CN205692169U - Energy supervision system based on Internet of Things Yu cloud computing - Google Patents
Energy supervision system based on Internet of Things Yu cloud computing Download PDFInfo
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- CN205692169U CN205692169U CN201620482086.0U CN201620482086U CN205692169U CN 205692169 U CN205692169 U CN 205692169U CN 201620482086 U CN201620482086 U CN 201620482086U CN 205692169 U CN205692169 U CN 205692169U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
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Abstract
The utility model discloses a kind of energy supervision system based on Internet of Things Yu cloud computing, comprise data collection layer, data transfer layer and managed application data-layer, data collection layer is made up of the various measuring instruments with data remote function, data transfer layer is made up of concentrator and harvester, harvester is connected with the various measuring instruments of data collection layer, several harvesters are connected with concentrator and carry out in data set, managed application data-layer comprises cloud computing platform, client and management platform, client and management platform are connected with cloud computing platform, concentrator is connected with cloud computing platform.This utility model simple in construction, builds conveniently, with low cost, easily extends, the huge advantage of easy care, can greatly promote pushing forward comprehensively of China's energy-saving and emission-reduction strategy.
Description
Technical field
This utility model relates to a kind of energy supervision system, a kind of energy supervision based on Internet of Things Yu cloud computing
System.
Background technology
China's " energy-saving and emission-reduction " strategy, smart power grid user end adapted electricity is intelligent to be managed with enterprise energy, in the urgent need to
Precisely, efficiently, conveniently, the energy measurement regulatory measure of low cost, with solve enterprise energy consumption diagnose, the subitem meter of energy consumption data
Amount and multidimensional analysis;The on-line monitoring of energy consumption and dynamic optimization, energy-conservation before and after the actual effect contrast problem such as verification.Energy-saving and emission-reduction are
One system engineering the biggest, it is necessary to have energy measurement analysis and evaluation architecture.This architecture does not possesses, just at present
Being a lack of the technological means of metering separate, this present situation has become the technical bottleneck that the energy-saving and emission-reduction of restricting current China are pushed forward comprehensively.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of energy supervision system based on Internet of Things Yu cloud computing
System, it solves the big data collection and processing system of the magnanimity energy, for solving enterprise energy consumption regulating diagnostic, the subitem meter of energy consumption data
Amount and multidimensional analysis.
For solving above-mentioned technical problem, this utility model be the technical scheme is that
A kind of energy supervision system based on Internet of Things Yu cloud computing, it is characterised in that: Internet of Things and the technology of cloud computing
Framework, comprises data collection layer, data transfer layer and managed application data-layer, and data collection layer is by having the various of data remote function
Measuring instrument is constituted with concentrator and harvester, and harvester is connected with the various measuring instruments of data collection layer, and several gather
Device is connected with concentrator and carries out in data set, constitutes bottom Internet of things hardware system, and data transfer layer is passed through by Internet of things system
Gateway is connected with cloud computing system, and data realize transmission and communication by communication management software, and managed application data-layer comprises cloud computing
Platform, communication server, database server, application server, client and management platform, client (mobile client) and
Management platform is connected with cloud computing platform, completes data handling utility service.
Further, the various measuring instrument of described data collection layer is led to by RS485 bus, M-BUS bus, CAN
Letter stipulations interconnection, and it is connected exchange data with harvester and concentrator by bus system.
Further, described concentrator and cloud computing platform are real by GPRS/3G/4G or WiFi communication and ICP/IP protocol
Existing data exchange, uses 470-490MHz ISM band to realize and local wireless local Internet of Things between harvester and concentrator
Communication.
Further, described cloud computing platform comprises cloud communication server, it is achieved system application server and Internet of Things netting index
According to transmitting and communication;Data server, it is provided that data storage and process;Application server, carries out the verification of data, meter
Calculate, store, analyze, model, management etc., user side electricity consumption Behavior modeling, decision support contour level service are provided.
Further, harvester is by being acquired energy consumption data with the energy consumption table of RS485 and encrypting, data acquisition
Front device uses super low-power consumption element, and all power takings from transmission line of electricity of each sensor node, without battery.
