KR101640438B1 - unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment - Google Patents

unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment Download PDF

Info

Publication number
KR101640438B1
KR101640438B1 KR1020150124277A KR20150124277A KR101640438B1 KR 101640438 B1 KR101640438 B1 KR 101640438B1 KR 1020150124277 A KR1020150124277 A KR 1020150124277A KR 20150124277 A KR20150124277 A KR 20150124277A KR 101640438 B1 KR101640438 B1 KR 101640438B1
Authority
KR
South Korea
Prior art keywords
brine
pressure
spraying
salt water
internet
Prior art date
Application number
KR1020150124277A
Other languages
Korean (ko)
Inventor
고현경
Original Assignee
주식회사 영신
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 주식회사 영신 filed Critical 주식회사 영신
Priority to KR1020150124277A priority Critical patent/KR101640438B1/en
Application granted granted Critical
Publication of KR101640438B1 publication Critical patent/KR101640438B1/en

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/10Services
    • G06Q50/26Government or public services
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01HSTREET CLEANING; CLEANING OF PERMANENT WAYS; CLEANING BEACHES; DISPERSING OR PREVENTING FOG IN GENERAL CLEANING STREET OR RAILWAY FURNITURE OR TUNNEL WALLS
    • E01H10/00Improving gripping of ice-bound or other slippery traffic surfaces, e.g. using gritting or thawing materials ; Roadside storage of gritting or solid thawing materials; Permanently installed devices for applying gritting or thawing materials; Mobile apparatus specially adapted for treating wintry roads by applying liquid, semi-liquid or granular materials
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01HSTREET CLEANING; CLEANING OF PERMANENT WAYS; CLEANING BEACHES; DISPERSING OR PREVENTING FOG IN GENERAL CLEANING STREET OR RAILWAY FURNITURE OR TUNNEL WALLS
    • E01H3/00Applying liquids to roads or like surfaces, e.g. for dust control; Stationary flushing devices
    • E01H3/04Fixed devices, e.g. permanently- installed flushing means
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast

Abstract

The present invention relates to a technology for managing a plurality of long-distance high-pressure spraying type brine spraying facilities installed at a snow removal site in a nationwide manner by a remote server by monitoring a plurality of IP cameras connected to the Internet. In particular, the present performance status information and saltwater spray related information on a large number of saline spraying facilities are divided and managed according to the respective regions, so that it is provided to the district-specific clients who have jurisdiction over the saline spraying facilities in the region, Effectively controls whether or not the brine spraying facility of the present invention operates smoothly. According to the present invention, it is advantageous to efficiently perform long-distance spraying of salt water on the road surface and to provide high pressure piston pump, high-pressure hose and high-pressure hose cover in correspondence with high-pressure pumping for improving durability of salt water spraying equipment.

Description

[0001] The present invention relates to an integrated management system for a plurality of long-distance high-pressure spraying type brine spraying facilities,

The present invention relates to a method and system for managing multiple saline spraying facilities installed at a snow removal site in a nation by integrating and managing multiple IP cameras connected to the Internet through a remote server and displaying current performance status information and salt spraying related information for a plurality of saline spraying facilities And provides an integrated management system that divides and distributes the local saltwater spraying facilities to the local jurisdictions.

In particular, the present invention relates to a technology for effectively managing whether or not a plurality of salt water spraying facilities installed at a snow removal site in the whole country smoothly operates.

If snow accumulates on the road due to heavy snow in winter, it is important to prevent it from causing traffic accidents by quickly removing it.

When the snow begins to accumulate, the snow removal vehicle or the snow removal equipment is operated to remove snow accumulated on the road. In the area where the snow removal vehicle is difficult to enter quickly, there is always a snow removal facility that can be driven immediately when necessary, Thereby controlling the facility.

In recent years, the user can grasp the surrounding situation of the snow removal site by using the Internet and control the operation of the saline spraying facility remotely installed in the area. However, due to the nature of the salt water spraying facility, it is not used for a long time in spring, summer, and autumn because it is only used for winter only during snowing season.

As a result, when operating suddenly in winter, there is a problem that a very embarrassing situation occurs if it does not operate properly. However, it is very inefficient to check the condition of the facilities periodically while searching for salt water spraying facilities installed at the snow removal sites nationwide.

Korean Patent Application No. 10-2015-0020114 entitled "Integrated Management System Based on Compartment Based on Jurisdiction Using Internet for Multiple Salt Spraying Facilities" Korean Patent Application No. 10-2012-0143150 "Saltwater Spray System Using Remote Image Control" Korean Patent Application No. 10-2012-0039418 "Remote Image Control System" Korean Patent Application No. 10-2011-0071206 "Remote Control System" Korean patent application No. 10-2012-0128735 "Vehicle entry blocking system using remote image control"

SUMMARY OF THE INVENTION It is an object of the present invention to provide a technique for efficiently managing a plurality of salt water spraying facilities installed on a snow removal site in the whole country on the basis of the Internet.

It is another object of the present invention to provide a technique capable of efficiently performing long-distance spraying of salt water on a road surface in a salt water spraying facility and improving the durability of salt water spraying equipment in response to high-pressure pumping.

It is still another object of the present invention to provide a brine spraying facility which is capable of performing a trial operation periodically remotely based on the Internet on the basis of a brine spraying facility during a period other than the winter season and checking the present performance state of the brine spraying facility in advance, And to provide a technique that can prevent such problems.

It is another object of the present invention to provide a method and apparatus for controlling the pumping pressure for spraying brine from a saline spraying facility into a plurality of patterns according to the environment of a snow removal site, Technology.

Another object of the present invention is to provide a technology for on / off control of an operation command for a saline spraying facility at a snow removal site in a different pattern in real time, by monitoring a snow removal site from a remote location on the Internet.

It is a further object of the present invention to provide a method and apparatus for managing multiple saline spraying facilities installed at a snow removal site in a nation by integrating and managing multiple IP cameras connected to the Internet through a remote server, This is to provide the technology to divide and distribute the information to the local jurisdictions who manage the brine spraying facility in the relevant region.

