CN202928739U - Remote hydraulic pressure monitoring system - Google Patents

Remote hydraulic pressure monitoring system Download PDF

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Publication number
CN202928739U
CN202928739U CN 201220501909 CN201220501909U CN202928739U CN 202928739 U CN202928739 U CN 202928739U CN 201220501909 CN201220501909 CN 201220501909 CN 201220501909 U CN201220501909 U CN 201220501909U CN 202928739 U CN202928739 U CN 202928739U
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CN
China
Prior art keywords
data
hydraulic pressure
base station
wireless terminal
module
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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.)
Expired - Lifetime
Application number
CN 201220501909
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Chinese (zh)
Inventor
高波
梁耀林
贾华忠
杜文卓
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Shanxi Keda Automation Control Co ltd
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SHANXI KEDA AUTOMATIC CONTROL ENGINEERING TECHNOLOGY Co Ltd
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Priority to CN 201220501909 priority Critical patent/CN202928739U/en
Application granted granted Critical
Publication of CN202928739U publication Critical patent/CN202928739U/en
Anticipated expiration legal-status Critical
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Abstract

The utility model brings forward a remote hydraulic pressure monitoring system, comprising remote wireless terminal equipment, a base station, a data collecting server, a database server and an application server. The remote wireless terminal equipment is used for collecting hydraulic pressure data on site and transmitting the collected hydraulic pressure data to the base station; the base station is used for communicating with each remote wireless terminal equipment, receiving the hydraulic pressure data transmitted by the remote wireless terminal equipment and sending the hydraulic pressure data to the data collecting server via a cellular module; the data collecting server is used for collecting and storing the data transmitted by the base station in the database server; the database server is used for finishing processing and caching the hydraulic pressure data, and notifying a client of completion of data report after it is confirmed that data storage is normal; and the application server is used for providing client application with data services, including query, updating, index, high-speed cache, query optimization, and safe and multi-user access control and alarm. The hydraulic pressure monitoring system of the utility model has the characteristics of low power consumption, high speed and high reliability, and saves cost of material and data transmission; and the wireless transmission function of the system enables equipment is not limited by environment during installation and debugging, instead, the equipment can be installed and used in various environments.