Further, data collection layer is connected with ammeter in same switching station or switchgear house by RS485 bus, runs mark
Quasi-MDBUS, DL/T645-1997, DL/T645-2007 or M-BUS communication protocol, supports non-standard or enterprise exclusive communication rule
About, the up data exchange realized by the wireless CEINWARE-NET of 470Mhz-510MHz with harvester;Energy consumption data is by carrying
The energy consumption table of RS485 interface is connected to meter reading device and carries out data acquisition, by wireless CEINWARE-NET, is adopted by each meter reading device
The data summarization collected is in concentrator, and concentrator realizes the transparent transmission of data, the built-in flush bonding processor pair of data transmission terminal
Data carry out caching, be sent to server by GPRS network after protocol encapsulation, carry out follow-up Data Analysis Services, meter reading device
It is directly connected on energy consumption table by RS485 EBI, both can support single energy consumption table, it is possible to support multiple energy consumption simultaneously
Table, concentrator also directly can be connected with ammeter by RS485 bus, it is achieved to the collection of energy consumption table parameter, storage, pretreatment or
The electric energy meter data collected are sent to server in real time.
This utility model compared with prior art, has the following advantages and effect:
1, simple in construction, builds conveniently, with low cost, easily extends, the huge advantage of easy care, can greatly promote China's joint
Pushing forward comprehensively of strategy can be reduced discharging;
2, the big data collection and processing system of the magnanimity energy is solved, for solving enterprise energy consumption regulating diagnostic, energy consumption data
Metering separate and multidimensional analysis;
3, the on-line monitoring of energy consumption and dynamic optimization, energy-conservation before and after the problem such as actual effect contrast verification, for China's Intelligent electric
Network users end adapted electricity is intelligent to be managed with enterprise energy, it is achieved enterprise's intellectually and automatically that can manage provides one
Precisely, efficiently, conveniently, the technological means of low cost.
Accompanying drawing explanation
Fig. 1 is schematic diagram based on Internet of Things Yu the energy supervision system of cloud computing of the present utility model.
Detailed description of the invention
The utility model is described in further detail below in conjunction with the accompanying drawings and by embodiment, and following example are right
Explanation of the present utility model and this utility model is not limited to following example.
As it can be seen, a kind of energy supervision system based on Internet of Things Yu cloud computing of the present utility model, system is constituted adopts
With " Internet of Things-gateway-cloud computing three stage layered Technical Architecture, comprises data collection layer, data transfer layer and managed application data-layer.
Internet of Things and the Technical Architecture of cloud computing, comprise data collection layer, data transfer layer and managed application data-layer, data acquisition
Collection layer is made up of with concentrator and harvester the various measuring instruments with data remote function, harvester and data collection layer
Various measuring instruments connect, and several harvesters are connected with concentrator and carry out in data set, composition bottom Internet of things hardware system,
Data transfer layer is connected with cloud computing system by gateway by Internet of things system, data realize transmitting by communication management software and
Communication, managed application data-layer comprises cloud computing platform, communication server, database server, application server, client and management
Platform, client (mobile client) and management platform are connected with cloud computing platform, complete data handling utility service.
Data collection layer is made up of the various measuring instruments 1 with data remote function, and measuring instrument 1 includes ammeter, stream
Gauge, gas meter, water meter etc..By communication protocols such as RS485 bus, M-BUS bus, CAN, by owning in the same area
Measuring instrument interconnects, and is connected exchange data with harvester/concentrator by bus system.Concentrator can by RS485(or
M-BUS) directly read mechanical floor instrumented data, the number of far distance instrument can be read again by the way of harvester is with indirect meter reading
According to.
Data collection layer is made up of GDCG1R01 concentrator 3 and harvester 2, harvester 2 and the various meters of data collection layer
Amount instrument connects, and several harvesters 2 are connected with concentrator 3 and carry out in data set.Descending real by various standard industry bus
Now exchange with mechanical floor measuring instrument data, up by GPRS/3G/4G or WiFi communication and ICP/IP protocol realization and upper strata
The data exchange of server.470-490MHz ISM band is used to realize and local wireless local thing between harvester and concentrator
The communication of networking.Multiple communication protocol supported by concentrator with intelligent gateway function, supports between mechanical floor and server
Data exchange and communication.
Managed application data-layer comprises cloud computing platform, client 4 and management platform 5, client 4 and management platform 5 and cloud meter
Calculation platform connects, and concentrator is connected with cloud computing platform.Management level can be by the publicly-owned or privately owned Cloud Server of enterprise or traditional services
Device realizes.Cloud communication server realizes system application server and Internet of Things reliable data transmission and communication, cloud data server
Data storage is provided and processes.Application server can carry out data verification, calculate, store, analyze, model, management etc., provide
User side electricity consumption Behavior modeling, decision support contour level service.
