CN205334174U - Seawater desalination electric power system's remote monitoring device - Google Patents

Seawater desalination electric power system's remote monitoring device Download PDF

Info

Publication number
CN205334174U
CN205334174U CN201521089751.1U CN201521089751U CN205334174U CN 205334174 U CN205334174 U CN 205334174U CN 201521089751 U CN201521089751 U CN 201521089751U CN 205334174 U CN205334174 U CN 205334174U
Authority
CN
China
Prior art keywords
single port
server
port
unit
power system
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201521089751.1U
Other languages
Chinese (zh)
Inventor
杨敏杰
马跃华
李朝建
吴泽
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Central Research Institute of Building and Construction Co Ltd MCC Group
China Jingye Engineering Corp Ltd
MCC Energy Saving and Environmental Protection Co Ltd
Original Assignee
MCC DESALINATION INVESTMENTS Co Ltd
Central Research Institute of Building and Construction Co Ltd MCC Group
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by MCC DESALINATION INVESTMENTS Co Ltd, Central Research Institute of Building and Construction Co Ltd MCC Group filed Critical MCC DESALINATION INVESTMENTS Co Ltd
Priority to CN201521089751.1U priority Critical patent/CN205334174U/en
Application granted granted Critical
Publication of CN205334174U publication Critical patent/CN205334174U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • Y02P80/114

Abstract

The utility model discloses a seawater desalination electric power system's remote monitoring device, include: acquisition unit, communication unit, the control unit, terminal unit and administrative unit, wherein, acquisition unit's a port is connected with seawater desalination electric power system's a port, and another port of acquisition unit is connected with the control unit's a port, the control unit's a port and acquisition unit port is connected, another port of the control unit with terminal unit's a port is connected, the control unit's a port again with a port of administrative unit is connected, terminal unit's a port is connected with the control unit's a port, a port of administrative unit is connected with the control unit's a port. The utility model discloses can remote monitoring seawater desalination electric power system, reduced human cost, administrative cost, the maintenance cost of equipment operation, improved productivity effect and efficiency.