Description

A kind of long-range hydraulic pressure supervisory system
Technical field
The utility model relates to remote wireless monitoring system, is specially a kind of long-range hydraulic pressure supervisory system.
Background technology
The hydraulic pressure of its vibration means for main pipe for supplying water road and lateral need to be monitored in the tradition waterworks, whether arrive the needed pressure of user's floor so that the Monitoring and Controlling tap water can satisfy, if the hydraulic pressure on trunk line and lateral is lower, the user that might have supplies water and goes wrong, and at this time just need to add the pressure of water in large pipeline.The mode of manually going into the well is often used in the waterworks, and the workman enters valve well and observes the pressure measurement instrument that is arranged on water supply line read pressure value, then return data, and there is very large inconvenience in this method, the waste mankind and material resources.And, can not in time find when breaking appears in water supply line, can not in time take counter-measure, cause the waste of water resource.
Tradition water pressure monitoring mode, to have utilized the broadcasting station to carry out data transmission, there is certain defective in this mode: sensing equipment is arranged on water supply line, the necessary control box of bracing wire to valve well of sensing equipment the transmission of data, use PLC to control the radio station module in control box, the data that the reception sensing equipment is passed back send data to control center by the broadcasting station.Control box must be installed near power-supply unit like this, and can not be from valve well apart from too far away, and mounting condition is harsh; Simultaneously, a whole set of supervisory system is bulky, and efficient is lower, and power consumption is larger.
In order to overcome the above problems, the utility model proposes a kind of long-range hydraulic pressure method for supervising and system.
The utility model content
In order to solve the problems of the technologies described above, the utility model proposes a kind of long-range hydraulic pressure supervisory system, this system comprises: remote wireless terminal equipment, base station, data acquisition server, database server and application server, wherein
Remote wireless terminal is used for gathering at the scene the hydraulic pressure data, and the described hydraulic pressure data transmission that will gather is to the base station;
The base station is used for man-to-man remote wireless terminal equipment and communicates, the hydraulic pressure data that the receiving remote wireless terminal device sends, and described hydraulic pressure data are sent to data acquisition server by cellular module;
Data acquisition server is used for the data acquisition that the base station is sent and is stored to database server;
Database server for processing, the buffer memory of completing the hydraulic pressure data, and confirms that notifying client to complete data after data are stored normally reports;
Application server is used to Client application that data, services is provided, and comprises inquiry, renewal, index, high-speed cache, query optimization, safety and multi-user access control and alarm.
According to an aspect of the present utility model, wherein remote wireless terminal further comprises: pressure transducer, control module, wireless communication module, power module are specially
Pressure transducer gathers the hydraulic pressure data,
Control module is carried out analog to digital conversion and control wireless communication module and pressure transducer to described hydraulic pressure data and is carried out work;
Wireless communication module is sent to corresponding base station with the hydraulic pressure data;
Power module is used to remote wireless terminal to provide its work required power supply.
According to an aspect of the present utility model, wherein further comprise:
Control module adopts the MSP430 series monolithic;
Wireless communication module short-distance wireless communication chip.
According to an aspect of the present utility model, wherein the base station further comprises: control module, wireless communication module, cellular module, power module are specially:
Wireless communication module is used for the hydraulic pressure data that the receiving remote wireless terminal sends;
Control module is used for controlling wireless communication module and cellular module the transmission of data;
Cellular module is used for sending the hydraulic pressure data to data acquisition server;
Power module is used to the base station to provide its work required power supply.
According to an aspect of the present utility model, wherein further comprise:
Described cellular module is 2G communication module or 3G communication module.
According to an aspect of the present utility model, wherein further comprise:
Judge after the complete hydraulic pressure data of database server stores whether the data storage is normal, if so, notifies client to complete data and reports; If not, to the base station feedback abnormal information, indicate reported data again.
According to an aspect of the present utility model, wherein further comprise:
Database server is kept at according to time sequencing the hydraulic pressure data that receive in database.
According to an aspect of the present utility model, this system further comprises:
The WEB server is used for for the network information browsing service.
According to an aspect of the present utility model, this system further comprises:
The data monitoring display device, it comprises mobile device or computing machine or client that the user uses
And mobile device can obtain data in the mode of note or Internet net from database server or WEB server by mobile communications network;
Or the user obtains by computer client interconnection network access application server the data that are stored in database server.
According to an aspect of the present utility model, wherein further comprise:
Application server setting arranges alarm threshold value, and application server compares hydraulic pressure data and the alarm threshold value of storage, as when the alarm threshold value, will send warning message to the destination client by note.
