CN104022905B - Meshed network monitoring method and device - Google Patents
Meshed network monitoring method and device Download PDFInfo
- Publication number
- CN104022905B CN104022905B CN201410266104.7A CN201410266104A CN104022905B CN 104022905 B CN104022905 B CN 104022905B CN 201410266104 A CN201410266104 A CN 201410266104A CN 104022905 B CN104022905 B CN 104022905B
- Authority
- CN
- China
- Prior art keywords
- router
- port
- vpn
- monitoring module
- read
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Data Exchanges In Wide-Area Networks (AREA)
Abstract
The invention provides a kind of meshed network monitoring method and device.The method of the present invention includes:Step 1:Carry out node parameter configuration;Step 2:According to user instruction, monitored object is determined;Step 3:According to monitored object, corresponding monitoring module is called to be monitored monitored object.Methods and apparatus of the present invention can be monitored to all kinds of cascade network equipment;Additionally it is possible to jump to step by step on the network equipment of second line of a couplet minor node, test second line of a couplet router and VPN line conditions.
Description
Technical field
The present invention relates to network monitoring field, more particularly to a kind of meshed network monitoring method and device.
Background technology
At present, most of network monitoring software all uses snmp protocol, is read and is triggered network in get and set modes and set
It is standby, and it is aided with the displaying that webpage mode carries out data, development language used is generally based on java, it is necessary to pacify during software deployment
Dress monitoring private server, the running environment and parameter configuration of server acquire a certain degree of difficulty.When adapting to civil aviaton's information network,
Business software configuration, using in deployment and network adaptability all by larger restriction.Specific to equipment such as routers
Individual monitoring, because MIB storehouses information is inconsistent, needs to change corresponding prison in bottom configuration file during business software is disposed
Control the MIB values of point, and can not multistage great-jump-forward check network device state and line condition so that network monitoring operation is very
It is complicated, cumbersome.
The content of the invention
In view of this, the invention provides a kind of meshed network monitoring method and device, all kinds of cascade networks can be set
It is standby to be monitored;Additionally it is possible to jump to step by step on the network equipment of second line of a couplet minor node, test second line of a couplet router and VPN lines
Road situation.
The meshed network monitoring method that the present invention is provided, including:
Step 1:Carry out node parameter configuration;
Step 2:According to user instruction, monitored object is determined;
Step 3:According to monitored object, corresponding monitoring module is called to be monitored monitored object.
It is described to call corresponding monitoring module to be monitored monitored object according to monitored object, including:
When monitored object is router port, router port monitoring module is called to read router port configuration ginseng
Number, and router port progress separated time journey is monitored in real time, alarmed when router port is changed;
When monitored object is router port flow, router port traffic monitoring module is called to read router port
Configuration parameter, and router port flow is carried out to monitor and show in real time;
When monitored object is wall port, wall port monitoring module is called to read firewall configuration parameter, and
Separated time journey is carried out to wall port to monitor in real time, is alarmed when wall port is changed;
When monitored object is switch ports themselves, switch ports themselves monitoring module is called to read switch ports themselves configuration ginseng
Number, and switch ports themselves progress separated time journey is monitored in real time, alarmed when switch ports themselves are changed;
When monitored object is router cpu, internal memory and housing temperature, router cpu, internal memory and housing temperature prison are called
Control module and read router port configuration parameter, and separated time journey is carried out to router cpu, internal memory and housing temperature and monitor in real time;
When monitored object is 3G boards and signal, 3G boards and signal monitoring module is called to read 3G boards configuration ginseng
Number, and 3G boards and signal strength progress separated time journey are monitored in real time, and show the port status and signal intensity of 3G boards;
When monitored object is network link, network link monitoring module is called to read network configuration parameters, and it is right
The Remote ping that the control point that is set in network carries out separated time journey are monitored in real time, when test network control point exist packet loss or
Alarmed when obstructed;
When monitored object is VPN circuits, calls VPN circuit monitorings module to read VPN line configuration parameters, carry out Ping
Test, and show test result;
When monitored object is second line of a couplet VPN circuits, second line of a couplet VPN circuit monitorings module is called to read each bar second line of a couplet VPN circuits
Configuration parameter, separated time journey carries out Ping Test to each bar second line of a couplet VPN circuits respectively, and shows the test of each bar second line of a couplet VPN circuits
As a result.
