CN102740112B - Method for controlling equipment polling based on video monitoring system - Google Patents

Method for controlling equipment polling based on video monitoring system Download PDF

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CN102740112B
CN102740112B CN201210201557.2A CN201210201557A CN102740112B CN 102740112 B CN102740112 B CN 102740112B CN 201210201557 A CN201210201557 A CN 201210201557A CN 102740112 B CN102740112 B CN 102740112B
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network node
headend equipment
monitor network
taking turn
real
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CN102740112A (en
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陆建青
赖齐
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Suzhou Keda Technology Co Ltd
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Suzhou Keda Technology Co Ltd
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Abstract

The invention provides a method for controlling equipment polling based on a video monitoring system. The method is used for performing fault diagnosis and visual substance detection on front-end equipment, and is characterized by comprising the following steps of: (a), receiving real-time monitoring request information which is used for indicating each front-end equipment to return real-time code streams, wherein the real-time code streams are used for performing visual substance detection on the front-end equipment; (b), returning the real-time code streams of the front-end equipment when the real-time monitoring request succeeds; and (c), transmitting real-time monitoring request failure information to a visual substance polling server when the real-time monitoring request fails.

Description

A kind of control method of the equipment taking turn based on video monitoring system
Technical field
The present invention relates to video monitoring system, especially the equipment routing inspection of network video monitor and control system, particularly, relate to the failure diagnosis of headend equipment in network video monitor and control system and look quality detection.
Background technology
Video monitoring system is mainly used in the safety system of specialty, by the real-time pictures of network from remotely inspecting scene.Video monitoring system can be incorporated in complicated large scale system easily, but can be used as in a more simple monitoring environment again simultaneously one independently system use.This product can be used to monitor some regions that are more responsive, that need high alert, and as building, bank and shop etc., these places all can nearby be supervised by central keyholed back plate room, or are supervised by different locations such as long-range security centers.Video monitoring system also can be applicable to some and replaces analog video camera, particularly in the place that some law compulsions are installed, as tunnel, crossing etc.Web camera also can be used to managing gate inhibition safety, no matter is that people or vehicle all can go on record pattern and time through out-of-date, therefore as easy as rolling off a logly reviews search.These video datas by network storage on long-range server, can not need the problem that concern of data is stolen.Web camera is highly susceptible to being connected in existing IP network, and can provide various places in real time and the video of high image quality by network.For some sensitizing ranges, as computer room, bank counter or other long-range place, all by local area network (LAN) or internet, closely supervise by the simplest most economical mode.Video monitoring system not only can strengthen the monitoring of chain StoreFront, guarantees that all are safe and sound, and also office is provided safely to the protection of height, as reception centre, meeting room etc., when occurring outside having a mind to, whom can be searched for and once entered computer room, to make suitable process.Video monitoring system is also a fairly good instrument to manufacturing industry manufacturer, is responsible at office or family, just can monitors the automated production equipment of factory, other machine and production line etc.
But in existing video monitoring system, usually there will be headend equipment normally cannot provide monitor video, it may be due to reasons such as equipment installation, ageing equipments, causes monitor video to occur video source loss, roll screen, snowflake etc.; Due to front end or certain passing node equipments fault, the monitor video that cannot get this front end may be caused; Or due to network reason, cause real-time video to postpone very large.These all need engineering staff to carry out malfunction elimination, maintenance or replacing.Front end in system often exists thousands of even tens thousand of, relies on engineering staff's manual examination (check) to be a time-consuming thing of requiring great effort again.Although and at present various monitoring system platforms in the industry some by functions such as equipment controles, there is certain equipment fault investigation ability, lack the detection to video image quality; And the business of supervisory control system can not be related to depending on the intelligent artifact manufacturer of quality detection.Both can be combined, patrol and examine out the method for the various abnormal condition of headend equipment simultaneously, also do not have now.Need to design a kind of method that automation is patrolled and examined, the method can be patrolled and examined intrasystem all front ends in timing, and notifies client patrolling and examining the displaying of result by client.
Summary of the invention
For defect of the prior art, the object of this invention is to provide a kind of control method of the equipment taking turn based on video monitoring system, for carrying out failure diagnosis to headend equipment and looking quality detection, wherein, described video monitoring system is for monitoring multiple headend equipment, it at least comprises multiple monitor network node, described headend equipment is corresponding with described monitor network node, and described video monitoring system and fault diagnosis system manage by depending on matter taking turn server alternately, described fault diagnosis system is for diagnosing failure cause and the location of described video monitoring system headend equipment, depending on matter taking turn server, for managing described video monitoring system and described fault diagnosis system to carry out failure diagnosis to described headend equipment and to look quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned, wherein, described video monitoring system and fault diagnosis system are unified is alternately undertaken dispatching and managing by depending on matter taking turn server, described control method comprise the steps: video monitoring system described in a. be received from described in look matter taking turn server send real-time monitoring solicited message, described real-time monitoring solicited message is used for returning real-time code stream by described monitor network node instruction each headend equipment described, wherein, described real-time code stream is used for looking quality detection to described headend equipment, b. described video monitoring system processes accordingly according to described real-time monitoring request results.