In order to achieve the above object, the present invention provides a brine spraying facility including a brine storage tank, a high pressure hose, a brine transfer pipe, a brine pumping pipe, a swing check valve, and a high pressure piston pump, A plurality of communication boxes, and a remote integrated management server for managing the spraying facilities by connecting them through the Internet and dividing them into predetermined zones, The storage tanks are installed close to the roads according to the jurisdictions, store brine for snow removal of roads, and have an air intake port penetrating inside and outside at a relatively higher level than the brine gauge. The high pressure hose is connected to a road adjacent to the brine storage tank And the brine discharged from the brine storage tank to the high pressure is sprayed on the road surface And the brine transfer piping is connected to the lower portion of the brine storage tank so as to transfer the brine in the brine storage tank to the high pressure hose and the brine pumping pipe is connected to the brine storage tank And the brine check valve is installed in the brine pumping pipe corresponding to the upper part of the brine storage tank, and the brine pumping pipe is connected to the brine pumping pipe at a preset pressure The brine of the brine pumping pipe is transported to the high pressure hose when the brine is closed when the brine flows, and the water stream flowing from the brine pumping pipe to the high pressure hose is opened by the atmospheric pressure from the air inlet if the pressure in the brine pumping pipe is below a predetermined pressure And the high-pressure piston pump is connected to the brine transfer piping and brine pumping vessel And swinging the swing check valve to a closed state by pumping the brine in the brine storage tank to a brine pumping piping at a predetermined pressure or higher, so that the brine of the brine pumping piping is maintained in the air- And a plurality of IP cameras are disposed in the vicinity of the brine storage tank to photograph the surroundings of the high pressure hose, and a plurality of communication boxes are disposed in each of the snow removal sites in the country, Off control of the operation of the brine spraying facility connected to the one or more IP cameras in response to the control command provided from the remote integrated management server via the Internet, When receiving video data from one or more IP cameras connected to it, The remote integrated management server is connected to a plurality of communication boxes through the Internet and integrates and manages a plurality of salt water spraying facilities installed at a snow removal site in the country, By separating one or more communication boxes installed in the corresponding area, a plurality of brine spraying facilities installed at the snow removal sites in the whole country are distinguished and managed according to each jurisdiction, and a control command is transmitted to a specific communication box via the Internet, The remote control of the operation of the brine spraying equipment connected to the communication box through a plurality of communication boxes installed on the snow removal sites in the country, The integrated management of many brine spraying facilities installed at the snow removal site Block management information in accordance with the spray jurisdictions and is configured to provide separately to the Regional Client jurisdiction governing the salt spray plants in the region.

The high-pressure piston pump is configured to pump the brine in the salt water storage tank to a brine pumping pipe at a pressure of 20 kg / cm 2 to 260 kg / cm 2. The high-pressure hose is made of a flexible synthetic resin material and is 100 kg / cm 2 A mesh or an iron core woven into a single fiber in the form of a yarn to support a breaking pressure of 300 kg / cm < 2 > is inserted into the inside, and the spray nozzle has a diameter of 2 mm To 9 mm.

The brine spraying apparatus is composed of a galvanized iron plate having a thickness of 2 mm to 6 mm and is mounted on the road surface in a state of being bent in the form of wrapping the outer surface of the high pressure hose along the longitudinal direction of the high pressure hose, And a high-pressure hose cover for maintaining the outer shape of the high-pressure hose from the impact.

On the other hand, the remote integrated management server transmits a trial operation command for the salt water spraying facility to a plurality of communication boxes installed on a snow removal site in the whole country via the Internet at predetermined time intervals, On-off control of facility commissioning is performed remotely, and a brine spraying facility that performs trial operation is transmitted to a plurality of communication boxes and Internet through a plurality of IP camera images taken by a plurality of IP cameras, The present performance status information of the brine spraying facility that performs trial operation is managed by compartmentalized management according to the jurisdiction, and it is divided into the jurisdictional clients who have jurisdiction over the brine spraying facility in the area, .

At this time, the drive control unit is configured to divide the high pressure piston pump so that the high pressure piston pump can perform a pumping operation according to a plurality of preset pressure patterns, and to transmit the pumping control command. In the saltwater spraying facility, It is preferable that the trial operation operation command is configured to be transmitted so as to correspond to a plurality of preset pressure patterns.

The brine spraying facility may further include: a first pressure sensor provided in the brine pumping pipe connected to the swing check valve to sense the pressure in the brine pumping pipe; And a second pressure sensor provided in the high pressure hose connected to the brine pumping pipe to sense the pressure in the high pressure hose. The remote integrated management server is configured to transmit the sensed data sensed by the first and second pressure sensors to a plurality of The information on the current opening / closing performance status of a number of swing check valves is compartmentalized and managed according to the area where the swing check valve is installed, by collectively managing the current opening / closing performance status of a plurality of swing check valves installed at the snow removal sites in the country, It is desirable to provide the regional distribution of salt water spraying facilities separately to the local jurisdictional clients who have jurisdiction over the facilities.

On the other hand, the remote integrated management server includes a log management unit for managing the ID registration for the local clients, and managing the local salt-water spraying facilities of the specific snow removal site and the corresponding local saltwater management clients for the salt water distribution facility; A log recording unit for identifying a connection of a local-specific client and recording the connection time and the server identification information; An action recording unit for recording operation time and salt water spray amount for each salt water spraying facility for each salt water spraying facility; Upon receipt of a request from a specific local-area-specific client, information on the salt-spraying-related information recorded by the action recording unit and image data received from the IP camera disposed for the salt-water spraying facility corresponding to one or more saltwater- A download provider for providing corresponding regional clients to the regional clients; An event recording unit for identifying and recording a selection event by a client in charge of each region and collecting image data collected from a plurality of IP cameras, An image memory unit for storing a plurality of image data received from a plurality of IP cameras installed on a snow removal site in the whole country via the Internet and storing the collected image data in an internal and external storage space; A number of IP cameras installed on the snow removal sites in the country are transmitted through the Internet and are collected and classified by IP cameras. A video output unit for grouping one or more communication boxes installed in a corresponding area according to a jurisdiction and further displaying the separated communication boxes in units of jurisdiction; An apparatus remote control unit for controlling on / off operation of a salt water spraying facility installed at a specific snow removal site by controlling a drive control unit provided in a communication box remotely via the Internet; A user input unit for receiving a user operation command to the remote integrated management server; When a request is received from a specific local client in order to compartmentalize management of a plurality of salt water spraying facilities installed in a snow removal site in the whole country, it is possible to identify one or more salt water spray equipment matched to a regional client through a log management unit Related information recorded by the action recording unit corresponding to the identified one or more salt water spraying facilities and image data stored by the IP camera disposed for the salt water spraying equipment and stored by the image memory unit, And an integrated controller for on-off controlling a specific brine spraying facility connected to a communication box among the snow removal sites in the whole country by controlling a drive control unit provided in a specific communication box through a facility remote control unit. .

The present invention is advantageous in that long-distance spraying of salt water on the road surface is efficiently performed, and a high-pressure piston pump, a high-pressure hose, and a high-pressure hose cover are provided in correspondence with the high-pressure pumping for improving durability of the salt water spraying facility.

In addition, the present invention periodically performs trial operation of a salt water spraying facility installed at a snow removal site in a nationwide every predetermined time, and checks the present performance state of the salt water spraying facility in advance to prevent malfunction of the salt water spraying facility in the winter season There are advantages to be able to.