In step 1, router port parameter configuration is carried out, including:
Step 1a:It is determined that the router packet read;
Step 1b:It is grouped according to router, reads the IP address and SNMP community name of router A machines and B machines;
Step 1c:Port scan is carried out to router A machines and B machines respectively using dual-thread, and scanning result is shown to
User is to be selected;
Step 1d:Read the port of user's selection No. index;
Step 1e:The port information of router A machines and B machines is spliced into the MIB storehouses that can be read according to port No. index
Point position information parameter, and write in configuration file.
In step 3, when monitored object is router port, router port monitoring module is called to be grasped as follows
Make:
Step 2a:It is determined that the router packet read;
Step 2b:It is grouped according to router, reads the IP address and SNMP community name of router, and the end to be checked
Mouth MIB storehouses information parameter, includes reading the state and error information of router port;
Step 2c:Port status scanning and error information scannings are carried out to router using dual-thread respectively;
Step 2d:Determine whether read port state first, if reading first, then judge port status whether just
Often;If not reading first, then into step 2e;
Step 2e:Judge whether port status is normal, if abnormal, port status judged result first is obtained, if first
Secondary port status is abnormal, then does not alarm, if port status is normal first, alarms.
In step 3, when monitored object is second line of a couplet VPN circuits, second line of a couplet VPN circuit monitoring modules are called to be grasped as follows
Make:
Step 3a:Read second line of a couplet VPN line configuration parameters;
Step 3b:According to the second line of a couplet VPN line configuration parameters, dual-thread is used to log in the first order in SSH modes active and standby
Two routers, after logining successfully, into step 3c, otherwise provide and unsuccessfully point out;
Step 3c:The single router in the second level is logged in telnet modes, after logining successfully, into 3d, otherwise provided
Failure is pointed out;
Step 3d:The single VPN device of the third level is logged in telnet modes, after logining successfully, into 3e, otherwise provided
Failure is pointed out;
Step 3e:Ping test is carried out to third level VPN device, and shows test result.
Methods described also includes inquiring about router state according to query router order.
Methods described uses loose coupling mechanism, and each monitoring module is separate, being capable of the corresponding monitored object of independent acquisition
Abnormality.
Methods described guides user to fill in using configuration interface needs the unified configuration information read, and each monitored object phase
The configuration parameter answered, then be stored in the separate configurations file of each monitored object.
Present invention also offers a kind of meshed network supervising device, including:Configuration module, command reception module, call mould
Block and multiple monitoring modules, wherein,
The configuration module is used to carry out node parameter configuration;
Command reception module is used for according to user instruction, determines monitored object;
Calling module is used for according to monitored object, calls corresponding monitoring module;
The monitoring module is used to be monitored monitored object.
The multiple monitoring module includes router port monitoring module, router port traffic monitoring module, fire wall
Port monitoring module, switch ports themselves monitoring module, router cpu, internal memory and housing temperature monitoring module, 3G boards and signal
Monitoring module, network link monitoring module, VPN circuit monitoring modules, second line of a couplet VPN circuit monitoring modules, wherein,
The router port monitoring module, is carried out for reading router port configuration parameter, and to router port
Separated time journey is monitored in real time, is alarmed when router port is changed;
The router port traffic monitoring module, for reading router port configuration parameter, and to router port
Flow monitor and show in real time;
The wall port monitoring module, separated time is carried out for reading firewall configuration parameter, and to wall port
Journey is monitored in real time, is alarmed when wall port is changed;
The switch ports themselves monitoring module, is carried out for reading switch ports themselves configuration parameter, and to switch ports themselves
Separated time journey is monitored in real time, is alarmed when switch ports themselves are changed;
The router cpu, internal memory and housing temperature monitoring module, for reading router port configuration parameter, and it is right
Router cpu, internal memory and housing temperature carry out separated time journey and monitored in real time;
The 3G boards and signal monitoring module, for reading 3G board configuration parameters, and to 3G boards and signal strength
Carry out separated time journey to monitor in real time, and show the port status and signal intensity of 3G boards;
The network link monitoring module, is clicked through for reading network configuration parameters, and to the monitoring set in network
The Remote ping of row separated time journey are monitored in real time, when test network control point there is packet loss or it is obstructed when alarmed;
The VPN circuit monitorings module, for reading VPN line configuration parameters, carries out Ping Test, and show test knot
Really;
The second line of a couplet VPN circuit monitoring modules, for reading each bar second line of a couplet VPN line configuration parameters, respectively under each bar
Join VPN circuits and carry out Ping Test, and show the test result of each bar second line of a couplet VPN circuits.