Preferably, comprise the steps: before described step a video monitoring system described in a1. be received from described in look matter taking turn server send accepting state monitoring solicited message, described status monitoring solicited message is for detecting the state information of described headend equipment; A2. described monitor network node returns the state information of described headend equipment according to described status monitoring solicited message.
Preferably, if also comprise the steps: before described step b after described step a2, the described headend equipment state information of a3. is returned as rolls off the production line, roll off the production line described in the monitor network node then adapted with the described headend equipment that rolls off the production line sends to described failure diagnosis node the reason that rolls off the production line, wherein said failure diagnosis node and the described monitor network node one_to_one corresponding of headend equipment.
Preferably, described step b also comprises the steps: that described in b1., monitoring is asked successfully in real time, then described video monitoring system returns the real-time code stream of described headend equipment; And monitoring is in real time asked unsuccessfully described in b2., then described video monitoring system sends the failure information of monitoring request in real time to described matter taking turn server of looking.
Preferably, described step b1 comprises the steps: that b11. and the described real-time monitor network node of asking successful headend equipment to adapt monitored send to described failure diagnosis node the time of delay that described real-time code stream returns.
Preferably, described step b2 comprises the steps: that b21. and the described real-time monitor network node of asking failed headend equipment to adapt of monitoring send described real-time monitoring to described failure diagnosis node and ask failure cause.
According to a further aspect in the invention, a kind of auxiliary control method based on fault diagnosis system is also provided, failure cause and the location of described video monitoring system headend equipment is diagnosed for auxiliary described video monitoring system, described video monitoring system, for monitoring multiple described headend equipment, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node, described fault diagnosis system, for diagnosing failure cause and the location of described headend equipment, wherein, described fault diagnosis system at least comprises multiple described failure diagnosis node, described failure diagnosis node and described monitor network node one_to_one corresponding, depending on matter taking turn server, for managing described video monitoring system and described fault diagnosis system to carry out failure diagnosis to described headend equipment and to look quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned, wherein, described video monitoring system and fault diagnosis system are unified is alternately undertaken dispatching and managing by depending on matter taking turn server, described auxiliary control method comprise the steps: fault diagnosis system described in A. be received from described in look matter taking turn server send diagnosis solicited message, described diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the headend equipment information adapted with described monitor network node alternately, B. described fault diagnosis system obtains the headend equipment information that adapts with described monitor network node and looks matter taking turn server described in being sent to.
Preferably, described steps A comprises the steps: that fault diagnosis system described in A'. looks the lower radiodiagnosis x solicited message that matter taking turn server sends described in being received from, and described lower radiodiagnosis x solicited message is used to indicate described failure diagnosis node and described monitor network node and obtains the headend equipment that rolls off the production line adapted with described monitor network node alternately and to roll off the production line reason.
Preferably, described steps A comprises the steps: A ". look the real-time code stream delayed diagnosis solicited message that matter taking turn server sends described in described fault diagnosis system is received from, described real-time code stream delayed diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the time of delay that described monitor network node returns real-time code stream alternately.
Preferably, described steps A comprises the steps: A " '. look the failure diagnosis solicited message that matter taking turn server sends described in described fault diagnosis system is received from, described failure diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the fault headend equipment failure cause adapted with described monitor network node alternately.
According to a further aspect in the invention, a kind of auxiliary control method based on looking matter taking turn server is also provided, failure diagnosis is carried out to described video monitoring front end equipment for managing described video monitoring system and fault diagnosis system and looks quality detection, described video monitoring system, for monitoring multiple described headend equipment, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node, described fault diagnosis system, for diagnosing failure cause and the location of described headend equipment, wherein, described fault diagnosis system at least comprises multiple failure diagnosis node, described failure diagnosis node and monitor network node one_to_one corresponding, describedly look matter taking turn server, for managing described video monitoring system and described fault diagnosis system to carry out failure diagnosis to described headend equipment and to look quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned, wherein, described video monitoring system and fault diagnosis system are unified is alternately undertaken dispatching and managing by depending on matter taking turn server, described auxiliary control method comprises the steps: that looking matter taking turn server described in I. sends described real-time monitoring solicited message to described video monitoring system, II. receive the real-time code stream returned of described video monitoring system each monitor network node depending on matter taking turn server described in and carry out looking quality detection, III. depending on matter taking turn server above-mentioned steps II showed user depending on quality detection result described in.