Description

A kind of long-distance monitorng device of desalinization power system
Technical field
This utility model relates to remote control technology field, particularly to the long-distance monitorng device of a kind of desalinization power system。
Background technology
It is known that on the island that some are remote, the very nervous shortage of productive life water, have a strong impact on people and live normally and the development of enterprise, Seawater Desalination Project solves this difficult problem of productive life water;And the operation of seawater desalination system is mainly by electric power, it is ensured that the normal operation of seawater desalination system, it is critical only that the control in real time of electric power facility, in time maintenance and troubleshooting。Owing to the production and living conditions on island are poor, it is unsuitable for hanging up one's hat of personnel, brings a lot of inconvenience so to desalinization production facility and the management of electric power facility, maintenance, maintenance, increase the cost of production facility and the management of electric power facility, maintenance, maintenance。
Current existing desalinization power generation facilities management and maintaining, it is substantially and passes through manual operation, people monitor the operation of power system at the scene, fault is overhauled by artificial meeting an urgent need after occurring, failure judgement reason also processes, and remote island does not have the Internet to cover, and electric power facility is again dispersed placement, people can waste the plenty of time to on-site maintenance desalinization power generation facility, produces very big human cost and management cost。
Utility model content
The purpose of this utility model is to provide a kind of device that desalinization power system can realize remotely monitoring。
For overcoming Problems existing in correlation technique, this utility model provides the long-distance monitorng device of a kind of desalinization power system, including: collecting unit, communication unit, control unit, terminal unit, administrative unit, wherein,
The Single port of collecting unit is connected with the Single port of described desalinization power system, and the another port of described collecting unit is connected with the Single port of described control unit。
The Single port of described control unit is connected with described collecting unit Single port, and the another port of described control unit is connected with the Single port of described terminal unit, and the Single port again of described control unit is connected with the Single port of described administrative unit。
The Single port of described terminal unit is connected with the Single port of described control unit。
The Single port of described administrative unit is connected with the Single port of described control unit。
One of preferably, described collecting unit includes: gather industrial computer, described collection industrial computer is arranged at described desalinization power system side, the Single port of described collection industrial computer is connected with the Single port of described desalinization power system, and the another port of described collection industrial computer is connected with the Single port of described control unit。
One of preferably, the connected mode of described communication unit includes: the Internet connects and is wirelessly transferred connection。
One of preferably, described control unit includes: the first industry storehouse server, configuration server, Alarm Server, statistical server, history playback server;
Preferably, described first industry storehouse server adopts redundancy to arrange, the Single port of described first industry storehouse server is connected with the Single port of described collection industrial computer, the Single port of described first industry storehouse server is connected with the Single port of described configuration server, the Single port of described first industry storehouse server is connected with the Single port of described Alarm Server, the another port of described first industry storehouse server is connected with the Single port of described statistical server, the Single port again of described first industry storehouse server is connected with the Single port of described history playback server, the Single port of the first industry storehouse server is connected with the Single port of terminal unit, the Single port of described first industry storehouse server is connected with the Single port of administrative unit;
Preferably, the Single port of described configuration server is connected with the Single port of described collection industrial computer, the another port of described configuration server is connected with the Single port of described first industry storehouse server, and the Single port again of described configuration server is connected with described terminal unit;
Preferably, the Single port of described Alarm Server is connected with the Single port of described first industry storehouse server;
Preferably, the Single port of described statistical server is connected with the Single port of described first industry storehouse server;
Preferably, the Single port of described history playback server is connected with the Single port of described first industry storehouse server。
One of preferably, described terminal unit includes operator's client, described operator's client adopts redundancy to arrange, the Single port of described operator's client is connected with the Single port of described configuration server, and the another port of described operator's client is connected with the Single port of the first industry storehouse server。
Preferably, described terminal unit also includes engineer's client, and the Single port of described engineer's client is connected with the Single port of described configuration server, and the another port of described engineer's client is connected with the Single port of the first industry storehouse server。
One of preferably, described administrative unit includes unidirection insulation network brake, the second industry storehouse server, the webserver。
The Single port of described unidirection insulation network brake is connected with the Single port of described first industry storehouse server, the another port of described unidirection insulation network brake is connected with the Single port of described second industry storehouse server, and the another port of described second industry storehouse server is connected with the described webserver。