The configuration module, including router port parameter configuration submodule, the router port parameter configuration submodule
Block is used for the router packet for determining to read;And be grouped according to router, read router A machines and B machines IP address and
SNMP community name;Port scan is carried out to router A machines and B machines respectively using dual-thread, and scanning result is shown to user
To be selected;Read the port of user's selection No. index;And according to No. index of port by router A machines and B machines
Port information is spliced into the MIB storehouses point position information parameter that can be read, and writes in configuration file.
The router port monitoring module is used for the router packet for determining to read;And be grouped according to router, read
The IP address and SNMP community name of router, and the port MIB storehouses information parameter to be checked, including read router port
State and error information;And router progress port status scanning and error information are swept respectively using dual-thread
Retouch;And warning message is provided based on port status reading result.
The second line of a couplet VPN circuit monitorings module is used to read second line of a couplet VPN line configuration parameters;And according to the second line of a couplet VPN
Line configuration parameters, use dual-thread to log in the first level router in SSH modes, after logining successfully, and are stepped in telnet modes
The second level router is recorded, third level VPN device is logged in telnet modes again after logining successfully, to the 3rd after logining successfully
Level VPN device carries out ping test, and shows test result.
Described device also includes router artificial enquiry module, for providing query router order to route according to artificial
Device state is inquired about.
Described device uses loose coupling mechanism, and each monitoring module is separate, being capable of the corresponding monitored object of independent acquisition
Abnormality.
Described device guides user to fill in using configuration interface needs the unified configuration information read, and each monitored object phase
The configuration parameter answered, then be stored in the separate configurations file of each monitored object.
In summary, methods and apparatus of the present invention is being read and set the every numerical value of the network equipment using SNMP modes
Meanwhile, the problem of equipment MIB storehouses are inconsistent is not only overcome, while also retains telnet and ssh modes, user can conveniently step on
The land network equipment, every numerical value of the network equipment is checked using order, it is possible to according to the peculiar network structure of civil aviaton's network, by
Level is jumped on the network equipment of second line of a couplet minor node, the router and VPN line conditions on the small airport of the test second line of a couplet.And also retain
Ping functions under DOS.
The present invention can be applied to the wide area network of civil aviaton's departure from port computer room and the network environment of local departure from port LAN, fit very much
Close and disposed in civil aviaton's departure from port computer room, and develop and test in departure from port network environment.To departure from port router and interchanger,
The equipment such as fire wall, VPN are monitored.
Compared with other network monitoring softwares use single landing approach on monitoring mode, methods and apparatus of the present invention
The combination that can be used SSH to add Telnet in monitoring, is jumped one by one on the network equipment of one group of interconnection
The test and monitoring of property.
Compared with all monitoring informations of other network monitoring softwares are enumerated in a screen, the present invention uses modularized design,
Each monitoring function is an independent module, and displaying is also separate, the need for user can be according to oneself, and oneself
The true environment of network, shows the monitoring content required for oneself.
Brief description of the drawings
In order to illustrate the embodiments of the present invention more clearly or scheme of the prior art, below will be to required in embodiment
The accompanying drawing used is briefly described, it should be apparent that, drawings in the following description are some embodiments of the present invention, for
For those of ordinary skill in the art, on the premise of not paying creative work, other can also be obtained according to these accompanying drawings
Accompanying drawing.
The schematic flow sheet for the meshed network monitoring method that Fig. 1 provides for one embodiment of the invention;
The structural representation for the meshed network supervising device that Fig. 2 provides for one embodiment of the invention.