Preferably, also comprise the steps: before described step I to send described status monitoring solicited message depending on matter taking turn server to described video monitoring system described in I1.; I2. the state information of described monitor network node is received described in depending on matter taking turn server.
Preferably, if described step I2 comprises the steps: that the state information that I21. above-mentioned steps I2 returns is that described headend equipment is in down status, then look matter taking turn server described in and send lower radiodiagnosis x request to described fault diagnosis system; If the state information that I22. above-mentioned steps I2 returns is that described headend equipment is in line states, then monitor solicited message depending on matter taking turn server in real time to described video monitoring system transmission described in.
Preferably, described Step II also comprises the steps: that looking matter taking turn server described in II'. receives described real-time monitoring request failure information, and sends the failed diagnostic message of real-time monitoring to described fault diagnosis system; II ". described in depending on matter taking turn server receive described fault diagnosis system arrange monitor network node failure information.
Preferably, described Step II I also comprises the steps: to look matter taking turn server described in III'. by the monitor network node failure information display of described arrangement to user.
According to another aspect of the invention, also provide a kind of and there is the supervisory control system of looking quality detection function, it at least comprises video monitoring system, fault diagnosis system, look matter taking turn server and taking turn result treatment and display systems, wherein, described video monitoring system, for monitoring described headend equipment, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node; Described fault diagnosis system, for with described video monitoring system alternately to obtain failure cause and the relevant information of described headend equipment, wherein, described fault diagnosis system at least comprises multiple failure diagnosis node, described failure diagnosis node and monitor network node one_to_one corresponding; Describedly look matter taking turn server, failure diagnosis is carried out to described video monitoring front end equipment for managing described video monitoring system and fault diagnosis system and looks quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned, wherein, described video monitoring system and fault diagnosis system are unified is alternately undertaken dispatching and managing by depending on matter taking turn server; And described taking turn result treatment and display systems, for receive according to described in show the information of described video monitoring system each monitor network node of user depending on matter taking turn server and make corresponding process; Wherein, comprise the steps: (1). detect the state of described headend equipment; (2) if. described headend equipment rolls off the production line, then the monitor network node at roll off the production line reason and the place of headend equipment of rolling off the production line described in detecting, and arranges the relevant information that rolls off the production line and show to user, and goes to step (8); (3) if. described headend equipment is online, then send and monitor solicited message in real time; (4) if. in real time monitoring is asked unsuccessfully, then diagnose described headend equipment failure cause and place network node, and arranges fault relevant information and show to user, and goes to step (8); (5) if. in real time monitoring is asked successfully, then described headend equipment returns described real-time code stream; (6). quality detection is looked to described real-time code stream; (7) if. picture quality has problem, then arrange and show to user depending on quality detection relevant information, and to go to step (9); (8) if. picture quality is no problem, obtains the time of delay of described real-time code stream, and arrange postpone relevant information show to user; (9). judge whether that taking turn terminates, if taking turn does not terminate, detect next headend equipment and repeat step (1) to step (8), if judge, taking turn terminates, then terminate taking turn operation.
What the present invention was combined with depending on quality detection by failure diagnosis looks matter taking turn method.Failure diagnosis is collected fault message, is looked quality detection analysis video quality, and the failure diagnosis node that the topological network node that in video monitoring system, headend equipment is corresponding adapts with it carries out mutual and unifies to dispatch by depending on matter taking turn server and manage.Thus while the headend equipment position and reason of Accurate Diagnosis fault, depending on matter, corresponding detection is carried out to headend equipment.
Accompanying drawing explanation
By reading the detailed description done non-limiting example with reference to the following drawings, other features, objects and advantages of the present invention will become more obvious:
Fig. 1 illustrates according to a specific embodiment of the present invention, a kind of structural representation of control method of the equipment taking turn based on video monitoring system;
Fig. 2 illustrates according to the first embodiment of the present invention, a kind of flow chart of control method video monitoring system of the equipment taking turn based on video monitoring system;
Fig. 3 illustrates according to a second embodiment of the present invention, a kind of flow chart of control method fault diagnosis system of the equipment taking turn based on video monitoring system; And
Fig. 4 illustrates according to a specific embodiment of the present invention, a kind of sequential chart of control method of the equipment taking turn based on video monitoring system.