Long-range hydraulic pressure method for supervising and the system that the utility model proposes, has wireless transmission function, and have low-power consumption, two-forty, characteristics that reliability is high, saved the material and data transmission cost, the function of wireless transmission, the equipment installment and debugging of making no longer is subjected to environmental restraint, can install in various environment and use.User's reading out data of can in person going into the well again only needs service data monitoring display equipment can understand the concrete hydraulic pressure data of specified place.Facilitate the user to tackle in real time fast various emergency situations.For example, in case when the water supply line fracture caused leakage accident, long-range hydraulic pressure supervisory system will be found accident spot and variation in water pressure in the very first time.
Description of drawings
Below in conjunction with drawings and the specific embodiments, the utility model is further described in more detail.
Fig. 1 is a kind of long-range hydraulic pressure supervisory system schematic diagram.
Fig. 2 is remote wireless terminal functions of the equipments module diagram of the present utility model.
Fig. 3 is base station functions module diagram of the present utility model.
Fig. 4 is long-range hydraulic pressure method for supervising process flow diagram of the present utility model.
Embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearer, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explaining the utility model, and be not used in restriction the utility model.
Referring to Fig. 1, the long-range water pressure monitoring system that the utility model proposes is comprised of remote wireless terminal equipment, base station, data acquisition server, database server and application server, wherein adopt the direct point-to-point communication in remote wireless terminal equipment and base station, and utilize the mode of GPRS wireless transmission to be uploaded to the method for network by the base station data that the collection of remote wireless terminal equipment is returned.
This device is to adopt following technical scheme: specifically comprise remote wireless terminal equipment, base station, tele-control system and data monitoring display device.
Wherein, remote wireless terminal 20 is used for gathering at the scene the hydraulic pressure data, and the described hydraulic pressure data transmission that will gather is to base station 30.
Referring to Fig. 2, wherein this remote wireless terminal is made of pressure transducer 201, control module 202, wireless communication module 203, power module 204.Be specially, pressure transducer 201 gathers the hydraulic pressure data, carries out analog to digital conversion and mathematical operation (how computing) by 202 pairs of described hydraulic pressure data of control module and draws net result, then send data to corresponding base station through wireless communication module 203.Wherein power module provides its work required power supply for remote wireless terminal.
Control module 202 adopts the MSP430 series monolithic of TI company, the MSP430 series monolithic is the single-chip microcomputer of 16, adopt reduced instruction set computer (RISC) structure, had abundant addressing mode (7 kinds of source operand addressing, 4 kinds of destination operand addressing), succinct 27 core instructions and a large amount of dummy instructions; In a large amount of registers and sheet, data-carrier store all can be participated in multiple computing; The processing instruction of tabling look-up efficiently in addition.These characteristics have guaranteed that single-chip microcomputer can work out out high efficiency source program.
Wireless communication module 203 can be short-range wireless communication module, adopts the high-performance CC1101 wireless communication chips of Chipcon company.The CC1101 wireless communication chips, work in the open ISM band of 433Mhz and exempt from the licence use, peak transfer rate reaches 500kbps, but and the software modification baud rate, transmission maximum distance in open ground reaches 300-500 rice, have the functions such as wireless awakening, sensitivity reaches-110dBm, and reliability is high, and is low in energy consumption, can be widely used in the short-distance wireless communication field of various occasions, have high cost performance.Remote wireless terminal equipment and base station are man-to-man relations, and namely point-to-point communication is carried out in only with one base station of a remote wireless terminal equipment.
Base station 30 is used for man-to-man remote wireless terminal equipment and communicates, the hydraulic pressure data that the receiving remote wireless terminal device sends, and described hydraulic pressure data are sent to data acquisition server by cellular module.
Referring to Fig. 3, base station 30 specifically comprises control module 301, wireless communication module 302, cellular module 303 and power module 304; Wireless communication module is used for the hydraulic pressure data that the receiving remote wireless terminal sends, and it can make short-range wireless communication module, adopts the cc1101 chip; Control module is used for controlling wireless communication module and cellular module the transmission of data, adopts equally the MSP430 single-chip microcomputer; Cellular module can be 2G communication module or 3G communication module, and it can adopt SIM900A chip and SIM Mobile phone card to communicate.
Data acquisition server 40 is used for the data acquisition that the base station is sent and is stored to database server.
Database server 50 for processing, the buffer memory of completing the hydraulic pressure data, and confirms that notifying client to complete data after data are stored normally reports.If the discovering server data exception will to the base station feedback abnormal information, be indicated reported data again.
Wherein, database server 50 is kept at according to time sequencing the hydraulic pressure data that receive in database, for user's inquiry.
Application server 60 is used to Client application that data, services is provided.These services comprise inquiry, renewal, transaction management, index, high-speed cache, query optimization, safety and multi-user access control etc.
WEB server 70 major functions are to provide the network information browsing service.