From above technical scheme, the basis that this utility model automatically controls based on seawater desalination system, achieve the long-range monitoring to desalinization power system by the Internet, network service, Radio Transmission Technology, application module, be different from traditional uniprocessor version and control system。Reaching the useful purpose of the unmanned to desalinization power system or few man on duty, thus reducing the human cost of equipment operation, management cost, maintenance cost, improve productivity effect and efficiency。
Accompanying drawing explanation
In order to be illustrated more clearly that this utility model embodiment or technical scheme of the prior art, the accompanying drawing used required in embodiment will be briefly described below。It is clear that the accompanying drawing in the following describes is only embodiments more of the present utility model, for those of ordinary skill in the art, under the premise not paying creative work, it is also possible to obtain other accompanying drawing according to these accompanying drawings。
Fig. 1 is this utility model structural representation according to a long-distance monitorng device being preferable to carry out a kind of desalinization power system exemplified;
Fig. 2 is this utility model structural representation according to a long-distance monitorng device being preferable to carry out a kind of desalinization power system exemplified;
The schematic diagram that Fig. 3 is this utility model according to the long-distance monitorng device of an a kind of desalinization power system accessed in the Internet transmission mode being preferable to carry out exemplifying;
The schematic diagram that Fig. 4 is this utility model according to the long-distance monitorng device of an a kind of desalinization power system accessed with wireless transmission method being preferable to carry out exemplifying;
Illustrate:
101-collecting unit, 102-communication unit, 103-control unit, 104-terminal unit, 105-administrative unit;
1011-gathers industrial computer, 1031-the first industry storehouse server, 1032-configuration server, 1033-Alarm Server, 1034-statistical server, 1035-history playback server, 1041-operator's client, 1042-engineer's client, the unidirectional isolation valve of 1051-, 1052-the second industry storehouse server, the 1053-webserver。
Side, 2001-scene switch A, side, 2002-scene switch b, 2003-authenticated encryption device A, 2004-router A, 2005-router B, 2006-authenticated encryption preposition switch of device B, 2007-, 2008-authenticated encryption device C, 2009-router C, 2010-router D, 2011-authenticated encryption preposition switch of device D, 2022-, 2023-center switch, 2024-GPS pair time server, 2025-show that giant-screen, 2026-manage switch。
3001-the oneth MDS (MultipointDistributionSystem, multi-point distribution system) data radio station, 3002-the 2nd MDS data radio station, 3003-the 3rd MDS data radio station, 3004-number pass to launch and receive tower。
Detailed description of the invention
Below in conjunction with the accompanying drawing in this utility model embodiment, the technical scheme in this utility model embodiment is carried out clear, complete description。Obviously, described embodiment is only a part of embodiment of this utility model, rather than whole embodiments。Based on the embodiment in this utility model, the every other embodiment that those of ordinary skill in the art obtain under not making creative work premise, broadly fall into the scope of this utility model protection。
This utility model below embodiment provides the long-distance monitorng device of a kind of desalinization power system, as shown in Figure 1, the long-distance monitorng device of desalinization power system includes: collecting unit 101, communication unit 102, control unit 103, terminal unit 104, administrative unit 105, wherein
The Single port of collecting unit 101 is connected with the Single port of desalinization power system, and the another port of collecting unit 101 is connected with the Single port of control unit 103。
Collecting unit 101, for gathering the data of desalinization power system;And send the data collected to control unit 103, and receive the instructions controlling single 103 yuan of transmissions。
Communication unit 102, for being transferred to control unit 103 by the data that collecting unit 101 gathers;Instruction transmission control unit 103 sent is to terminal unit 104, administrative unit 105 and collecting unit 101 and the order transmission that sent by terminal unit 104 to control unit 103。
The Single port of control unit 103 is connected with collecting unit 101 Single port, and the another port of control unit 103 is connected with the Single port of terminal unit 104, and the Single port again of control unit 103 is connected with the Single port of administrative unit 105。
The data received, for receiving the data that collecting unit 101 sends, are processed, and generate instruction by control unit 103, send the instruction generated to terminal unit 104;And receive the order that terminal unit 104 generates, and described order is sent to collecting unit 101, the data of 103 in control unit are sent to administrative unit 104。
The Single port of terminal unit 104 is connected with the Single port of control unit 103。
Terminal unit 104, for the instruction that reception control unit 103 sends, is undertaken described instruction processing generating and orders transmission to described control unit 103, and for monitoring the live view of desalinization power system。
The Single port of administrative unit 105 is connected with the Single port of control unit 103。
Described data, for the data that reception control unit 103 sends, are stored, manage by administrative unit 105;And for described data being supplied to the extraneous client beyond the long-distance monitorng device of described desalinization power system。Management personnel would know that the data of desalinization power system by extraneous client, for described data, it is proposed to the management of electric power facility, maintenance and potential faults handling suggestion。
One of as in figure 2 it is shown, preferably, collecting unit 101 includes: gather industrial computer 1011;Gathering industrial computer 1011 and be arranged at described desalinization power system side, the Single port gathering industrial computer 1011 is connected with the Single port of desalinization power system, and the another port gathering industrial computer 1011 is connected with the Single port of control unit 103。
Gather in industrial computer 1011 and be provided with IOServer (data acquisition) module and IOServer (data acquisition) harvester, for gathering the data of desalinization power system;And described data are sent to control unit 103, and the instruction that reception control unit 103 sends。