Embodiment
By reading the detailed description done non-limiting example with reference to the following drawings, other features, objects and advantages of the present invention will become more obvious:
Fig. 1 illustrates according to a specific embodiment of the present invention, a kind of structural representation of control method of the equipment taking turn based on video monitoring system.Particularly, originally illustrate video monitoring system 2, fault diagnosis system 3, depending on matter taking turn server 4 and taking turn result and process display systems 5.Described video monitoring system 2 at least comprises multiple monitor network node, and for monitoring multiple headend equipment, described headend equipment is corresponding with monitor network node,
Particularly, it will be appreciated by those skilled in the art that fault diagnosis system 3 is the set of system independent of monitor supervision platform.It sets up diagnosis node on the network node of monitor supervision platform, is responsible for carrying out alternately with the modules in monitor supervision platform, obtains the state that it runs, and detects actual network delay by simulation transmission code stream.Due to its independence, monitor supervision platform system is not almost affected.When fault diagnosis system receives diagnosis request, gather corresponding information to the respective nodes on topological structure, and these information are returned to requestor successively.Requestor receives these information, can determine in real time monitoring signaling and the trend of code stream on monitor node, and which network node produced problem and reason can diagnose out be actually, thus helps the rapid fault point of client.
Be responsible for depending on matter taking turn scheduling, failure diagnosis request depending on matter taking turn server 4, look the process of quality detection, analysis or testing result.
Concrete workflow is as follows:
1) timing of matter taking turn server is looked successively to all front ends monitor equipment status.If discovering device rolls off the production line, send equipment to fault diagnosis system and to roll off the production line cause diagnosis order, diagnostic system is along the reason that rolls off the production line of headend equipment on each node of Path-collection; If equipment is online, sends the order of monitoring in real time to monitor supervision platform, ask real-time code stream.
2) if in real time monitoring ask unsuccessfully, send monitoring in real time ask failure cause diagnostic command to fault diagnosis system, diagnostic system monitors failed reason along real-time on each node of Path-collection; If monitoring is asked successfully in real time, diagnostic system is along the code stream time of delay on each node of Path-collection.
3) nodal information collected by diagnostic system depending on matter taking turn server arranges, and then reports in the mode of notice or alarm.
4) depending on matter taking turn server, the real-time code stream feeding got is looked quality detection module, the validity of analysis image.
5) depending on matter taking turn server, the result depending on matter analysis is reported in the mode of notice or alarm.
The mode of multichannel taking turn is adopted, about being interposed between for 10 seconds between taking turn depending on matter taking turn server.Usual one can simultaneously taking turn 5 ~ 8 tunnel depending on matter taking turn server.
Fig. 2 illustrates according to the first embodiment of the present invention, a kind of flow chart of control method video monitoring system of the equipment taking turn based on video monitoring system.Particularly, originally 8 steps are illustrated, first be step S201, described video monitoring system receives by the described status monitoring solicited message sent depending on matter taking turn server, and described status monitoring solicited message is for detecting the state information of described each headend equipment of video monitoring system.Thereafter perform step S202, described request information passes through each monitor network node in the mode of signaling, and the headend equipment corresponding according to described monitor network node returns the state information of described headend equipment.State information returns rear execution step S203, if described headend equipment state information is returned as roll off the production line, roll off the production line described in the monitor network node then adapted with the described headend equipment that rolls off the production line sends alternately to failure diagnosis node the reason that rolls off the production line of headend equipment, and wherein said failure diagnosis node is corresponding with described monitor network node.If described headend equipment state information is returned as reach the standard grade, then perform step S204, receive and monitor solicited message in real time, described real-time monitoring solicited message is used to indicate each headend equipment described and returns real-time code stream, wherein, described real-time code stream is used for looking quality detection to described headend equipment.If described real-time monitoring is asked successfully, then perform step S205, return the real-time code stream of described headend equipment and perform step S206, sending to failure diagnosis node the time of delay that described real-time code stream returns with the described real-time monitor network node of asking successful headend equipment to adapt monitored.If described real-time monitoring is asked unsuccessfully, then perform step S207, described video monitoring system sends the failure information of monitoring request in real time to described matter taking turn server of looking.Perform step S208 afterwards, send described real-time monitoring to failure diagnosis node ask failure cause with the described real-time monitor network node of asking failed headend equipment to adapt of monitoring.
