CN202948453U - RFID and cloud calculation-based power transmission line temperature monitoring system - Google Patents

RFID and cloud calculation-based power transmission line temperature monitoring system Download PDF

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Publication number
CN202948453U
CN202948453U CN 201220375767 CN201220375767U CN202948453U CN 202948453 U CN202948453 U CN 202948453U CN 201220375767 CN201220375767 CN 201220375767 CN 201220375767 U CN201220375767 U CN 201220375767U CN 202948453 U CN202948453 U CN 202948453U
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China
Prior art keywords
rfid
cloud
temperature monitoring
transmission line
power transmission
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Expired - Fee Related
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CN 201220375767
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Chinese (zh)
Inventor
赵小元
谭顺川
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CHENGDU E-YOU TECHNOLOGY Co Ltd
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CHENGDU E-YOU TECHNOLOGY Co Ltd
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Abstract

Disclosed in the utility model is an RFID and cloud calculation-based power transmission line temperature monitoring system that comprises a temperature monitoring terminal, an RFID electronic tag, an RFID reader, an RFID middleware and a cloud terminal device. A signal output terminal of the RFID reader is connected with a signal input terminal of the RFID middleware; signal output terminals of the RFID middleware and the temperature monitoring terminal are connected with a signal input terminal of the cloud terminal device; and the cloud terminal device is in communication connected with a cloud calculation monitoring platform by a network. According to the utility model, monitoring on power transmission lines at different places and at any time can be realized; and the essential cause of a phenomenon occurring on the transmission line can be analyzed thoroughly by comprehensively analyzing the monitored temperarture. Moreover, the application of the cloud calculation as an emergent scientific theory to an intelligent power transmission line monitoring system enables the accuracy and the intelligent degree of the system monitoring to be improved.

Description

Power transmission line temperature monitoring system based on RFID and cloud computing
Technical field
The utility model relates to a kind of temperature monitoring system, particularly relates to a kind of power transmission line temperature monitoring system based on RFID and cloud computing.
Background technology
Be accompanied by the development of China's economic society, the scale of electrical network is also enlarging gradually, and the structure of electric power networks and transmission line of electricity also becomes and becomes increasingly complex.Therefore, we just very exigence set up intelligent monitor system, realize the Real-Time Monitoring to the transmission line of electricity running temperature.
Summary of the invention
The purpose of this utility model be provide in order to address the above problem a kind of temperature survey accurately, can realize focusing on the power transmission line temperature monitoring system based on RFID and cloud computing with remote monitoring.
The utility model is achieved through the following technical solutions:
A kind of power transmission line temperature monitoring system based on RFID and cloud computing, comprise temperature monitoring terminal, RFID electronic tag, RFID reader, RFID middleware and cloud terminal device, the signal output part of described RFID reader is connected with the signal input part of described RFID middleware, described RFID middleware be connected the signal output part of temperature monitoring terminal and be connected with the signal input part of described cloud terminal device, described cloud terminal device by network be connected with the communication of cloud computing monitoring platform.
The RFID electronic tag is affixed on the temperature monitoring terminal, the temperature monitoring terminal is installed on tested power transmission line, RFID reader, RFID middleware and cloud installing terminal equipment are in the same place, the RFID reader is by the information in RFID middleware reading RFID electronic tag, the signal of the information that the RFID reader reads and the collection of temperature monitoring terminal transfers to the cloud terminal device, and the cloud terminal device is connected with the communication of cloud computing detection platform by network.
further, described temperature monitoring terminal comprises a plurality of wireless temperature measurement probes, single-chip microcomputer, data acquisition module, data transmission module, storer, audible-visual annunciator, the signal output part of each described wireless temperature measurement probe is connected with the signal input part wireless telecommunications of described data acquisition module, the signal output part of described data acquisition module is connected with the signal input part of described single-chip microcomputer, described single-chip microcomputer is connected with described storer, described single-chip microcomputer is connected with described cloud terminal device by described data transmission module, the alarm signal output ends of described single-chip microcomputer is connected with described audible-visual annunciator.
Further, described cloud computing monitoring platform comprises receiving element, cloud computing judging unit, cloud computing unit, storage unit and vehicle information database server, the signal output part of described receiving element is connected with the signal input part of described cloud computing judging unit, the signal output part of described cloud computing judging unit is connected with the signal input part of described storage unit, and the signal output part of described cloud storage element is connected with the signal input part of described power transmission line database server.
The beneficial effects of the utility model are:
The utility model has been realized the monitoring to power transmission line temperature different location and different time, by the monitor temperature analysis-by-synthesis, has analysed in depth the essential cause of the phenomenon that occurs on the transmission line of electricity.Cloud computing is as a kind of emerging scientific theory, and the application in intelligent power transmission line monitoring system has improved accuracy and the intelligent degree of system monitoring.
Description of drawings
Fig. 1 is that the utility model is based on the structural representation of the power transmission line temperature monitoring system of RFID and cloud computing.Fig. 2 is the structural representation of temperature monitoring terminal in the utility model.
Embodiment
The utility model is described in further detail below in conjunction with drawings and the specific embodiments:
As shown in Figure 1, a kind of power transmission line temperature monitoring system based on RFID and cloud computing of the utility model, comprise temperature monitoring terminal, RFID electronic tag, RFID reader, RFID middleware and cloud terminal device, the signal output part of described RFID reader is connected with the signal input part of described RFID middleware, described RFID middleware be connected the signal output part of temperature monitoring terminal and be connected with the signal input part of described cloud terminal device, described cloud terminal device by network be connected with the communication of cloud computing monitoring platform.
The RFID electronic tag is affixed on the temperature monitoring terminal, the temperature monitoring terminal is installed on tested power transmission line, RFID reader, RFID middleware and cloud installing terminal equipment are in the same place, the RFID reader is by the information in RFID middleware reading RFID electronic tag, the signal of the information that the RFID reader reads and the collection of temperature monitoring terminal transfers to the cloud terminal device, and the cloud terminal device is connected with the communication of cloud computing detection platform by network.
as shown in Figure 2, described temperature monitoring terminal comprises a plurality of wireless temperature measurement probes, single-chip microcomputer, data acquisition module, data transmission module, storer, audible-visual annunciator, the signal output part of each described wireless temperature measurement probe is connected with the signal input part wireless telecommunications of described data acquisition module, the signal output part of described data acquisition module is connected with the signal input part of described single-chip microcomputer, described single-chip microcomputer is connected with described storer, described single-chip microcomputer is connected with described cloud terminal device by described data transmission module, the alarm signal output ends of described single-chip microcomputer is connected with described audible-visual annunciator.
As shown in Figure 1, described cloud computing monitoring platform comprises receiving element, cloud computing judging unit, cloud computing unit, storage unit and power transmission line database server, the signal output part of described receiving element is connected with the signal input part of described cloud computing judging unit, the signal output part of described cloud computing judging unit is connected with the signal input part of described storage unit, and the signal output part of described cloud storage element is connected with the signal input part of described power transmission line database server.