Particularly, the present invention also has an advantage that the present performance state of the swing check valve for preventing leakage of salt water can be accurately grasped by dividing and controlling the pumping pressure for spraying the salt water in the salt water spraying facility in a plurality of patterns according to the environment of the snow removal site .

In the meantime, the present invention is directed to a method and apparatus for managing a plurality of saline spraying facilities installed at a snow removal site in a nation by integrating and managing a plurality of IP cameras connected to the Internet by a remote server, It is also advantageous to divide and manage the local saltwater spraying facilities to the local jurisdictional clients who manage the area according to the jurisdiction.

1 is a diagram schematically showing an overall configuration of an integrated management system according to the present invention, FIG.
2 is an enlarged view of a high-pressure hose cover according to a first embodiment of the present invention,
3 is an enlarged view of a high-pressure hose cover according to a second embodiment of the present invention,
4 is an enlarged view of a high-pressure hose cover according to a third embodiment of the present invention,
5 is an exemplary view showing an open-close operation of the swing check valve in the present invention,
FIG. 6 is an exemplary view showing a configuration of a remote integrated management server, a communication box, and a salt water spraying facility according to the present invention;
7 is an exemplary view showing a configuration in which a remote integrated management server according to the present invention communicates with a regional client and a mobile client;
8 is a block diagram illustrating a remote integrated management server according to the present invention;
9 is a view showing an operation of the swing check valve according to the present invention and an example of the first and second pressure sensors,
10 is a flowchart illustrating a process of checking the open / close performance state of the swing check valve while the remote integration management server controls the trial operation operation of the salt water spraying facility in the present invention.

Hereinafter, the present invention will be described in detail with reference to the drawings.

1 is an exemplary diagram schematically showing an overall configuration of an integrated management system according to the present invention. The integrated management system includes a brine storage tank 110, a high pressure hose 120, a brine transfer piping 130, a brine pumping piping 140, a swing check valve 150, a high pressure piston pump 161 And a brine spraying apparatus 100 including the brine spraying apparatus 100. A plurality of IP cameras 200, a plurality of communication boxes 300, and a remote unified management server 400 are provided for managing the brine spraying facility 100 by connecting and managing the brine spraying apparatuses 100 over the Internet, do.

The brine stored in the brine storage tank 110 is pumped by the high pressure pumping unit 160 so that the brine can be transferred to the brine transfer pipe 130, the brine pumping pipe 140, And the hose 120 are sequentially injected through the injection nozzle 121 onto the road.

The salt water storage tank 110 is preferably installed in close proximity to the road in each jurisdiction, and stores brine for snow removal. And an air intake port 111 penetrating the inside and the outside at an upper portion relatively higher than the brine capacity gauge 112. Here, the air inlet 111 is exposed to the atmosphere so that air in the atmosphere naturally flows into the salt water storage tank 110.

The high pressure hose 120 is provided along the road adjacent to the salt water storage tank 110 and has a plurality of spray nozzles 121 for spraying the salt water from the salt water storage tank 110 at a high pressure onto the road surface.

The brine transfer piping 130 is connected to the lower portion of the brine storage tank 110 so as to transfer the brine in the brine storage tank 110 to the high pressure hose 120. At this time, the brine passing through the brine transfer piping 130 is not naturally flowed but is pumped by the pumping operation of the high-pressure piston pump 161. The brine is pumped from the brine storage tank 110 via the high pressure piston pump 161 to the brine pumping tubing 140.

The brine pumping pipe 140 is connected to the upper portion of the brine storage tank 110 so as to communicate with the air inlet 111 and is in communication with the brine transfer pipe 130. By the pumping operation of the high pressure piston pump 161, The high pressure hose 120 communicates with the salt water flowing through the high pressure hose 120 at a high pressure.

The swing check valve 150 is installed in the salt water pumping pipe 140 corresponding to the upper part of the salt water storage tank 110 and closes when the salt water flows in the salt water pumping pipe 140 at a predetermined pressure or higher, Is transferred from the brine pumping pipe 140 to the high pressure hose 120 while being opened by the atmospheric pressure introduced from the air suction port 111 when the pressure in the brine pumping pipe 140 is lower than a predetermined pressure, 120).

The high pressure piston pump 161 is connected between the brine transfer piping 130 and the brine pumping piping 140 and pumps the brine in the brine storage tank 110 to the brine pumping piping 140 at a predetermined pressure or higher, The valve 150 is switched to the closed state and the brine of the brine pumping pipe 140 is transferred to the high pressure hose 120 while the air suction port 111 and the brine pumping pipe 140 are kept airtight.

The high pressure pumping unit 160 includes a high pressure piston pump 161 and a driving motor 162. The high pressure piston pump 161 is configured to perform a pumping operation in conjunction with a driving force of the driving motor 162. [

Here, the high-pressure piston pump 161 is configured to pump the brine to the brine pumping piping 140 at a pressure of 20 kg / cm 2 to 260 kg / cm 2 . The high-pressure hose 120 is made of a flexible synthetic resin material and is made of a mesh or a core made of a single fiber woven in the form of a yarn so as to support a breaking pressure of 100 kg / cm 2 to 300 kg / cm 2 Respectively. It is preferable that the diameter of the opening portion for spraying the salt water is 2 mm to 9 mm.

A plurality of IP cameras 200 photographs the surrounding situation of the salt water spraying facility 100 having the brine storage tank 110 and the high pressure hose 120 and transmits the photographed image data through the communication box 300 to the Internet To the remote integrated management server 400 via the Internet.

The plurality of communication boxes 300 are connected to the remote integrated management server 400 via the Internet, and are installed at each of the snow removal sites in the whole country and connect the brine spraying facility 100 installed in the snow removal site and one or more IP cameras 200.

The communication box 300 includes a driving control unit 310 to control the on / off operation of the salt water spraying facility 100 connected to the communication box 300 in response to a control command received from the remote integrated management server 400. When the communication box 300 receives image data from one or more IP cameras 200 connected to the communication box 300, the communication box 300 transmits the image data to the remote integrated management server 400 via the Internet.

The remote integrated management server 400 integrates and manages a plurality of salt water spraying facilities 100 connected to a plurality of communication boxes 300 through the Internet and installed in a snow removal site in the whole country. The remote integrated management server 400 divides and manages a plurality of salt water spraying facilities 100 installed in a snow removal site in the whole country according to a pre-set jurisdiction area and manages one or more communication boxes 300 installed in the corresponding area, To separate and manage a plurality of salt water spraying apparatuses 100 installed in the snow removal sites of the whole country according to the respective regions.

The remote integrated management server 400 transmits a control command to the specific communication box 300 through the Internet to thereby drive the salt spraying facility 100 connected to the communication box 300 through the drive control unit 310 Remote on / off control.