Fig. 3 illustrates according to a second embodiment of the present invention, a kind of flow chart of control method fault diagnosis system of the equipment taking turn based on video monitoring system.Described video monitoring system is for diagnosing failure cause and the location of described video monitoring system headend equipment, and wherein, described fault diagnosis system at least comprises multiple described failure diagnosis node, and described failure diagnosis node is corresponding with described monitor network node.Particularly, 4 steps are originally illustrated.First be step S301, described fault diagnosis system receives diagnosis solicited message, and described diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the headend equipment information adapted with described monitor network node alternately.If the diagnosis solicited message described in described step S301 is lower radiodiagnosis x solicited message, described lower radiodiagnosis x solicited message is used to indicate described failure diagnosis node and described monitor network node and obtains the headend equipment that rolls off the production line adapted with described monitor network node alternately and to roll off the production line reason, then perform step S302, obtain the reason look matter taking turn server described in being sent to of rolling off the production line of the headend equipment adapted with described monitor network node.If the diagnosis solicited message described in described step S301 is real-time code stream delayed diagnosis solicited message, described real-time code stream delayed diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the time of delay that described monitor network node returns real-time code stream alternately, then perform step S303, obtain the time of delay returning described real-time code stream of the headend equipment adapted with described monitor network node and look matter taking turn server described in being sent to.If the diagnosis solicited message described in described step S301 is failure diagnosis solicited message, described failure diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the fault headend equipment failure cause adapted with described monitor network node alternately.Then perform step S304, obtain the failure cause of the headend equipment adapted with described monitor network node and look matter taking turn server described in being sent to.
Particularly, it will be appreciated by those skilled in the art that described fault diagnosis system by following method according to the place node of described monitor network node determination faulty equipment and failure cause.Requestor can judge monitoring signaling and the trend of code stream on monitor node in real time according to the information received, when fault diagnosis system receives diagnosis request, gather corresponding information to the respective nodes on topological structure, the series connection of these respective nodes embodies signaling and the trend of code stream on monitor node.And carry this time in the information of these nodes and ask corresponding state or fault message, which node requestor can diagnose out out of joint from these information..
More specifically, it will be appreciated by those skilled in the art that the detection of described delay time embodies the network condition of monitor node, if delay time is in normal range (NR), so this network is good; If delay time is beyond normal range (NR), so this network segment is problematic, for example, bandwidth not, network congestion etc.
Fig. 4 illustrates according to a specific embodiment of the present invention, a kind of sequential chart of control method of the equipment taking turn based on video monitoring system.Particularly, originally illustrating 12 steps, is first step 1, described in send described state-detection solicited message to described video monitoring system 2 depending on matter taking turn system 4.Be step 2 afterwards, described in look matter taking turn system 4 by being online with the state information of this headend equipment in the headend equipment in described video monitoring system 2 adaptably monitor network node.Then be step 3, described in send described real-time monitoring solicited message to described video monitoring system 2 depending on matter taking turn system 4, described real-time monitoring solicited message returns described real-time code stream to carry out looking quality detection for asking described headend equipment.Step 4, described real-time monitoring solicited message is passed to each monitor network node in described video monitoring system 2 in the mode of signaling.Described real-time monitoring asks successfully then to perform step 5, looks in matter taking turn system 4 described in real-time code stream is back to by described headend equipment.Now perform step 6, described in send the request of real-time code stream delayed diagnosis depending on matter taking turn system 4 to described fault diagnosis system 3.After described fault diagnosis system 3 receives described real-time code stream delay request, perform step 7, the monitor network node that described fault diagnosis system 3 and described headend equipment adapt carries out the time of delay obtaining described real-time code stream alternately, and the failure diagnosis node adapted with described monitor network node in wherein said fault diagnosis system 3 and described monitor network node carry out alternately.Be step 8 afterwards, described in the time of delay of collecting the real-time code stream of each monitor network node is back to by described fault diagnosis system 3, look matter taking turn server 4.Describedly perform step 9 depending on matter taking turn server 4, according to described fault diagnosis system 3, the time of delay of collecting the real-time code stream of each monitor network node is arranged.Perform step 10 depending on matter taking turn server 4 described in after arrangement completes, organize your messages is sent to described taking turn result treatment and display systems 5 by it.Afterwards perform step 11, described in carry out looking quality detection according to the real-time code stream received depending on matter taking turn server 4.After detection, perform step 12, described in be sent to described taking turn result treatment and display systems 5 by described depending on quality detection result depending on matter taking turn server 4
In a change case of the present embodiment, if described in step 2 depending on matter taking turn system 4 by the state information with this headend equipment in the headend equipment in described video monitoring system 2 adaptably monitor network node for rolling off the production line, look matter taking turn system 4 then and send lower radiodiagnosis x request to described fault diagnosis system 3, the monitor network node that described fault diagnosis system 3 and described headend equipment adapt carries out the reason that rolls off the production line obtaining described headend equipment alternately, wherein, the failure diagnosis node adapted with described monitor network node in described fault diagnosis system 3 and described monitor network node carry out alternately.