Claims (2)

1. power transmission line temperature monitoring system based on RFID and cloud computing, it is characterized in that: comprise temperature monitoring terminal, RFID electronic tag, RFID reader, RFID middleware and cloud terminal device, the signal output part of described RFID reader is connected with the signal input part of described RFID middleware, described RFID middleware be connected the signal output part of temperature monitoring terminal and be connected with the signal input part of described cloud terminal device, described cloud terminal device is connected with the communication of cloud computing monitoring platform by network.
2. the power transmission line temperature monitoring system based on RFID and cloud computing according to claim 1, it is characterized in that: described temperature monitoring terminal comprises a plurality of wireless temperature measurement probes, single-chip microcomputer, data acquisition module, data transmission module, storer, audible-visual annunciator, the signal output part of each described wireless temperature measurement probe is connected with the signal input part wireless telecommunications of described data acquisition module, the signal output part of described data acquisition module is connected with the signal input part of described single-chip microcomputer, described single-chip microcomputer is connected with described storer, described single-chip microcomputer is connected with described cloud terminal device by described data transmission module, the alarm signal output ends of described single-chip microcomputer is connected with described audible-visual annunciator.
CN 201220375767 2012-08-01 2012-08-01 RFID and cloud calculation-based power transmission line temperature monitoring system Expired - Fee Related CN202948453U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220375767 CN202948453U (en) 2012-08-01 2012-08-01 RFID and cloud calculation-based power transmission line temperature monitoring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220375767 CN202948453U (en) 2012-08-01 2012-08-01 RFID and cloud calculation-based power transmission line temperature monitoring system

Publications (1)

Publication Number Publication Date
CN202948453U true CN202948453U (en) 2013-05-22

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CN 201220375767 Expired - Fee Related CN202948453U (en) 2012-08-01 2012-08-01 RFID and cloud calculation-based power transmission line temperature monitoring system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103499741A (en) * 2013-10-22 2014-01-08 天津七一二通信广播有限公司 Obtaining method of resampling high signal-to-noise ratio spectrum of power temperature measuring equipment based on internet of things

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103499741A (en) * 2013-10-22 2014-01-08 天津七一二通信广播有限公司 Obtaining method of resampling high signal-to-noise ratio spectrum of power temperature measuring equipment based on internet of things

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Granted publication date: 20130522

Termination date: 20130801