Also, the remote integrated management server 400 receives a plurality of image data from the plurality of IP cameras 200 installed at the snow removal sites in the whole country through the plurality of communication boxes 300 via the Internet. The remote integrated management server 400 manages the salt water spraying equipment 100 installed in the snow removal sites in the whole country while managing the saltwater spraying related information according to the area where the saltwater sprinkling system is installed, It is provided separately to the local jurisdictional clients.

2 is an enlarged view showing a first embodiment of a high-pressure hose cover in the present invention.

The salt water spraying equipment 100 preferably further comprises a high-pressure hose cover 122. [ The high-pressure hose cover 122 is preferably made of a galvanized iron plate having a thickness of 2 mm to 6 mm. The high-pressure hose cover 122 is bent in the form of wrapping the outer surface of the high-pressure hose 120 along the longitudinal direction of the high- So as to maintain the outer shape of the high-pressure hose 120 from the external impact and the internal pressure of the high-pressure hose 120. [

At this time, the high-pressure hose cover 122 is configured to protect the high-pressure hose 120 from an external impact (for example, by a vehicle wheel) by bending the high-pressure hose 120 in a wrapping manner. Even when the space between the inner wall of the high pressure hose cover 122 and the outer wall of the high pressure hose 120 is reduced and the high pressure hose 120 is inflated with hydraulic pressure, The hose 120 can be prevented from popping up.

2, the high-pressure hose cover 122 surrounds only the high-pressure hose 120 where the injection nozzle 121 is not located. In this case, the high-pressure hose cover 122 is provided with a high-pressure hose cover 122 ) Is easy to tighten.

3 is an enlarged view showing a high-pressure hose cover according to a second embodiment of the present invention.

In the second embodiment, the high-pressure hose cover 122 'includes a lower support piece 122a at a position corresponding to the injection nozzle 121, a high-pressure hose cover 122' facing each other with respect to the injection nozzle 121, The lower support piece 122a of the spray nozzle 121 is disposed in contact with the spray nozzle 121 to prevent the injection nozzle 121 from directly contacting the road surface. This makes it possible to prevent the injection nozzle 121 from being easily broken by the external environment.

4 is an enlarged view showing a high-pressure hose cover according to a third embodiment of the present invention.

In the third embodiment, the high pressure hose cover 122 'is formed with a lower support piece 122a at a position corresponding to the injection nozzle 121 like the high pressure hose cover 122' shown in FIG. 3, The lower support piece 122a of the high-pressure hose cover 122 'facing each other with respect to the base plate 121 is abutted against the injection nozzle 121 to prevent the injection nozzle 121 from directly contacting the road surface. Thus, the durability of the injection nozzle 121 can be improved.

4, a separate protective cap 123 may be provided on the lower support piece 122a facing each other to protect the outer shape of the injection nozzle 121 from external force. At this time, the protective cap 123 is preferably made of a galvanized iron plate having a thickness of 2 mm to 6 mm like the high pressure hose cover 122 '.

Here, the protective cap 123 may be configured to be detachable with respect to the lower support piece 122a and may be connected to the lower support piece 122a by a rotation shaft (not shown) And may be configured to open and close the upper portion.

The protective cap 123 is configured to protect the upper portion of the injection nozzle 121 except for the front end where the spray nozzle 121 injects the salt water. Thus, the protective cap 123 protects the upper portion of the injection nozzle 121 from an external force The appearance can be kept safe.

5 is an exemplary view showing an open-close operation of the swing check valve 150 in the present invention. 5 (a) is a state in which the swing check valve 150 provided at the upper end of the brine pumping pipe 140 is normally opened and air through the air inlet port 111 flows through the swing check valve 150 Pressure hose 120, as shown in Fig.

5 (b) is a cross-sectional view of the high pressure piston pump 161 when high pressure brine flows into the brine pumping pipe 140 due to the pumping of the high pressure piston pump 161, the swing check valve 150 is closed by the hydraulic pressure of the brine, ) Is in a state of being moved to the high-pressure hose (120).

When the operation of the high pressure piston pump 161 is stopped, the hydraulic pressure flowing into the brine pumping pipe 140 becomes relatively weaker than the pressure at which the swing check valve 150 is opened by the atmospheric pressure through the air suction port 111. [ 5 (a), the swing check valve 150 is opened again, and then the air through the air inlet 111 passes through the high pressure hose 120 and the high pressure hose 120. As a result, The brine is pumped into the brine pumping pipe 140 and the water stream connecting the brine pumping pipe 140 and the high-pressure hose 120 is cut off.

As a result, the operation of the high-pressure piston pump 161 is stopped and the brine in the brine storage tank 110 is not moved to the brine moving pipe 130. As the high-pressure piston pump 161 stops operating, the water stream of the brine is naturally blown off. Thus, even if the pumping operation is stopped, the already formed water stream is continued to solve the problem of the leakage of the brine.

6 is an exemplary view showing the configuration of the remote integrated management server 400, the communication box 300 and the salt water spraying facility 100 according to the present invention. And an example in which the server 400 communicates with the regional clients 600 and 600 'and the mobile clients 700 and 700'.

A process of integrally managing the brine spraying facility 100 installed in a snow removal site in the whole country through the IP camera 200 and the communication box 300 will be described.

The IP camera 200 is disposed in the vicinity of the saltwater spraying facility 100 installed in the field and photographs the situation around the saltwater storage tank 110 and the high pressure hose 120 of the saltwater spraying facility 100, To the remote integrated management server 400 via the Internet via the communication box 300.

At this time, it is preferable that a plurality of IP cameras 200 are installed in the communication box 300 installed in the field, so that the IP camera 200 photographs the surroundings where the salt water spraying equipment 100 is installed.

The communication box 300 is installed in a snow removal site where a salt water spraying facility 100 is installed to control the operation of the saltwater spraying facility 100 on and off and provides a remote integrated management server 400 and an Internet access function.

The communication box 300 interfaces to collect image data photographed by one or more IP cameras 200. The image data captured by the IP camera 200 connected to the corresponding communication box 300 is transmitted to the corresponding communication box 300 through the corresponding area, And the remote integrated management server 400 manages the management information to be provided to terminal devices for management, that is, clients 600 and 600 'for each region.

The communication box 300 also includes a drive control unit 310 for controlling the operation of the salt water spraying equipment 100. At this time, it is preferable that one communication box 300 is configured to control one brine spraying facility 100 and a plurality of IP cameras 200 corresponding to one communication box 300 are installed.

The communication box 300 controls on and off the operation of the salt water spraying facility 100 by a drive control unit 310 disposed inside the saltwater spraying facility 100. The operation control unit 310 controls the operation of the saltwater spraying facility 100, And directly controls operation of the salt water spraying facility 100 in accordance with the drive on / off control command of the facility 100.