One of preferably, the access way of communication unit 102 includes: linking Internet and be wirelessly transferred access。
Wherein, in being wirelessly transferred access way, communication center receives transmission antenna and adopts omnidirectional to arrange, and desalinization power system side transmission reception antenna adopts orientation to arrange。
One of as in figure 2 it is shown, preferably, control unit 103 includes: the first industry storehouse server 1031, configuration server 1032, Alarm Server 1033, statistical server 1034, history playback server 1035。
As shown in Figure 2, it is preferable that, the first industry storehouse server 1031 adopts redundancy to arrange, and redundancy is arranged: the equipment identical by multiple stage is in parallel, backups each other, improves the stability of system。
The Single port of the first industry storehouse server 1031 is connected with the Single port gathering industrial computer 1011, the Single port of the first industry storehouse server 1031 is connected with the Single port of configuration server 1032, the Single port of the first industry storehouse server 1031 is connected with the Single port of Alarm Server 1033, the another port of the first industry storehouse server 1031 is connected with the Single port of statistical server 1034, the Single port again of the first industry storehouse server 1031 is connected with the Single port of history playback server 1035, the Single port of the first industry storehouse server 1031 is connected with the Single port of terminal unit 104, the Single port of the first industry storehouse server 1031 is connected with the Single port of administrative unit 105。
First industry storehouse server 1031 gathers, for receiving, the data that industrial computer 1011 sends, and data is stored, it is provided that historical data, improves the safety and reliability of monitoring system。And send the data to configuration server 1032, Alarm Server 1033, statistical server 1034, history playback server 1035, terminal unit 104, and 1 mirror image is to administrative unit 105。
As shown in Figure 2, preferably, the Single port of configuration server 1032 is connected with the Single port gathering industrial computer 1011, and the another port of configuration server 1032 is connected with the Single port of the first industry storehouse server 1031, and the Single port again of configuration server is connected with described terminal unit 104;
Configuration server 1032 adopts redundancy to arrange, and can improve the safety and reliability of monitoring system;KingSCADA (kingsupervisorycontrolanddataacquisition it is provided with in configuration server 1032, Monitoring and Controlling and data acquisition) module, for receiving the data gathering industrial computer 1011 and the first industry storehouse server 1031 transmission, the data of reception are carried out data statistics, event handling, alert process, picture is monitored, accident record ripple, user right is managed concentratedly by the login service device simultaneously as whole system, and according to described data genaration instruction, described instruction is sent to gathering industrial computer 1011, operator's client 1041 of the first industry storehouse server 1031 and terminal unit 104。
As shown in Figure 2, it is preferable that, the Single port of the Single port of Alarm Server 1033 and the first industry storehouse server 1031 is connected。
KingA&E (reporting to the police and event detection) module it is provided with in Alarm Server 1033, for receiving the data that the first industry storehouse server 1031 sends, data are processed, it is provided that warning information, the result processed is generated instruction and sends to described first industry storehouse server 1031。
As shown in Figure 2, it is preferable that, the Single port of the Single port of statistical server 1034 and the first industry storehouse server 1031 is connected。
KingCalculation (statistical computation) module it is provided with in statistical server 1034, for receiving the data that the first industry storehouse server 1031 sends, data are carried out statistical computation, report form processing, and the result processed is generated instruction, send to described first industry storehouse server 1031。
As shown in Figure 2, it is preferable that, the Single port of the Single port of history playback server 1035 and the first industry storehouse server 1031 is connected。
It is provided with KingGraphic (image procossing) module in history playback server 1035, for receiving the data that described first industry storehouse server 1031 sends, realizes history playback, emergency review by graphical interfaces。
One of as in figure 2 it is shown, preferably, the Single port of described operator's client 1041 is connected with the Single port of configuration server 1032, and the another port of operator's client 1041 is connected with the Single port of the first industry storehouse server 1031。
Terminal unit 104 includes operator's client 1041, operator's client 1041 adopts redundancy to arrange, KingSCADA module it is provided with in operator's client 1041, for receiving data and the instruction of the first industry storehouse server 1031 and configuration server 1032 transmission, undertaken the instruction received processing and generate order, described order is sent to configuration server 1032, and for monitoring the live picture of desalinization power system。
As shown in Figure 2, preferably, terminal unit 104 also includes engineer's client 1042, and the Single port of described engineer's client 1042 is connected with the Single port of configuration server 1032, and the another port of engineer's client 1042 is connected with the Single port of the first industry storehouse server 1031。
Engineer's client 1042 is for receiving data and the instruction of described first industry storehouse server 1031 and configuration server 1032 transmission, undertaken the instruction received processing and generate order, described order is sent to configuration server 1032 and is used for monitoring the live picture of desalinization power system。
Collecting unit 101, communication unit 102, control unit 103, administrative unit 105, for described operator's client 1041 is authorized and monitored, are managed by engineer's client 1042。
Engineer's client 1042 is upgraded for the renewal with system that KingSCADA (kingsupervisorycontrolanddataacquisition, Monitoring and Controlling and data acquisition) module, KingA&E (reporting to the police and event detection) module, KingCalculation (statistical computation) module, KingGraphic (image procossing) module are modified。