Embodiment
To make the purpose, technical scheme and advantage of the embodiment of the present invention clearer, below in conjunction with the embodiment of the present invention
In accompanying drawing, clear, complete description is carried out to the technical scheme in the embodiment of the present invention, it is clear that described embodiment is
A part of embodiment of the present invention, rather than whole embodiments.Based on the embodiment in the present invention, those of ordinary skill in the art
The every other embodiment obtained on the premise of creative work is not made, belongs to the scope of protection of the invention.
The schematic flow sheet for the meshed network monitoring method that Fig. 1 provides for one embodiment of the invention, as shown in figure 1, this reality
The meshed network monitoring method of example is applied, including:
Step 1:Carry out node parameter configuration;
Alternatively, in step 1, router port parameter configuration is carried out, including:
Step 1a:It is determined that the router packet read;
Step 1b:It is grouped according to router, reads the IP address and SNMP community name of router A machines and B machines;
Step 1c:Port scan is carried out to router A machines and B machines respectively using dual-thread, and scanning result is shown to
User is to be selected;
Step 1d:Read the port of user's selection No. index;
Step 1e:The port information of router A machines and B machines is spliced into the MIB storehouses that can be read according to port No. index
Point position information parameter, and write in configuration file.
Step 2:According to user instruction, monitored object is determined;
Step 3:According to monitored object, corresponding monitoring module is called to be monitored monitored object.
Alternatively, in step 3, it is described according to monitored object, call corresponding monitoring module to supervise monitored object
Control, including:
When monitored object is router port, router port monitoring module is called to read router port configuration ginseng
Number, and router port progress separated time journey is monitored in real time, alarmed when router port is changed;
When monitored object is router port flow, router port traffic monitoring module is called to read router port
Configuration parameter, and router port flow is carried out to monitor and show in real time;
When monitored object is wall port, wall port monitoring module is called to read firewall configuration parameter, and
Separated time journey is carried out to wall port to monitor in real time, is alarmed when wall port is changed;
When monitored object is switch ports themselves, switch ports themselves monitoring module is called to read switch ports themselves configuration ginseng
Number, and switch ports themselves progress separated time journey is monitored in real time, alarmed when switch ports themselves are changed;
When monitored object is router cpu, internal memory and housing temperature, router cpu, internal memory and housing temperature prison are called
Control module and read router port configuration parameter, and separated time journey is carried out to router cpu, internal memory and housing temperature and monitor in real time;
When monitored object is 3G boards and signal, 3G boards and signal monitoring module is called to read 3G boards configuration ginseng
Number, and 3G boards and signal strength progress separated time journey are monitored in real time, and show the port status and signal intensity of 3G boards;
When monitored object is network link, network link monitoring module is called to read network configuration parameters, and it is right
The Remote ping that the control point (control point can be set in separate configurations file) set in network carries out separated time journey are supervised in real time
Survey, when test network control point there is packet loss or it is obstructed when alarmed;
When monitored object is VPN circuits, calls VPN circuit monitorings module to read VPN line configuration parameters, carry out Ping
Test, and show test result;
When monitored object is second line of a couplet VPN circuits, second line of a couplet VPN circuit monitorings module is called to read each bar second line of a couplet VPN circuits
Configuration parameter, separated time journey carries out Ping Test to each bar second line of a couplet VPN circuits respectively, and shows the test of each bar second line of a couplet VPN circuits
As a result.
Further, in step 3, when monitored object is router port, router port monitoring module is called to enter
The following operation of row:
Step 2a:It is determined that the router packet read;
Step 2b:It is grouped according to router, reads the IP address and SNMP community name of router, and the end to be checked
Mouth MIB storehouses information parameter, includes reading the state and error information of router port;
Step 2c:Port status scanning and error information scannings are carried out to router using dual-thread respectively;
Step 2d:Determine whether read port state first, if reading first, then judge port status whether just
Often;If not reading first, then into step 2e;
Step 2e:Judge whether port status is normal, if abnormal, port status judged result first is obtained, if first
Secondary port status is abnormal, then does not alarm, if port status is normal first, alarms.