The remote integrated management server 400 is connected to a plurality of communication boxes 300 through the Internet to comprehensively manage a plurality of salt water spraying facilities 100 installed in a snow removal site in the whole country, The plurality of brine spraying facilities 100 installed in the snow removal sites of the whole country are classified and managed according to the respective regions by integrating one or more communication boxes 300 installed in the corresponding regions.

At this time, the remote integrated management server 400 transmits a control command to the specific communication box 300 through the Internet, so that the salt water spraying facility (not shown) connected to the communication box 300 through the drive control unit 310 of the communication box 300 100 from the plurality of IP cameras 200 installed in the snow removal sites in the whole country through a plurality of communication boxes 300 to receive and collect a plurality of image data through the Internet.

The remote integrated management server 400 distinguishes and displays the collected image data on the basis of the communication box 300, and further separately identifies and manages the image data by region. Accordingly, the manager of the salt water spraying system can accurately monitor the surroundings of the salt water spraying facility 100 by dividing the area and site.

The remote integrated management server 400 may be configured such that if the surrounding situation where the salt water spraying facility 100 of each area is installed should spray salt water based on the image data provided by the plurality of IP cameras 200, And transmits a control command to the spraying facility 100 to the drive control unit of the communication box 300 to remotely control the operation of the saltwater spraying facility 100.

In addition, the remote integrated management server 400 manages the salt water spraying facilities 100 installed in the snow removal sites in the whole country, while managing the salt water spraying related information in accordance with the local area, And to provide them separately to the competent regional clients.

In detail, the remote integrated management server 400 provides image data photographed by the IP camera 200 corresponding to the communication box 300 of the regional clients 600 and 600 'according to requests of the regional clients 600 and 600'.

The remote integrated management server 400 also receives the IP address information of the IP cameras 300 and 300 'corresponding to the communication boxes 300 of the clients 600 and 600' according to the request of the mobile clients 700 and 700 ' And provides the photographed image data.

The regional clients (600, 600 ') and the mobile clients (700, 700') are collectively referred to herein as "regional jurisdictions" for the respective regions.

On the other hand, the remote integrated management server 400 remotely controls the on-off control of the salt water spraying facility 100 connected to the communication box 300 through a plurality of communication boxes 300 installed in a snow removal site do. At this time, the commissioning operation command via the Internet may be configured to be transmitted at preset time intervals.

At this time, the remote integrated management server 400 receives and collects the image data photographed by the plurality of IP cameras 200 through the plurality of communication boxes 300 and the Internet, with respect to the salt water spraying facility 100 performing the trial operation . The remote integrated management server 400 integrally manages the current performance status of a plurality of salt water spraying facilities 100 installed at a snow removal site in the whole country. In addition, the remote integrated management server 400 manages the current performance status information of the salt water spraying facility 100 that performs trial operation according to the area where the saltwater is sprayed,

In this way, the remote integrated management server 400 periodically performs the trial operation of the salt water spraying facility 100 installed at the snow removal sites in the whole country, so that the current performance state of the saltwater spraying facility 100 can be checked in advance, There is an advantage that the facility 100 can be prevented from malfunctioning.

8 is a block diagram illustrating a remote integrated management server according to the present invention. The remote integration management server 400 according to the present invention includes a log management unit 410, a log recording unit 420, an action recording unit 430, a download unit 440, an event recording unit 450, An image memory unit 460, an image output unit 470, a facility remote control unit 480, a user input unit 490, and an integrated control unit 491.

The log management unit 410 manages the ID registration of the regional clients 600 and 600 'and the mobile clients 700 and 700'. That is, the log management unit 410 matches the ID of the specific site brine spraying facility 100 with the client of the area that is in charge of the salt water spraying facility 100 in advance.

The log recording unit 420 identifies the connection of the regional clients 600 and 600 'and the mobile clients 700 and 700', and records the connection time and the client identification information. In this way, the remote integrated management server 400 can grasp the interest for each of the regional clients 600 and 600 ', and can consider service improvement accordingly.
The action recording unit 430 records the operation time of the salt water spraying apparatus 100 and the salt water injection amount used by the salt water spraying apparatus 100.

When the request is received from a specific regional client, the downloading unit 440 displays the saltwater spray related information (e.g., operation time, time information, etc.) recorded by the action recording unit 430 in correspondence with one or more salt water spraying apparatuses 100, And the image data provided from the IP camera 20 arranged for the salt water spraying facility 100 are provided to the local jurisdictions in response to the request.

The event recording unit 450 identifies and records a selection event by a client in charge of each region for the image data collected from the plurality of IP cameras 200 and downloads the salt spraying related information to the local jurisdictions Identify and record the information provided.

The image memory unit 460 stores a plurality of image data received from a plurality of IP cameras 200 installed in the snow removal sites in the whole country via the Internet in the inside and outside storage spaces. The image memory unit 460 may be implemented as an internal storage device or an external cloud.

The video output unit 470 displays a plurality of video data received from a plurality of IP cameras 200 installed on the snow removal sites in the whole country and collected by the IP cameras 200 according to the IP cameras 200, It is possible to further divide and display the communication boxes 300 connected to each other on the basis of the snow removal site, and to divide and display one or more communication boxes 300 installed in the corresponding area according to the jurisdiction, have.

The facility remote control unit 480 controls the on / off operation of the salt water spraying facility 100 installed in a specific snow removal site by controlling the drive control unit 310 provided in the communication box 300 remotely via the Internet.

The user input unit 490 receives a user operation command for the remote integrated management server 400. [

The integrated control unit 491 controls the overall operation of the remote integrated management server 400 and performs integrated management of a plurality of salt water spraying facilities 100 installed in the snow removal sites in the whole country, Upon receipt of the request from the client, the log management unit 420 identifies one or more salt water spraying apparatuses 100 matched to the regional clients and the action recorder 430 corresponding to the identified one or more saltwater spraying apparatuses 100 The recorded salt water spraying related information and the image data stored in the image memory unit provided from the IP camera 200 arranged for the salt water spraying facility 100 are provided to the regional jurisdictions through the downloading unit 440 in response to the request And controls the drive control unit 310 provided in the specific communication box 300 through the equipment remote control unit 480, Off control of the specific salt water spraying equipment 100 connected to the communication box 300. [

FIG. 9 is an exemplary view showing the operation of the swing check valve and the first and second pressure sensors according to the present invention. Referring to FIG. 9, the salt water spraying apparatus 100 may further include a first pressure sensor 171 and a second pressure sensor 172.