Data monitoring display device 80 comprises mobile phone that the user uses, computing machine, client etc.For example, use mobile phone to obtain data in the mode of note or surfing Internet with cell phone from database server or WEB server by mobile communications network.The user obtains by computer client interconnection network access application server the data that are stored in database server.Also can pass through simultaneously some parameter in computing machine, the long-range hydraulic pressure supervisory system of mobile phone reverse connection modification, for example: timer, report to the police, the parameters such as cell-phone number; The user takes corresponding control mode remote control and regulation or manually regulation and control according to real time data, finally reaches the purpose of controlling hydraulic pressure.
In addition, warning function can also be set in application server, alarm threshold value is set therein, as maximum alarm pressure, minimum alarm pressure etc., after data stored database server into, application server compared hydraulic pressure data and the alarm threshold value of storage, when surpassing alarm threshold value, will send warning message to the destination client by note.
For example, when breaking appears in water supply line, very first time alarm notification user is in time taken measures, be down to the impact of accident minimum.
It is more than the detailed introduction of the long-range hydraulic pressure supervisory system that the utility model proposes, in practical operation, remote wireless terminal equipment is installed on the main water supply pipe of waterworks and needs on the branch line water supply line of monitoring, the remote wireless terminal device housings is cylindrical, material is iron and steel, and the bottom is pressure transducer, and it is control module, wireless communication module and power module that inside is equipped with circuit board, the antenna of wireless communication module extends shell, and shell is done waterproof.Be convenient to install bearing but the base station is installed in communication range, install the cellular communication module such as SIM card on the base station.
Referring to Fig. 4, it is the long-range hydraulic pressure method for supervising process flow diagram that the utility model proposes.
S401, remote wireless terminal collection in worksite hydraulic pressure data are also carried out data and are processed, and the described hydraulic pressure data transmission after processing is to the base station;
S402, the hydraulic pressure data after the receiving remote wireless terminal transmission processing of base station, and described hydraulic pressure data are sent to data acquisition server by cellular module;
S403, described data acquisition server gathers and is stored to the data that the base station sends in database server;
S404, described according to storehouse server processing and buffer memory described hydraulic pressure data;
S505 carries out data query and monitoring by user terminal by the application server access database server.
Wherein, also comprised before the S401 step: remote wireless terminal equipment sends request networking frame to the base station, the laggard line time configurations match of networking claim frame is received in the base station, reply remote wireless terminal equipment and inform time of remote wireless terminal equipment reported data, remote wireless terminal equipment is according to the reported data that requires of base station.
Wherein, the time interval that regularly reports can specifically be set according to user's demand.
Wherein, can also comprise before the S401 step: the base station recruits to remote wireless terminal equipment and surveys data mode, the base station sends to recruit to remote wireless terminal equipment surveys Frame, and remote wireless terminal equipment is replied data by the requirement of base station and reported frame after receiving and recruiting the survey Frame.
Receive the reported data of remote wireless terminal equipment when the base station after, can reply remote wireless terminal equipment feedback frame, illustrate that data exchange is correct, remote wireless terminal equipment can enter park mode after receiving the feedback frame.
Wherein, in step S401, remote wireless terminal is to communicate by short-distance wireless communication chip and base station.
In S404, comprise that further notifying client to complete data after described database server confirmation data are stored normally reports.If the discovering server data exception will to the base station feedback abnormal information, be indicated reported data again.
In S404, comprise that further described database server is kept at according to time sequencing the hydraulic pressure data that receive in database, for user's inquiry.
In addition, warning function can also be set in application server, alarm threshold value is set therein, as maximum alarm pressure, minimum alarm pressure etc., after data stored database server into, application server compared hydraulic pressure data and the alarm threshold value of storage, when surpassing alarm threshold value, will send warning message to the destination client by note.
For example, when breaking appears in water supply line, very first time alarm notification user is in time taken measures, be down to the impact of accident minimum.
The hydraulic pressure supervisory system that employing the utility model proposes, user's reading out data of can in person going into the well again only needs service data monitoring display equipment can understand the concrete hydraulic pressure data of specified place.Facilitate the user to tackle in real time fast various emergency situations.For example, in case when the water supply line fracture caused leakage accident, long-range hydraulic pressure supervisory system will be found accident spot and variation in water pressure in the very first time.Real-time and the security of user monitoring have been improved.
In sum, although the utility model with the preferred embodiment disclosure as above, yet it is not to limit the utility model.The utility model person of an ordinary skill in the technical field within not breaking away from spirit and scope of the present utility model, can do various changes and modification.Therefore, protection domain of the present utility model is as the criterion when looking appended the scope that claim defines.