By engineer's client 1042 to the continuous renewal of above-mentioned modular system, upgrading, it is ensured that the advance of the long-distance monitorng device of seawater desalination system, stability, reliability, better adapt to working environment。
The authority of engineer's client 1042 is higher than operator's client 1041。
One of as in figure 2 it is shown, preferably, administrative unit 105 includes unidirection insulation network brake the 1051, second industry storehouse server 1052, the webserver 1053。
The Single port of the Single port of unidirection insulation network brake 1051 and the first industry storehouse server 1031 is connected, the another port of unidirection insulation network brake is connected with the Single port of described second industry storehouse server 1052, and the another port of described second industry storehouse server 1052 is connected with the webserver 1053。
Preferably, unidirection insulation network brake is for being sent to the second industry storehouse server 1052 by the data that the first industry storehouse server 1031 sends。
Second industry storehouse server 1052 is for receiving the data that described first industry storehouse server 1031 sends, and described data are stored。
The long-range of described desalinization power system, for the data in the second industrial storehouse server 1052 are sent the extraneous client to the long-distance monitorng device of described desalinization power system, is monitored by the webserver 1053 for described extraneous client。
Unidirection insulation network brake is one safety isolation network gate, can only single effect, control unit 103 and administrative unit 105 carry out data isolation by unidirection insulation network brake, and the first industry storehouse server 1031 transfers data to the second industry storehouse server 1052 by mirror-image fashion。Mirror image is stored wherein by the second industry storehouse server 1052 in the field data of the first industrial service device 1031, picture, picture。Management net arranges WEB (network) server one, it is provided that based on the data access of B/S (Browser/Server, browser/server) pattern。
Second industry storehouse server mirroring is from the field data of the first industrial service device, picture, picture, and stores wherein。Generate WEB (network) mode, B/S (Browser/Server, browser/server) pattern browsing pages。
Management personnel browse desalinization Electrical facility long distance control system by the account number of extraneous client and Certificate Authority, understand and grasp field apparatus ruuning situation and efforts parameter etc.。
As shown in Figure 3, as a preferred embodiment, also including of the long-distance monitorng device of a kind of desalinization power system: on-the-spot top-cross change planes A2001, on-the-spot top-cross change planes B2002, authenticated encryption device A2003, router A2004, router B2005, authenticated encryption device B2006, preposition switch 2007, authenticated encryption device C2008, router C2009, router D2010, authenticated encryption device D2011, preposition switch 2022, center switch 2023, GPS pair time server 2024, display giant-screen 2025, management switch 2026。
Desalinization power system includes wind power control system, photovoltaic control system, desalinization electric control system, management server, controls work station, telecontrol system。
The port of wind power control system, the port of photovoltaic control system, desalinization electric control system the port A2001 that changes planes with on-the-spot top-cross respectively be connected, the port of telecontrol system, the port of authenticated encryption device A2003, the port of router A2004, the port of router B2005, authenticated encryption device B2006 port, change planes the port of A2001 with on-the-spot top-cross and the port of preposition switch 2007 is connected respectively。
The port of management server, control the port of work station, the respectively B2002 that changes planes with on-the-spot top-cross and be connected, the port of telecontrol system, the port of authenticated encryption device C2008, the port of router C2009, the port of router D2010, authenticated encryption device D2011 port, change planes the port of B2002 with on-the-spot top-cross and the port of preposition switch 2022 is connected respectively。
The port gathering industrial computer 1011 is connected with the port of preposition switch 2022 and the port of center switch 2023 respectively。
When GPS pair, the port of server 2024, the port of the first industry storehouse server 1031, the port of configuration server 1032, the port of history playback server 1035, the port of Alarm Server 1033, the port of statistical server 1034, the port of operator's client 1041 are connected with the port of center switch 2023 respectively with the port of engineer's client 1042。
The another port of center switch 2023 is connected with a port of unidirection insulation network brake 1051, and another port of unidirection insulation network brake 1051 is connected with a port of management switch 2026。
The another port of management switch 2026 is connected with the port of the port of the second industry storehouse server 1052, the webserver 1053。
As shown in Figure 4, as a preferred embodiment, also including of the long-distance monitorng device of a kind of desalinization power system: a MDS (MultipointDistributionSystem, multi-point distribution system) data radio station the 3001, the 2nd MDS data radio station the 3002, the 3rd MDS data radio station 3003, number pass launch receive tower 3004, preposition switch 2007, center switch 2023, GPS pair time server 2024, display giant-screen 2025, management switch 2026。
The wind power control system of desalinization power system, photovoltaic control system, desalinization electric control system are connected with a MDS data radio station 3001 respectively, management server, control work station are connected with the 2nd MDS data radio station 3002 respectively, and the wireless data sending of composition desalinization electric control system side launches reception communication system;Number passes transmitting reception tower 3004 and is connected with the 3rd MDS data radio station 3003, and a port of the 3rd MDS data radio station 3003 is connected with the port of center switch 2023, the wireless data sending communication system at composition control center。