The first pressure sensor 171 is provided in the brine pumping piping 140 connected to the swing check valve 150 to sense the pressure in the brine pumping piping 140 and the second pressure sensor 172 is connected to the brine pumping piping 140 Pressure hose 120 connected to the high-pressure hose 120 and the high-pressure hose 120, respectively. At this time, the communication box 300 transmits sensing data sensed by the first and second pressure sensors 171 and 172 to the remote integrated management server 400 via the Internet.

The remote integrated management server 400 receives and analyzes the sensed data sensed by the first and second pressure sensors 171 and 172 from the communication box 300 via the Internet to generate a plurality of swing check valves It is possible to check the current opening / closing performance state of the battery 150.

Based on this, the remote integrated management server 400 divides the current opening / closing performance status related information of the plurality of swing check valves 150 according to a jurisdiction, and divides the information into jurisdictional clients do.

That is, the regional-specific client can accurately determine whether the swing check valve 150 installed in the jurisdiction area operates smoothly or whether the repair is necessary, periodically, without periodically checking in offline.

9 (a) is a state in which the swing check valve 150 installed at the upper end of the brine pumping pipe 140 is normally opened, and the air inlet port 171, And the air through the hose 111 passes through the swing check valve 150 to the high-pressure hose 120.

9 (b) is a view showing a state in which when high-pressure brine flows into the brine pumping pipe 140 by pumping the high-pressure piston pump 161, the swing check valve 150 is closed by the water pressure of the brine and the brine pumping pipe 140 ) Can be moved to the high-pressure hose 120.

When the operation of the high-pressure piston pump 161 is stopped as shown in FIG. 9 (a), and there is no movement of the brine through the brine pumping pipe 140, the first and second pressure sensors 171 and 172 It senses that the hydraulic pressure is close to zero.

As shown in FIG. 9 (b), the operation of the high-pressure piston pump 161 smoothly transfers the salt water through the brine pumping pipe 140 and the high-pressure hose 120, so that the first and second pressure sensors 171, The swing check valve 150 is in the closed state.

If the pressure sensed by the first pressure sensor 171 is greater than the pressure sensed by the second pressure sensor 172 while the high pressure piston pump 161 is operating, the swing check valve 150 is not correctly closed It can be seen that the brine passing through the brine pumping pipe 140 does not move all the way to the high pressure hose 120 but some part flows back to the brine storage tank 110 through the swing check valve 150.

The drive control unit 310 included in the communication box 300 is preferably configured to transmit a pumping control command by dividing the high pressure piston pump 161 so that the high pressure piston pump 161 can perform a pumping operation according to a plurality of preset pressure patterns, The remote integrated management server 400 may divide the commissioning operation command for the salt water spraying facility 100 to be transmitted to the plurality of communication boxes 300 so as to correspond to a plurality of preset pressure patterns.

As described above, when the remote integrated management server 400 determines that part of the brine is returned to the brine storage tank 110 through the swing check valve 150 while the high-pressure piston pump 161 is operating, Pressure piston pump 161 performs a pumping operation with a higher pressure pattern than the immediately preceding pumping when transmitting a test operation command to the drive control unit 310 so that the sensing data transmitted from the first and second pressure sensors 171, The closing state of the swing check valve 150 can be checked again.

10 is a flowchart illustrating a process of checking the open / close performance state of the swing check valve while the remote integration management server controls the trial operation operation of the salt water spraying facility in the present invention.

Step S110: First, it is necessary to check the performance of the brine spraying apparatus 100 before the winter season. To this end, the remote integrated management server 400 transmits a trial operation operation command to the drive control unit 310 of the communication box 300 via the Internet at a preset time.

The communication box 300 receives a test operation command for driving the saltwater spraying facility 100 from the remote integrated management server 400 and transmits the test operation command to the saltwater spraying facility 100 through the drive control unit 310, Thereby executing a trial operation.

The first and second pressure sensors 171 and 172 installed in the brine pumping pipe 140 and the high pressure hose 120 are connected to the hydraulic pressure in the brine pumping pipe 140 and the high pressure hose 120, And transmits sensed sensed data to the corresponding communication box 300. [0050] Then, the communication box 300 transmits the sensing data of the salt water spraying facility 100 to the remote integrated management server 400 via the Internet.

The remote integrated management server 400 receives the sensed data sensed by the first and second pressure sensors 171 and 172 from the communication box 300 through the Internet and analyzes the sensed data, Closing performance state of the swing check valve 150 of the swing check valve 150 can be checked.

The remote integrated management server 400 provides information on the current opening / closing performance status of the swing check valve 150 to a local-specific client in charge of the salt water spraying facility 100 based on the information. In this way, the corresponding local client can know whether the swing check valve 150 installed in his / her jurisdiction operates smoothly or needs repair.

100, 101, 102, 103, 104: salt water spraying facility
110: brine storage tank
111: air inlet
112: brine capacity gauge
120: High pressure hose
121: injection nozzle
122,122 ': High pressure hose cover
122a: Lower support piece
123: Protective cap
130: brine transfer piping
140: Brine pumping piping
150: Swing check valve
160: High pressure pumping part
161: High pressure piston pump
162: drive motor
171, 172: 1st and 2nd pressure sensors
200, 201, 202, 203, 204, 205, 206, 207, 208: IP camera
300, 301, 302, 303, 304: communication box
310, 311, 312, 313, 314:
400: remote integrated management server
410:
420: log recorder
430: Action log
440: Download Offering
450: Event log
460:
470: Video output unit
480: Equipment remote control unit
490:
491:
600, 600 ': Client by region
700, 700 ': Mobile client
H: Housing

Claims (7)