Harvester is by being acquired energy consumption data with the energy consumption table of RS485 and encrypting, data acquisition front device
Using super low-power consumption element, all power takings from transmission line of electricity of each sensor node, without battery.
Data collection layer is connected with ammeter in same switching station or switchgear house by RS485 bus, operation standard MDBUS,
DL/T645-1997, DL/T645-2007 or M-BUS communication protocol, supports the exclusive communication protocol of non-standard or enterprise, up logical
Cross the wireless CEINWARE-NET of 470Mhz-510MHz and realize the data exchange with harvester.Energy consumption data is by band RS485 interface
Energy consumption table is connected to meter reading device and carries out data acquisition, and by wireless CEINWARE-NET, the data gathered by each meter reading device are converged
Always in concentrator, concentrator realizes the transparent transmission of data, and data are delayed by the built-in flush bonding processor of data transmission terminal
Depositing, be sent to server by GPRS network after protocol encapsulation, carry out follow-up Data Analysis Services, meter reading device passes through RS485
EBI is directly connected on energy consumption table, both can support single energy consumption table, it is possible to supporting multiple energy consumption table, concentrator is also simultaneously
Directly can be connected with ammeter by RS485 bus, it is achieved the collection of energy consumption table parameter, storage, pretreatment maybe will be collected
Electric energy meter data are sent to server in real time.The data that energy consumption table concentrator gathers are through GSM network air interface functional module pair
Decoding data processes, and is converted into the form transmitted in public network data, is transmitted by GPRS radio data network, finally
Pass to Cloud Server.Cloud Server can carry out data verification, calculate, store, analyze, model, management etc..Can be to abnormal conditions
Report to the police, user's service condition is monitored in real time simultaneously.
Energy consumption data concentrator operationally, at CPU, timing subsystem and concentrator configuration table
Under control, by physical interfaces such as the wireless M-BUS of M-BUS/RS485/CAN/, the multiple communication adapted with data source is used to advise
About read data from data source, or by the parts such as BLT/BLE/Zigbee/ special low-power consumption short-distance wireless communication with under
Level harvester carries out MANET and obtains subordinate's harvester data, and the data of collection are first sent to CPU, through central authorities
After processing unit verification, encryption, coded treatment, after data can be sent to by WiFi/GPRS/3G/4G data change unit
Station server.
Above content described in this specification is only to this utility model example explanation.This utility model
Described specific embodiment can be made various amendment or supplements or use similar side by person of ordinary skill in the field
Formula substitutes, without departing from the content of this utility model description or surmount scope defined in the claims, and all should
Belong to protection domain of the present utility model.
Claims (6)
1. an energy supervision system based on Internet of Things Yu cloud computing, it is characterised in that: Internet of Things and the technology frame of cloud computing
Structure, comprises data collection layer, data transfer layer and managed application data-layer, and data collection layer is by the various meters with data remote function
Amount instrument is constituted with concentrator and harvester, and harvester is connected with the various measuring instruments of data collection layer, several harvesters
Being connected with concentrator and carry out in data set, constitute bottom Internet of things hardware system, data transfer layer is passed through net by Internet of things system
Closing and be connected with cloud computing system, data realize transmission and communication by communication management software, and managed application data-layer comprises cloud computing puts down
Platform, communication server, database server, application server, client and management platform, client and management platform and cloud meter
Calculation platform connects, and completes data handling utility service.
2. according to the energy supervision system based on Internet of Things Yu cloud computing described in claim 1, it is characterised in that: described data
The various measuring instrument of acquisition layer is interconnected by RS485 bus, M-BUS bus, CAN communication protocol, and is passed through bus system
Exchange data it are connected with harvester and concentrator.
3. according to the energy supervision system based on Internet of Things Yu cloud computing described in claim 1, it is characterised in that: described concentration
Device realizes data with cloud computing platform by GPRS/3G/4G or WiFi communication and ICP/IP protocol and exchanges, harvester and concentrator
Between use 470-490MHz ISM band to realize and the communication of local wireless local Internet of Things.