More specifically, in another change case, the real-time monitoring described in step 4 is asked unsuccessfully, then send failure diagnosis request depending on matter taking turn system 4 to described fault diagnosis system 3 described in.After described fault diagnosis system 3 receives described failure diagnosis request, the monitor network node adapted with described headend equipment carries out the failure cause and the malfunctioning node that obtain described headend equipment alternately, and the failure diagnosis node adapted with described monitor network node in wherein said fault diagnosis system 3 and described monitor network node carry out alternately.Described fault diagnosis system 3 collect each monitor network node failure reason and malfunctioning node be back to described in look matter taking turn server 4.Describedly collect each monitor network node failure reason and malfunctioning node depending on matter taking turn server 4 according to described fault diagnosis system 3.Described taking turn result treatment and display systems 5 is sent to after arrangement completes.
Through checking, the method fullys meet design object:
1) equipment of orienting exactly rolls off the production line reason.Particularly by the front end of the third-party platform of gateway accessing, can locate exactly is that problem has appearred in gateway, or the reason of third-party platform oneself;
2) oriented the flow direction of real-time monitoring demand signalling exactly and asked failed malfunctioning node and failure cause;
3) orient the trend of real-time monitoring code stream in supervisory control system and code stream exactly in the time of delay of each node, thus find the main positions that code stream postpones exactly;
4) diagnosis accurately reaches more than 90%.Greatly reduce the proof cycle of monitoring frontend.A supervisory control system with 20,000 control points, a time of looking the complete all devices of matter taking turn server taking turn is greatly about 7 ~ 11 hours, and if click the test mode of request monitoring manually, suppose that click and image display are also 10 seconds, the time of the complete all control points of hand inspection is 55 hours.In real time, check that the time of cost much larger than 55 hours, and cannot will accurately orient above a variety of causes manually.
Above specific embodiments of the invention are described.It is to be appreciated that the present invention is not limited to above-mentioned particular implementation, those skilled in the art can make various distortion or amendment within the scope of the claims, and this does not affect flesh and blood of the present invention.

Claims (16)

1., based on a control method for the equipment taking turn of video monitoring system, for carrying out failure diagnosis to headend equipment and looking quality detection, it is characterized in that,
Described video monitoring system, for monitoring multiple described headend equipment, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node;
Fault diagnosis system, for diagnosing failure cause and the location of described headend equipment, described fault diagnosis system at least comprises multiple failure diagnosis node, described failure diagnosis node and described monitor network node one_to_one corresponding;
Depending on matter taking turn server, for managing described video monitoring system and described fault diagnosis system to carry out failure diagnosis to described headend equipment and to look quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned
Wherein, the mutual unification of described video monitoring system and described fault diagnosis system is carried out dispatching and managing depending on matter taking turn server by described,
Described control method comprises the steps:
A. described video monitoring system be received from described in look matter taking turn server send real-time monitoring solicited message, described real-time monitoring solicited message is used for indicating headend equipment described in each to return described real-time code stream by described monitor network node, wherein, described real-time code stream is used for looking quality detection to described headend equipment;
B. described video monitoring system processes accordingly according to monitoring request results in real time.
2. control method according to claim 1, is characterized in that, comprises the steps: before described step a
A1. described video monitoring system be received from described in look matter taking turn server send status monitoring solicited message, described status monitoring solicited message is for detecting the state information of described headend equipment;
A2. described monitor network node returns the state information of described headend equipment according to described status monitoring solicited message.
3. control method according to claim 2, is characterized in that, also comprises the steps: after described step a2 before described step b
If the state information of the described headend equipment a3. returned is for rolling off the production line, then the reason that rolls off the production line of the headend equipment rolled off the production line described in the monitor network node adapted with the headend equipment rolled off the production line sends to described failure diagnosis node.
4. control method according to claim 1, is characterized in that, described step b also comprises the steps:
If b1. monitoring is asked successfully in real time, then described video monitoring system returns the real-time code stream of described headend equipment; And
If b2. monitoring is asked unsuccessfully in real time, then described video monitoring system sends the failure information of monitoring request in real time to described matter taking turn server of looking.
5. control method according to claim 4, is characterized in that, described step b1 comprises the steps:
B11. with monitor in real time the monitor network node of asking successful headend equipment to adapt and send to described failure diagnosis node the time of delay that described real-time code stream returns.
6. control method according to claim 4, is characterized in that, described step b2 comprises the steps:
B21. send to monitor in real time to described failure diagnosis node ask failure cause with the described real-time monitor network node of asking failed headend equipment to adapt monitored.