The field data of desalinization power system is sent to number to pass to launch and receives tower 3004 by the oneth MDS data radio station the 3001, the 2nd MDS data radio station 3002, number passes to launch and receives tower 3004 again by described data transmission to the 3rd MDS data radio station 3003, the data received are sent to gathering industrial computer 1011 by the 3rd MDS data radio station 3003, and the port gathering industrial computer 1011 is connected with the port of preposition switch 2007 and the port of center switch 2023 respectively。
When GPS pair, the port of server 2024, the port of the first industry storehouse server 1031, the port of configuration server 1032, the port of history playback server 1035, the port of Alarm Server 1033, the port of statistical server 1034, the port of operator's client 1041 are connected with the port of center switch 2023 respectively with the port of engineer's client 1042。
The another port of center switch 2023 is connected with a port of unidirection insulation network brake 1051, and another port of unidirection insulation network brake 1051 is connected with a port of management switch 2026。
The another port of management switch 2026 is connected with the port of the port of the second industry storehouse server 1052, the webserver 1053。
As shown in Figure 4, owing to desalinization power system device is usually in remote districts, network signal is poor, indivedual local network coverages less than, in the region that communication network conditions is poor, adopt the access way of wireless digital broadcasting station MDS according to site environment。Wireless data communication network serves as the key player of data transmission in the entire system。MDS data radio station possesses high-reliability, two-forty, remote, networking and dilatation way feature flexibly。Can be travelled to and fro between the long-distance monitorng device of desalinization power system and desalinization power system scene by this network, field apparatus service data and control instruction。After oneth MDS data radio station the 3001, the 2nd MDS data radio station 3002 collects data, by the central site network of center switch 2023 Access Control unit 103 and terminal unit 104 and administrative unit 105。Control unit 103, terminal unit 104 and administrative unit 105 adopt redundancy Dual-Ethernet structure。The network transmission protocol adopts TCP/IP procotol, and network transmission speed is not less than 100Mbit/s, and network configuration scale need to meet system distant view requirement。
When transmission range farther out time, relay transmission can be installed additional between the long-distance monitorng device of desalinization power system and desalinization power system scene。
Disclosed in this utility model, the feature of the long-distance monitorng device of a kind of desalinization power system is as follows:
1. clock synchronizing function: provide double; two time service service in control unit 103, with the Big Dipper, GPS (GlobalPositioningSystem, global positioning system) as time base source, it is ensured that the time consistency of the collection data at remote control center。
2. data acquisition and procession function: gather in industrial computer 1011 and be provided with IOServer (data acquisition) module and IOServer harvester, for the data of collection site electric power facility system and telecontrol system, and described data are sent to configuration server 1032 and the first industry storehouse server 1031 of control unit 103。
3. live picture function for monitoring: be placed in the KingSCADA module in configuration server 1032 and the KingSCADA module being placed in operator's client 1041 completes the configuration of picture and corresponding I/O (input/output, input port/output port) process of point data, it is achieved live picture function for monitoring。
4. the integration function of data and system: owing to data acquisition stores with unified, each single fighter morphotype block system has been integrated with above a server, and operator station completes corresponding supervision according to the difference of oneself authority。
5. remote control function: the KingSCADA module being placed in configuration server 1032 and operator's client 1041 is the module for industrial control system, directly contacts with 1/O point, can read data and can send again data, it may be achieved control function constantly。
6. concentrated alarm processes function: be placed in the KingA&E module in Alarm Server 1033, for when monitoring alert data, generating alarm command, Alarm Server 1033 prompt alarm information。
7. emergency review function: be placed in the KingGraphic module in history playback server 1035, is used for realizing emergency review configuration emergency review module by graphic interface, by calling the data deposited in industry storehouse A, industry storehouse B, it is achieved playback function。
8. failure wave-recording function: at the scene during system jam; control unit 103 records the situation of change of the various parameters of the on-the-spot forward and backward process of electric power facility fault; by to the analysis of these parameters, compare, to analyzing and processing accident, judge to protect whether correct operation, improve system safety operation level and have very big effect。
As known from the above, the purpose of this utility model is in that to provide the long-distance monitorng device of a kind of desalinization power system, the basis that this utility model automatically controls based on seawater desalination system, achieve the long-range monitoring to desalinization power system by the Internet, network service, Radio Transmission Technology, application software, be different from traditional uniprocessor version and control system。Reach the useful purpose of the unmanned to desalinization power system or few man on duty。Thus reducing the human cost of equipment operation, management cost, maintenance cost, improve productivity effect and production efficiency。
Those skilled in the art, after considering description and putting into practice utility model disclosed herein, will readily occur to other embodiment of the present utility model。The application is intended to any modification of the present utility model, purposes or adaptations, and these modification, purposes or adaptations are followed general principle of the present utility model and include the undocumented known general knowledge in the art of this utility model or conventional techniques means。Description and embodiments is considered only as exemplary, and true scope of the present utility model and spirit are pointed out by claim below。
It should be appreciated that this utility model is not limited to precision architecture described above and illustrated in the accompanying drawings, and various amendment and change can carried out without departing from the scope。Scope of the present utility model is only limited by appended claim。