4. according to the energy supervision system based on Internet of Things Yu cloud computing described in claim 1, it is characterised in that: described cloud meter
Calculate platform and comprise cloud communication server, it is achieved system application server and Internet of Things reliable data transmission and communication;Data, services
Device, it is provided that data storage and process;Application server, carry out data verification, calculate, store, analyze, model, management etc., carry
For user side electricity consumption Behavior modeling, decision support contour level service.
5. according to the energy supervision system based on Internet of Things Yu cloud computing described in claim 1, it is characterised in that: harvester leads to
Crossing the energy consumption table with RS485 be acquired energy consumption data and encrypt, data acquisition front device uses super low-power consumption element,
The all power takings from transmission line of electricity of each sensor node, without battery.
6. according to the energy supervision system based on Internet of Things Yu cloud computing described in claim 1, it is characterised in that: data acquisition
Layer is connected with ammeter in same switching station or switchgear house by RS485 bus, operation standard MDBUS, DL/T645-1997, DL/
T645-2007 or M-BUS communication protocol, supports the exclusive communication protocol of non-standard or enterprise, up passes through 470Mhz-510MHz
Wireless CEINWARE-NET realizes the data exchange with harvester;Energy consumption data is connected to read by the energy consumption table of band RS485 interface
Table device carries out data acquisition, and by wireless CEINWARE-NET, the data summarization gathered by each meter reading device, in concentrator, is concentrated
Device realizes the transparent transmission of data, and data are cached by the built-in flush bonding processor of data transmission terminal, logical after protocol encapsulation
Crossing GPRS network and be sent to server, carry out follow-up Data Analysis Services, meter reading device is directly connected to by RS485 EBI
On energy consumption table, both can support single energy consumption table, it is possible to support multiple energy consumption table, concentrator also can pass through RS485 bus simultaneously
Directly it is connected with ammeter, it is achieved the electric energy meter data collected maybe are passed by the collection of energy consumption table parameter, storage, pretreatment in real time
Deliver to server.
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105893629A (en) * | 2016-05-25 | 2016-08-24 | 江苏斯因信息科技有限公司 | Energy monitoring system and software based on Internet of Things and cloud computing |
CN108444376A (en) * | 2018-02-10 | 2018-08-24 | 西安前观测控技术有限公司 | Ultra-large real-time distributed strain measurement system |
CN111413905A (en) * | 2020-04-08 | 2020-07-14 | 广州天智汇信息科技有限公司 | Management system of energy consumption monitoring equipment |
CN111521220A (en) * | 2020-05-07 | 2020-08-11 | 南京电博机器人技术有限公司 | Power transmission and transformation equipment state monitoring system |
CN111556381A (en) * | 2020-05-03 | 2020-08-18 | 常州盘石水泥有限公司 | Efficient electric energy data acquisition method for cement production workshop |
CN112698628A (en) * | 2020-12-11 | 2021-04-23 | 成都知视界信息科技有限公司 | Industrial data acquisition method and system |
CN114553910A (en) * | 2022-01-14 | 2022-05-27 | 博睿特(辽宁)环保科技有限公司 | Intelligent acquisition method for industrial Internet of things cloud service platform |
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2016
- 2016-05-25 CN CN201620482086.0U patent/CN205692169U/en active Active
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105893629A (en) * | 2016-05-25 | 2016-08-24 | 江苏斯因信息科技有限公司 | Energy monitoring system and software based on Internet of Things and cloud computing |
CN108444376A (en) * | 2018-02-10 | 2018-08-24 | 西安前观测控技术有限公司 | Ultra-large real-time distributed strain measurement system |
CN111413905A (en) * | 2020-04-08 | 2020-07-14 | 广州天智汇信息科技有限公司 | Management system of energy consumption monitoring equipment |
CN111556381A (en) * | 2020-05-03 | 2020-08-18 | 常州盘石水泥有限公司 | Efficient electric energy data acquisition method for cement production workshop |
CN111521220A (en) * | 2020-05-07 | 2020-08-11 | 南京电博机器人技术有限公司 | Power transmission and transformation equipment state monitoring system |
CN112698628A (en) * | 2020-12-11 | 2021-04-23 | 成都知视界信息科技有限公司 | Industrial data acquisition method and system |
CN114553910A (en) * | 2022-01-14 | 2022-05-27 | 博睿特(辽宁)环保科技有限公司 | Intelligent acquisition method for industrial Internet of things cloud service platform |
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