7., based on an auxiliary control method for fault diagnosis system, for failure cause and the location of auxiliary video supervisory control system diagnosis headend equipment, it is characterized in that,
Described video monitoring system, for monitoring multiple described headend equipment, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node;
Described fault diagnosis system, for diagnosing failure cause and the location of described headend equipment, wherein, described fault diagnosis system at least comprises multiple failure diagnosis node, described failure diagnosis node and monitor network node one_to_one corresponding,
Depending on matter taking turn server, for managing described video monitoring system and described fault diagnosis system to carry out failure diagnosis to described headend equipment and to look quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned
Wherein, described video monitoring system and described fault diagnosis system are unified is alternately carried out dispatching and managing depending on matter taking turn server by described,
Described auxiliary control method comprises the steps:
A. described fault diagnosis system be received from described in look the diagnosis solicited message that matter taking turn server sends, described diagnosis solicited message is used to indicate the information that described failure diagnosis node and described monitor network node obtain the headend equipment adapted with described monitor network node alternately;
B. described fault diagnosis system obtains the information of the headend equipment adapted with described monitor network node and looks matter taking turn server described in being sent to.
8. auxiliary control method according to claim 7, is characterized in that, described steps A comprises the steps:
A'. described fault diagnosis system be received from described in look the lower radiodiagnosis x solicited message that matter taking turn server sends, described lower radiodiagnosis x solicited message is used to indicate the reason that rolls off the production line that described failure diagnosis node and described monitor network node obtain the headend equipment rolled off the production line adapted with described monitor network node alternately.
9. auxiliary control method according to claim 7, is characterized in that, described steps A comprises the steps:
A ". look the real-time code stream delayed diagnosis solicited message that matter taking turn server sends described in described fault diagnosis system is received from, described real-time code stream delayed diagnosis solicited message is used to indicate described failure diagnosis node and described monitor network node obtains the time of delay that described monitor network node returns described real-time code stream alternately.
10. auxiliary control method according to claim 7, is characterized in that, described steps A comprises the steps:
A " '. look the failure diagnosis solicited message that matter taking turn server sends described in described fault diagnosis system is received from, described failure diagnosis solicited message is used to indicate the failure cause that described failure diagnosis node and described monitor network node obtain the headend equipment of the fault adapted with described monitor network node alternately.
11. 1 kinds, based on the auxiliary control method looking matter taking turn server, are carried out failure diagnosis for managing video supervisory control system and fault diagnosis system to headend equipment and look quality detection, it is characterized in that,
Described video monitoring system, for monitoring multiple described headend equipment, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node;
Described fault diagnosis system, for diagnosing failure cause and the location of described headend equipment, wherein, described fault diagnosis system at least comprises multiple failure diagnosis node, described failure diagnosis node and monitor network node one_to_one corresponding,
Describedly look matter taking turn server, for managing described video monitoring system and described fault diagnosis system to carry out failure diagnosis to described headend equipment and to look quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned
Wherein, described video monitoring system and described fault diagnosis system are unified is alternately carried out dispatching and managing depending on matter taking turn server by described,
Described auxiliary control method comprises the steps:
I. look matter taking turn server described in and send described real-time monitoring solicited message to described video monitoring system;
II. receive depending on matter taking turn server real-time code stream that described video monitoring system each monitor network node returns described in and carry out looking quality detection;
III. depending on matter taking turn server above-mentioned steps II showed user depending on quality detection result described in.
12. auxiliary control methods according to claim 11, is characterized in that, also comprise the steps: before described step I
I1. look matter taking turn server described in and send status monitoring solicited message to described video monitoring system;
I2. the state information of described monitor network node is received described in depending on matter taking turn server.
13. auxiliary control methods according to claim 12, is characterized in that, described step I2 comprises the steps:
If the state information that I21. above-mentioned steps I2 returns is that described headend equipment is in down status, then looks matter taking turn server described in and send lower radiodiagnosis x solicited message to described fault diagnosis system;
If the state information that I22. above-mentioned steps I2 returns is that described headend equipment is in line states, then monitor solicited message depending on matter taking turn server in real time to described video monitoring system transmission described in.
14. auxiliary control methods according to claim 13, is characterized in that, described Step II also comprises the steps:
II'. look matter taking turn server described in and receive described real-time monitoring request failure information, and send the failed diagnostic message of real-time monitoring to described fault diagnosis system;
II ". described in receive depending on matter taking turn server the fault message of described monitor network node that described fault diagnosis system arranges.
15. auxiliary control methods according to claim 14, is characterized in that, described Step II I also comprises the steps:
III'. matter taking turn server is looked described in by the described monitor network node failure information display of described arrangement to user.