Claims (1)

1. long-range hydraulic pressure supervisory system, this system comprises: remote wireless terminal, base station, data acquisition server, database server and application server is characterized in that:
Remote wireless terminal is used for gathering at the scene the hydraulic pressure data, and the described hydraulic pressure data transmission that will gather is to the base station;
The base station is used for the hydraulic pressure data that the receiving remote wireless terminal device sends, and described hydraulic pressure data is sent to data acquisition server;
Data acquisition server is used for the hydraulic pressure data acquisition that the base station is sent and is stored to database server;
Database server for processing, the buffer memory of completing the hydraulic pressure data, and confirms that notifying client to complete data after data are stored normally reports;
Application server is used to Client application that data, services is provided, and comprises inquiry, renewal, index, high-speed cache, query optimization, safety and multi-user access control and alarm.
2. system according to claim 1 is characterized in that:
Wherein remote wireless terminal further comprises: pressure transducer, control module, wireless communication module, power module are specially
Pressure transducer is used for collection in worksite hydraulic pressure data,
Control module is carried out analog to digital conversion and is controlled wireless communication module and pressure transducer work described hydraulic pressure data;
Wireless communication module is sent to corresponding base station with described hydraulic pressure data;
Power module is used to remote wireless terminal to provide its work required power supply.
3. system according to claim 1 is characterized in that:
Wherein the base station further comprises: control module, wireless communication module, cellular module, power module are specially:
Wireless communication module is used for the hydraulic pressure data that the receiving remote wireless terminal sends;
Control module is used for controlling wireless communication module and cellular module the transmission of data;
Cellular module is used for sending the hydraulic pressure data to data acquisition server;
Power module is used to the base station to provide its work required power supply.
4. system according to claim 3 is characterized in that:
Described cellular module is 2G communication module or 3G communication module.
CN 201220501909 2012-09-28 2012-09-28 Remote hydraulic pressure monitoring system Expired - Lifetime CN202928739U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220501909 CN202928739U (en) 2012-09-28 2012-09-28 Remote hydraulic pressure monitoring system

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Application Number Priority Date Filing Date Title
CN 201220501909 CN202928739U (en) 2012-09-28 2012-09-28 Remote hydraulic pressure monitoring system

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CN202928739U true CN202928739U (en) 2013-05-08

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104695505A (en) * 2015-03-20 2015-06-10 苏州首旗信息科技有限公司 Urban water supply system
CN104846934A (en) * 2015-05-19 2015-08-19 瞿星 Intelligent emergency water supply system
CN115046678A (en) * 2022-08-15 2022-09-13 山东金宇信息科技集团有限公司 Method and device for monitoring pressure of fire fighting pipeline in tunnel and storage medium

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104695505A (en) * 2015-03-20 2015-06-10 苏州首旗信息科技有限公司 Urban water supply system
CN104846934A (en) * 2015-05-19 2015-08-19 瞿星 Intelligent emergency water supply system
CN115046678A (en) * 2022-08-15 2022-09-13 山东金宇信息科技集团有限公司 Method and device for monitoring pressure of fire fighting pipeline in tunnel and storage medium

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: SHANDONG KEDA AUTOMATION CONTROL CO., LTD.

Free format text: FORMER NAME: KEDA SELF-CONTROL ENGINEERING TECHNOLOGY, SHAANXI PROV.

CP03 Change of name, title or address

Address after: 030006 Taiyuan province high tech Zone Development Lane No. 10 (venture building, block, three, east of the eastern part of the B)

Patentee after: SHANXI KEDA AUTOMATION CONTROL Co.,Ltd.

Address before: 030006, B building, No. 12, Pioneer Building, Lane three, Taiyuan hi tech Zone, Shanxi, Taiyuan

Patentee before: SHANXI KEDA AUTOMATIC CONTROL ENGINEERING TECHNOLOGY Co.,Ltd.

CX01 Expiry of patent term

Granted publication date: 20130508

CX01 Expiry of patent term