displacement is monitored by displacement sensor 115, which is installed on monitoring point for displacement, monitoring point for displacement Specific location is the present embodiment does not limit.
Steel rope abrasion or fracture of wire are monitored by magnetic flux transducer 116.The magnetic flux transducer 116 is installed on steel wire On rope.
Strain stress monitoring point, vibration degree monitoring point, motor shaft, temperature monitoring point, monitoring point for displacement and steel wire rope composition The critical control point of the utility model.
Service system 300 includes cloud server 310, and the remote client communicated to connect respectively with cloud server 310 End 321 and mobile terminal 332, cloud server 310 are communicated to connect by communication module 214 and cpu controller 211.
A kind of implementation method of traction and forcibly driving elevator real time on-line safety monitoring system, including step:
S1, corresponding sensor composition acquisition system 100 is arranged to critical control point, acquisition system 100 runs elevator Use state data are into real time on-line monitoring;
S2, master control system 200 receive the data of 100 real time on-line monitoring of acquisition system, and pass through signal processing module 212 Online monitoring data library is established after processing;
S3, cpu controller 211 manage database according to online monitoring data library and existing operational safety, to elevator Operating status and its security reliability make comprehensive assessment, judge elevator operation whether in zone of reasonableness, and will be real When online monitoring data and operational safety management data be sent to service system 300;
S4, service system 300 are in the case where cpu controller 211 judges that elevator is not in zone of reasonableness, according to operation Safety management data are controlled by Terminal Server Client 321.
In step sl, elevator operation use state data include:Strain stress, mode of oscillation, motor speed, temperature, A variety of data of displacement, steel rope abrasion or fracture of wire, headstock gear PLC control signal and video.
Master control system 200 further includes a software platform.
Master control system 200 is according to signal processing module 212, memory module 213, software platform, communication module 214, display Module 221, alarm module 222, online monitoring data library and existing operational safety management database building one are visual Elevator real time on-line safety monitoring and safe operation management system.
In step S3, in the case where cpu controller 211 judges that elevator is not in zone of reasonableness, also pass through mould of alarming 222 Realtime Alerts of block.
In step s 4, real time on-line monitoring data can also be inquired by mobile terminal 322.
By the utility model, more complete elevator operation can be obtained and use data, and elevator is carried out simultaneously Safe early warning, reliability comprehensive estimation;By on-line monitoring system, elevator operation big data cloud service is opened, is realized Terminal Server Client control and mobile terminal enquiry.The operation mode for realizing " unattended, few man on duty ", becomes current operation The development trend of management level and technological innovation is the effective ways for preventing from failing and avoiding accident.
According to above-described embodiment, the utility model can be realized well.It is worth noting that former based on above-mentioned design Reason, to solve same technical problem, even if some made on architecture basics disclosed in the utility model are without substance Change or polishing, used technical solution essence is still as the utility model, therefore it should also be as in the utility model In protection domain.

Claims (6)

1. a kind of traction and forcibly driving elevator real time on-line safety monitoring system, which is characterized in that including master control system (200), acquisition system (100) and service system (300);
The master control system includes cpu controller (211), and connect respectively with cpu controller signal processing module (212), Memory module (213) and communication module (214);
The acquisition system includes surface-type strain transducer (111), the acceleration transducer being connect with signal processing module (112), speed probe (113), temperature sensor (114), displacement sensor (115) and magnetic flux transducer (116);
The service system includes cloud server (310), and the Terminal Server Client (321) with cloud server communication connection, The cloud server is communicated to connect by communication module (214) and cpu controller.
2. a kind of traction according to claim 1 and forcibly driving elevator real time on-line safety monitoring system, feature exist In the master control system further includes the display module (221) being connect with cpu controller.
3. a kind of traction according to claim 1 and forcibly driving elevator real time on-line safety monitoring system, feature exist In the master control system further includes the alarm module (222) being connect with cpu controller.
4. a kind of traction according to claim 1 and forcibly driving elevator real time on-line safety monitoring system, feature exist In the acquisition system further includes the headstock gear PLC control signal acquisition modules (117) being connect with signal processing module.
5. a kind of traction according to claim 1 and forcibly driving elevator real time on-line safety monitoring system, feature exist In the acquisition system further includes the video sensor (118) being connect with signal processing module.
6. a kind of traction according to claim 1 and forcibly driving elevator real time on-line safety monitoring system, feature exist In the cloud service system further includes the mobile terminal communicated to connect with cloud server.
CN201721746470.8U 2017-12-14 2017-12-14 A kind of traction and forcibly driving elevator real time on-line safety monitoring system Active CN207698952U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721746470.8U CN207698952U (en) 2017-12-14 2017-12-14 A kind of traction and forcibly driving elevator real time on-line safety monitoring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721746470.8U CN207698952U (en) 2017-12-14 2017-12-14 A kind of traction and forcibly driving elevator real time on-line safety monitoring system

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CN207698952U true CN207698952U (en) 2018-08-07

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107902515A (en) * 2017-12-14 2018-04-13 成都众柴科技有限公司 A kind of traction and forcibly driving elevator real time on-line safety monitoring system and its implementation
CN109264522A (en) * 2017-07-18 2019-01-25 刘春鸣 System for reporting life cycle, maintenance and measurement audit condition of building equipment
CN109484938A (en) * 2018-11-29 2019-03-19 辽宁工程技术大学 A kind of distribution elevator monitoring platform

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109264522A (en) * 2017-07-18 2019-01-25 刘春鸣 System for reporting life cycle, maintenance and measurement audit condition of building equipment
CN109264522B (en) * 2017-07-18 2022-03-29 刘春鸣 System for reporting life cycle, maintenance and measurement audit condition of building equipment
CN107902515A (en) * 2017-12-14 2018-04-13 成都众柴科技有限公司 A kind of traction and forcibly driving elevator real time on-line safety monitoring system and its implementation
CN109484938A (en) * 2018-11-29 2019-03-19 辽宁工程技术大学 A kind of distribution elevator monitoring platform
WO2020108487A1 (en) * 2018-11-29 2020-06-04 山东科技大学 Distributed elevator monitoring platform

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