16. 1 kinds have the supervisory control system of looking quality detection function, and it at least comprises video monitoring system, fault diagnosis system, look matter taking turn server and taking turn result treatment and display systems, it is characterized in that,
Described video monitoring system, for monitoring frontend, it at least comprises multiple monitor network node, and described headend equipment is corresponding with described monitor network node;
Described fault diagnosis system, for with described video monitoring system alternately to obtain failure cause and the information of described headend equipment, wherein, described fault diagnosis system at least comprises multiple failure diagnosis node, described failure diagnosis node and monitor network node one_to_one corresponding;
Describedly look matter taking turn server, failure diagnosis is carried out to described headend equipment for managing described video monitoring system and described fault diagnosis system and looks quality detection, wherein, described depending on matter taking turn server according to the information that receives judge in real time monitoring solicited message and in real time code stream in the trend of multiple described monitor network node, and the monitor network node of fault is positioned, wherein, described video monitoring system and fault diagnosis system are unified is alternately undertaken dispatching and managing by depending on matter taking turn server; And
Described taking turn result treatment and display systems, for receive according to described in show the information of the described monitor network node of user depending on matter taking turn server and make corresponding process;
Wherein, comprise the steps:
(1). detect the state of described headend equipment;
(2) if. described headend equipment rolls off the production line, then the monitor network node at roll off the production line reason and the place of headend equipment of rolling off the production line described in detecting, and arranges offline information and show to user, and goes to step (8);
(3) if. described headend equipment is online, then send described real-time monitoring solicited message;
(4) if. in real time monitoring is asked unsuccessfully, then diagnose described headend equipment failure cause and place network node, and arranges fault message and show to user, and goes to step (8);
(5) if. in real time monitoring is asked successfully, then described headend equipment returns described real-time code stream;
(6). quality detection is looked to described real-time code stream;
(7) if. picture quality has problem, then arrange and show to user depending on quality detection information, and to go to step (9);
(8) if. picture quality is no problem, obtains the time of delay of described real-time code stream, and arranges deferred message and show to user;
(9). judge whether that taking turn terminates, if taking turn does not terminate, detect next headend equipment and repeat step (1) to step (8), if judge, taking turn terminates, then terminate taking turn operation.
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Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103414916B (en) * 2013-08-30 2015-07-15 苏州科达科技股份有限公司 Fault diagnosis system and method
CN103716588A (en) * 2013-12-25 2014-04-09 惠州市伟乐科技有限公司 Multi-screen alternate touring method based on video monitoring
CN104113738A (en) * 2014-08-12 2014-10-22 深圳英飞拓科技股份有限公司 Method based on video equipment diagnosis and monitoring system based on video equipment diagnosis
CN106657874B (en) * 2016-09-23 2020-09-11 成都通甲优博科技有限责任公司 Tower whole-system monitoring method and system based on multiple cameras
CN108234396B (en) * 2016-12-14 2019-04-19 视联动力信息技术股份有限公司 A kind of method and device of monitoring device status information real-time synchronization
CN110519554B (en) * 2018-05-22 2021-08-06 视联动力信息技术股份有限公司 Monitoring detection method and device
CN109391701A (en) * 2018-12-25 2019-02-26 张丰祥 The more calculate node analysis systems in cloud
CN110830763A (en) * 2019-09-25 2020-02-21 视联动力信息技术股份有限公司 Monitoring video inspection method and device
CN111131788B (en) * 2019-12-27 2022-11-04 视联动力信息技术股份有限公司 Monitoring resource state detection method and device and computer readable storage medium
CN112822524A (en) * 2021-01-05 2021-05-18 株洲中车时代电气股份有限公司 Real-time on-demand method, device and system for locomotive-mounted video and server

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101448177A (en) * 2008-12-29 2009-06-03 广州杰赛科技股份有限公司 Television network image monitoring system and monitoring method thereof
US20090164849A1 (en) * 2007-12-25 2009-06-25 Optim Corporation Terminal apparatus, fault diagnosis method and program thereof
CN102111310A (en) * 2010-12-31 2011-06-29 网宿科技股份有限公司 Method and system for monitoring content delivery network (CDN) equipment status
CN102316303A (en) * 2010-06-29 2012-01-11 广东迅通科技股份有限公司 Equipment running status monitoring system
CN102387038A (en) * 2011-10-20 2012-03-21 赛特斯网络科技(南京)有限责任公司 Network video fault positioning system and method based on video detection and comprehensive network management

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011044873A (en) * 2009-08-20 2011-03-03 Hitachi Kokusai Electric Inc Video monitoring system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090164849A1 (en) * 2007-12-25 2009-06-25 Optim Corporation Terminal apparatus, fault diagnosis method and program thereof
CN101448177A (en) * 2008-12-29 2009-06-03 广州杰赛科技股份有限公司 Television network image monitoring system and monitoring method thereof
CN102316303A (en) * 2010-06-29 2012-01-11 广东迅通科技股份有限公司 Equipment running status monitoring system
CN102111310A (en) * 2010-12-31 2011-06-29 网宿科技股份有限公司 Method and system for monitoring content delivery network (CDN) equipment status
CN102387038A (en) * 2011-10-20 2012-03-21 赛特斯网络科技(南京)有限责任公司 Network video fault positioning system and method based on video detection and comprehensive network management

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