Claims (7)

1. the long-distance monitorng device of a desalinization power system, it is characterised in that described device includes: collecting unit, communication unit, control unit, terminal unit, administrative unit, wherein,
The Single port of described collecting unit is connected with the Single port of described desalinization power system, and the another port of described collecting unit is connected with the Single port of described control unit;
The Single port of described control unit is connected with described collecting unit Single port, and the another port of described control unit is connected with the Single port of described terminal unit, and the Single port again of described control unit is connected with the Single port of described administrative unit;
The Single port of described terminal unit is connected with the Single port of described control unit;
The Single port of described administrative unit is connected with the Single port of described control unit。
2. the long-distance monitorng device of desalinization power system according to claim 1, it is characterized in that, described collecting unit includes: gather industrial computer, described collection industrial computer is arranged at described desalinization power system side, the Single port of described collection industrial computer is connected with the Single port of described desalinization power system, and the another port of described collection industrial computer is connected with the Single port of described control unit。
3. the long-distance monitorng device of desalinization power system according to claim 2, it is characterised in that the connected mode of described communication unit includes: the Internet connects and is wirelessly transferred connection。
4. the long-distance monitorng device of desalinization power system according to claim 3, it is characterised in that described control unit includes: the first industry storehouse server, configuration server, Alarm Server, statistical server, history playback server;
Described first industry storehouse server adopts redundancy to arrange, the Single port of described first industry storehouse server is connected with the Single port of described collection industrial computer, the Single port of described first industry storehouse server is connected with the Single port of described configuration server, the Single port of described first industry storehouse server is connected with the Single port of described Alarm Server, the another port of described first industry storehouse server is connected with the Single port of described statistical server, the Single port again of described first industry storehouse server is connected with the Single port of described history playback server, the Single port of the first industry storehouse server is connected with the Single port of terminal unit, the Single port of described first industry storehouse server is connected with the Single port of administrative unit;
The Single port of described configuration server is connected with the Single port of described collection industrial computer, and the another port of described configuration server is connected with the Single port of described first industry storehouse server, and the Single port again of described configuration server is connected with described terminal unit;
The Single port of described Alarm Server is connected with the Single port of described first industry storehouse server;
The Single port of described statistical server is connected with the Single port of described first industry storehouse server;
The Single port of described history playback server is connected with the Single port of described first industry storehouse server。
5. the long-distance monitorng device of desalinization power system according to claim 4, it is characterized in that, described terminal unit includes operator's client, described operator's client adopts redundancy to arrange, the Single port of described operator's client is connected with the Single port of described configuration server, and the another port of described operator's client is connected with the Single port of the first industry storehouse server。
6. the long-distance monitorng device of desalinization power system according to claim 5, it is characterized in that, described terminal unit also includes engineer's client, the Single port of described engineer's client is connected with the Single port of described configuration server, and the another port of described engineer's client is connected with the Single port of the first industry storehouse server。
7. the long-distance monitorng device of desalinization power system according to claim 6, it is characterised in that described administrative unit includes unidirection insulation network brake, the second industry storehouse server, the webserver;
The Single port of described unidirection insulation network brake is connected with the Single port of described first industry storehouse server, the another port of described unidirection insulation network brake is connected with the Single port of described second industry storehouse server, and the another port of described second industry storehouse server is connected with the described webserver。
CN201521089751.1U 2015-12-24 2015-12-24 Seawater desalination electric power system's remote monitoring device Active CN205334174U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521089751.1U CN205334174U (en) 2015-12-24 2015-12-24 Seawater desalination electric power system's remote monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521089751.1U CN205334174U (en) 2015-12-24 2015-12-24 Seawater desalination electric power system's remote monitoring device