The brine storage tank 110, the high pressure hose 120, the brine transfer piping 130, the brine pumping piping 140, the swing check valve 150, the high pressure piston pump 161, A plurality of IP cameras 200 (200, 200 ') are provided in order to manage the brine spraying facility 100 by connecting the brine spraying facilities through the Internet and managing the brine spraying facilities by predetermined zones, ), A plurality of communication boxes (300), and a remote integrated management server (400)
The brine storage tank (110) is installed close to the road in each jurisdiction, stores the brine for snow removal of the road, and has an air inlet (111) penetrating inside and outside at a relatively higher level than the brine capacity gauge;
The brine transfer piping (130) is connected to the lower portion of the brine storage tank so as to transfer the brine in the brine storage tank to the high pressure hose;
The brine pumping pipe (140) is connected to the upper portion of the brine storage tank so as to communicate with the air inlet port and communicates with the brine delivery pipe to deliver brine flowing through the brine delivery pipe to the high pressure hose at a high pressure;
The swing check valve (150) is installed in the brine pumping pipe corresponding to the upper portion of the brine storage tank. When the brine pipe flows into the brine pumping pipe at a predetermined pressure or more, the brine of the brine pumping pipe is closed, And shutting off the water stream flowing from the brine pumping line to the high pressure hose by the atmospheric pressure from the air inlet when the pressure in the brine pumping line is lower than a predetermined pressure;
The high-pressure piston pump 161 is connected between the brine transfer pipe and the brine pumping pipe and pumped the brine in the brine storage tank to the brine pumping pipe at a pressure of 20 kg / cm 2 to 260 kg / cm 2 The swing check valve is switched to the closed state to transfer the brine of the brine pumping pipe to the high pressure hose at a high pressure in a state in which the air suction port and the brine pumping pipe are kept airtight;
The high pressure hose 120 is made of a flexible synthetic resin material and is made of a synthetic resin material so as to support a breaking pressure of 100 kg / cm 2 to 300 kg / cm 2 corresponding to the pressure of the brine to be conveyed to the high pressure by the high pressure piston pump ) Type fiber netting or iron core is inserted in the inner side so that brine which is installed along a road adjacent to the brine storage tank and flows into the brine storage tank at a high pressure is sprayed on the road at a long distance A plurality of spray nozzles 121 each having an opening for spraying saline water having a diameter of 2 mm to 9 mm;
The high-pressure hose cover (122, 122 ') is made of a galvanized steel plate having a thickness of 2 mm to 6 mm, and is wrapped around the outer surface of the high-pressure hose along the longitudinal direction of the high- Pressure hose, and the space between the inner wall of the high-pressure hose cover and the outer wall of the high-pressure hose is narrowly disposed so that the brine is delivered to the high pressure by the high-pressure piston pump The inner wall of the high-pressure hose cover grips the outer surface of the high-pressure hose to maintain the contour of the high-pressure hose against the internal pressure of the high-pressure hose when the high-pressure hose expands and receives pressure from the inside;
The plurality of IP cameras (200) are disposed around the brine storage tank to photograph the surroundings of the high-pressure hose;
The plurality of communication boxes 300 are connected to the remote integrated management server via the Internet and are connected to a saline spraying facility and at least one IP camera installed in the respective snow removal sites in the whole country, Off control of the operation of the brine spraying facility connected to itself in response to a control command received from the remote integrated management server via the Internet and receiving image data from the one or more IP cameras connected thereto, To the remote unified management server;
The remote integrated management server 400 divides and manages a plurality of salt water spraying facilities installed in a snow removal site of a nation by connecting to the plurality of communication boxes through the Internet, A plurality of brine spraying facilities installed at a snow removal site in the whole country are classified and managed according to the respective jurisdictions by integrating one or more communication boxes installed in the communication boxes, and the control command is transmitted to a specific communication box via the Internet, And a plurality of image data is transmitted through the Internet from the plurality of IP cameras installed in the snow removal sites in the whole country to collect the image data through the Internet, , Integrating a number of salt spraying facilities installed in the snow removal sites nationwide Wherein the brine spraying facility is divided into a plurality of brine spraying facilities, and the brine spraying facilities are divided and provided according to the jurisdiction area, A Comprehensive Management System Based on Compartment by Jurisdiction.
delete delete The method according to claim 1,
The remote integrated management server (400)
A commissioning operation command for the salt water spraying facility is transmitted to the plurality of communication boxes installed at the snow removal sites nationwide via the Internet at predetermined time intervals so that the saltwater spraying facility connected to the communication box through the drive control section of the communication box Remote on / off control,
A plurality of image data photographed by the plurality of IP cameras is transmitted to the brine spraying facility for performing the trial operation through the plurality of communication boxes and the Internet, Performance status of the brine spraying facility is divided into management zones according to the jurisdiction area and the current performance status information of the brine spraying facility performing the trial run is divided and managed according to the jurisdiction of the local area according to the jurisdiction area, Compartment - based integrated management system for various long - distance high - pressure spraying type salt water spraying facilities using Internet.
The method of claim 4,
The drive control unit 310 is configured to transmit the pumping control command by dividing the high pressure piston pump in such a manner that the high pressure piston pump can perform a pumping operation according to a plurality of preset pressure patterns,
Wherein the commissioning operation command for the salt water spraying facility transmitted to the plurality of communication boxes by the remote integrated management server (400) is configured to be transmitted so as to correspond to the predetermined plurality of pressure patterns. Compartment - based integrated management system for the high - pressure spray type brine spraying facility using the Internet.
The method of claim 5,
The salt water spraying equipment (100)
A first pressure sensor (171) provided in the brine pumping pipe connected to the swing check valve to sense a pressure in the brine pumping pipe;
A second pressure sensor (172) provided in the high pressure hose connected to the brine pumping pipe to sense a pressure in the high pressure hose;
Further comprising:
The remote integrated management server 400 receives the sensed data sensed by the first and second pressure sensors through the plurality of communication boxes and the Internet and displays the current opening and closing performance of a plurality of swing check valves State management information for the plurality of swing check valves is divided and managed according to the jurisdiction area to separately provide the jurisdiction-specific clients to the jurisdiction-based jurisdiction over the salt water spraying facility for each jurisdiction area. Compartment - based integrated management system for various long - distance high - pressure spraying type salt water spraying facilities using Internet.
[Claim 6]
The remote integrated management server (400)
A log management unit 410 for managing the ID registration for the regional clients, thereby managing and matching the regional clients in charge of the salt water spraying facility of the specific snow removal site and the salt water spraying facility;
A log recording unit 420 for identifying the accesses of the regional clients and recording the connection time and the server identification information;
An action recording unit 430 for recording operation time and salt water spray amount for each salt water spraying facility for the salt water spraying facilities;
When receiving a request from a specific local-area-specific client, corresponding to at least one salt-water spraying facility matched to the regional-specific client, the salt-water-spray-related information recorded by the action recording unit and the image data received from the IP camera disposed for the salt- A download providing unit 440 for providing the corresponding jurisdictional client in response to the request;
And the download providing unit identifies and records the information provided with the saltwater spraying related information to the region-specific jurisdiction client, and records the selection event by the region-specific client in the image data collected and provided by the plurality of IP cameras An event recording unit 450;
An image memory unit 460 for storing a plurality of image data received from the plurality of IP cameras installed on the snow removal sites in the nation through the Internet and storing the collected image data in the internal and external storage spaces;
A plurality of IP cameras installed in the snow removal sites in the country and receiving and collecting a plurality of image data collected through the Internet and classified by the IP cameras and displaying the classified image data in units of snow removal sites based on the communication box to which the IP cameras are connected An image output unit 470 for displaying and sorting one or more communication boxes installed in a corresponding area according to the jurisdiction and further dividing the communication boxes by the jurisdiction area;
A facility remote control unit 480 for controlling the on / off operation of the salt water spraying facility installed at a specific snow removal site by controlling a drive control unit provided in the communication box 300 remotely via the Internet;
A user input unit 490 for receiving a user operation command to the remote integrated management server;
A plurality of brine spraying facilities installed at a snow removal site in the whole country are integrated, and when receiving a request from a specific local-area-specific client, the salt- Related information recorded by the action recording unit and image data stored in the image memory unit and received from an IP camera disposed for the salt water spraying facility, corresponding to the identified one or more salt water spraying facilities, The control unit controls the drive control unit provided in the specific communication box through the facility remote control unit to provide a specific salt water spraying facility connected to the communication box among the snow removal sites in the whole country On-off Integrated control unit 491 that controls;
And a plurality of long-distance high-pressure spray type brine spraying facilities, wherein the integrated management system is based on a compartment based on the Internet using the Internet.
KR1020150124277A 2015-09-02 2015-09-02 unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment KR101640438B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020150124277A KR101640438B1 (en) 2015-09-02 2015-09-02 unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020150124277A KR101640438B1 (en) 2015-09-02 2015-09-02 unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment

Publications (1)

Publication Number Publication Date
KR101640438B1 true KR101640438B1 (en) 2016-07-19

Family

ID=56616434

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020150124277A KR101640438B1 (en) 2015-09-02 2015-09-02 unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment

Country Status (1)

Country Link
KR (1) KR101640438B1 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106056260A (en) * 2016-08-02 2016-10-26 云南华联锌铟股份有限公司 Open pit mine larger water sprinkler high efficiency water adding method
KR101760929B1 (en) * 2016-09-30 2017-08-01 주식회사 영신 disaster prevention unification management system based on division for each of region using internet for melting device of snow and ice, and sensing device of earthquake and landslide
KR101970107B1 (en) * 2018-09-12 2019-04-17 고현경 On-line management system to control apparatus for spraying deicing agent
CN110804988A (en) * 2019-11-21 2020-02-18 中海外交通建设有限公司 Road deicing device with ice breaking function

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20110071206A (en) 2009-12-21 2011-06-29 한국전자통신연구원 Method and apparatus for coaxial cable based broadcast and communication convergence in home network
KR20120039418A (en) 2010-10-15 2012-04-25 제일모직주식회사 Apparatus for optical sheet and method for preparing the optical sheet using the apparatus
KR20120128735A (en) 2011-05-17 2012-11-28 엘지전자 주식회사 Controlling method of network system and controlling method of a component for network system
KR101271037B1 (en) * 2012-12-10 2013-06-04 주식회사 영신 Scattering system of saline water using remote video control
KR20150020114A (en) 2013-08-12 2015-02-25 성균관대학교산학협력단 Highly heat-resistant separator, manufacturing method of the same, and battery including the same
KR101531672B1 (en) * 2015-02-10 2015-06-29 주식회사 영신 System of providing integration management under division by charging-districts for plurality of salt water sprinklers using internet network

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20110071206A (en) 2009-12-21 2011-06-29 한국전자통신연구원 Method and apparatus for coaxial cable based broadcast and communication convergence in home network
KR20120039418A (en) 2010-10-15 2012-04-25 제일모직주식회사 Apparatus for optical sheet and method for preparing the optical sheet using the apparatus
KR20120128735A (en) 2011-05-17 2012-11-28 엘지전자 주식회사 Controlling method of network system and controlling method of a component for network system
KR101271037B1 (en) * 2012-12-10 2013-06-04 주식회사 영신 Scattering system of saline water using remote video control
KR20150020114A (en) 2013-08-12 2015-02-25 성균관대학교산학협력단 Highly heat-resistant separator, manufacturing method of the same, and battery including the same
KR101531672B1 (en) * 2015-02-10 2015-06-29 주식회사 영신 System of providing integration management under division by charging-districts for plurality of salt water sprinklers using internet network

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106056260A (en) * 2016-08-02 2016-10-26 云南华联锌铟股份有限公司 Open pit mine larger water sprinkler high efficiency water adding method
CN106056260B (en) * 2016-08-02 2021-06-08 云南华联锌铟股份有限公司 Efficient water adding method for large sprinkler for open pit mine
KR101760929B1 (en) * 2016-09-30 2017-08-01 주식회사 영신 disaster prevention unification management system based on division for each of region using internet for melting device of snow and ice, and sensing device of earthquake and landslide
KR101970107B1 (en) * 2018-09-12 2019-04-17 고현경 On-line management system to control apparatus for spraying deicing agent
CN110804988A (en) * 2019-11-21 2020-02-18 中海外交通建设有限公司 Road deicing device with ice breaking function

Similar Documents

Publication Publication Date Title
KR101640438B1 (en) unification management system based on division for each of region using internet for multiple of high-pressure long-range jet salt water sprinkler equipment
KR101970107B1 (en) On-line management system to control apparatus for spraying deicing agent
US11026415B2 (en) Robotic agricultural system and method
US5956259A (en) Intelligent fueling
CA2805461C (en) Blast machine system controller
TWI659774B (en) Vapor recovery apparatus and gas station system
CN104471475A (en) Camera housings, camera modules, and monitoring systems
CN107226211A (en) One planting fruit-trees pesticide spraying device and spray method
CN106791652B (en) Vehicle-mounted transportation monitoring system
KR101531672B1 (en) System of providing integration management under division by charging-districts for plurality of salt water sprinklers using internet network
US20180195473A1 (en) Advanced internal combustion engine air induction cleaning system and method
KR102199732B1 (en) System for automatically spraying snow removal agent for road having freezing protection and snow removal function by radar detection
KR20120076691A (en) Growth and development system for farm and method for controlling process
KR102075684B1 (en) Distribution system that distributes liquid snow removal agent remotely
US11932231B2 (en) System and method for purging agricultural sprayer nozzles based on air pressure
KR101339199B1 (en) A remote control and live-image providing system for spraying a snow removal liquid apparatus
KR101760929B1 (en) disaster prevention unification management system based on division for each of region using internet for melting device of snow and ice, and sensing device of earthquake and landslide
CN112927467B (en) Vehicle-mounted intelligent terminal
KR101271037B1 (en) Scattering system of saline water using remote video control
KR102590320B1 (en) Robot for pest control in greenhouse
KR20170134044A (en) Agricultural Robot for Pest Control and Agricultural Robot System for Pest Control Therewith
KR101361739B1 (en) Snow removal liquid spray device remote
US20200238116A1 (en) Portable Water Storage System
CN114903024A (en) Automatic pesticide spraying system, plant protection robot and automatic pesticide spraying control method
KR101503870B1 (en) Semiautomatic liquid snow removal case using the complicated area

Legal Events

Date Code Title Description
E701 Decision to grant or registration of patent right
GRNT Written decision to grant
FPAY Annual fee payment

Payment date: 20190710

Year of fee payment: 4