Publications (1)

Publication Number Publication Date
CN205334174U true CN205334174U (en) 2016-06-22

Family

ID=56207573

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201521089751.1U Active CN205334174U (en) 2015-12-24 2015-12-24 Seawater desalination electric power system's remote monitoring device

Country Status (1)

Country Link
CN (1) CN205334174U (en)

Similar Documents

Publication Publication Date Title
CN105573228A (en) Remote monitoring device of seawater desalination system
CN102931724B (en) Intelligent video monitoring system for electric power transmission and transformation
CN102819249B (en) Linkage control system and control method for power tunnel
CN104950855A (en) Town sewage plant and pump station operation monitoring management system and town sewage plant and pump station operation monitoring management method
CN105337422B (en) Intelligence based on Internet of Things supplies Distribution Management System
CN106982262A (en) Operation platform is concentrated in a kind of Internet of Things sewage disposal
CN103499963B (en) A kind of coke vehicle equipment remote monitoring system
CN107332919A (en) A kind of urban fire control long-distance on-line monitoring system
CN105785946B (en) Computer room ring control integration monitors platform
CN202616878U (en) Intelligent transformer station video linkage monitoring system based on internet of things
CN203678537U (en) Monitoring system of electric precipitator
CN105740351A (en) Data fusion method and system of power transmission operation and maintenance equipment
CN203104105U (en) Intelligent video monitoring system for power transmission and transformation
CN103150598A (en) Processing system and method for sudden failure of power transmission network
CN103872614A (en) Information display processing method and device
CN107807597B (en) Novel platform door management method and system for cross-line and cross-region
CN202535476U (en) Video monitoring system for electric power device
CN202414913U (en) IOT elevator monitoring system
CN201830299U (en) Wireless indicator data remote transmission system
CN109785557B (en) Intelligent power optical cable anti-external loss monitoring and early warning system and monitoring and early warning method thereof
CN203206397U (en) Remote visual integrated monitoring system for power distribution network
CN202178789U (en) Remote monitoring system of client network
CN112543123B (en) Safety protection and early warning system of industrial automatic control system
CN104777824A (en) Substation computer monitoring remote diagnosis system
CN103632407A (en) Handheld equipment terminal inspection system for transformer substation

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20180110

Address after: 100088 Beijing city Haidian District Xitucheng Road No. 33

Co-patentee after: MCC Central Research Institute of Building and Construction Co., Ltd.

Patentee after: Zhong Ye energy-conserving and environment-protective limited liability company

Co-patentee after: China Jingye Engineering Technology Co., Ltd.

Address before: 100088 Beijing city Haidian District Xitucheng Road No. 33

Co-patentee before: MCC DESALINATION INVESTMENTS CO., LTD.

Patentee before: MCC Central Research Institute of Building and Construction Co., Ltd.