Further, in step 3, when monitored object is second line of a couplet VPN circuits, second line of a couplet VPN circuit monitoring modules are called
Proceed as follows:
Step 3a:Read second line of a couplet VPN line configuration parameters;
Step 3b:According to the second line of a couplet VPN line configuration parameters, dual-thread is used to log in the first order in SSH modes active and standby
Two routers, after logining successfully, into step 3c, otherwise provide and unsuccessfully point out;
Step 3c:The single router in the second level is logged in telnet modes, after logining successfully, into 3d, otherwise provided
Failure is pointed out;
Step 3d:The single VPN device of the third level is logged in telnet modes, after logining successfully, into 3e, otherwise provided
Failure is pointed out;
Step 3e:Ping test is carried out to third level VPN device, and shows test result.
Further, methods described also includes inquiring about router state according to query router order.
Alternatively, methods described uses loose coupling mechanism, and each monitoring module is separate, can independent acquisition accordingly supervise
Control the abnormality of object.
Alternatively, methods described guides user to fill in using configuration interface needs the unified configuration information read, and respectively supervises
The corresponding configuration parameter of object is controlled, then is stored in the separate configurations file of each monitored object.
The structural representation for the meshed network supervising device that Fig. 2 provides for one embodiment of the invention, as shown in Fig. 2 this reality
Applying the meshed network supervising device of example includes:Configuration module, command reception module, calling module and multiple monitoring modules, its
In,
The configuration module is used to carry out node parameter configuration, can include router port parameter configuration submodule, institute
State router port parameter configuration submodule be used for determine read router be grouped;And be grouped according to router, read route
The IP address and SNMP community name of device A machines and B machines;Port scan is carried out to router A machines and B machines using dual-thread respectively,
And be shown to user to be selected by scanning result;Read the port of user's selection No. index;And according to port
No. index port information by router A machines and B machines is spliced into the MIB storehouses point position information parameter that can be read, and writes configuration text
In part.
The command reception module is used for according to user instruction, determines monitored object;
The calling module is used for according to monitored object, calls corresponding monitoring module;
The monitoring module is used to be monitored monitored object, including router port monitoring module, router port
Traffic monitoring module, wall port monitoring module, switch ports themselves monitoring module, router cpu, internal memory and housing temperature prison
Control module, 3G boards and signal monitoring module, network link monitoring module, VPN circuit monitoring modules, second line of a couplet VPN circuits prison
Module is controlled, wherein,
The router port monitoring module, is carried out for reading router port configuration parameter, and to router port
Separated time journey is monitored in real time, is alarmed when router port is changed;Further, the router port monitoring module is used
In it is determined that the router packet read;And be grouped according to router, the IP address and SNMP community name of router are read, and
The port MIB storehouses information parameter to be checked, including read the state and error information of router port;And use two-wire
Journey carries out port status scanning and error information scannings to router respectively;And alarm is provided based on port status reading result
Information.
The router port traffic monitoring module, for reading router port configuration parameter, and to router port
Flow monitor and show in real time;
The wall port monitoring module, separated time is carried out for reading firewall configuration parameter, and to wall port
Journey is monitored in real time, is alarmed when wall port is changed;
The switch ports themselves monitoring module, is carried out for reading switch ports themselves configuration parameter, and to switch ports themselves
Separated time journey is monitored in real time, is alarmed when switch ports themselves are changed;
The router cpu, internal memory and housing temperature monitoring module, for reading router port configuration parameter, and it is right
Router cpu, internal memory and housing temperature carry out separated time journey and monitored in real time;
The 3G boards and signal monitoring module, for reading 3G board configuration parameters, and to 3G boards and signal strength
Carry out separated time journey to monitor in real time, and show the port status and signal intensity of 3G boards;
The network link monitoring module, for reading network configuration parameters, and the control point (prison to being set in network
Control point can be set in separate configurations file) progress separated time journey Remote ping monitor in real time, when test network control point is deposited
Packet loss or it is obstructed when alarmed;
The VPN circuit monitorings module, for reading VPN line configuration parameters, carries out Ping Test, and show test knot
Really;
The second line of a couplet VPN circuit monitoring modules, for reading each bar second line of a couplet VPN line configuration parameters, respectively under each bar
Join VPN circuits and carry out Ping Test, and show the test result of each bar second line of a couplet VPN circuits.Further, the second line of a couplet VPN lines
Road monitoring module is used to read second line of a couplet VPN line configuration parameters;And according to the second line of a couplet VPN line configuration parameters, using two-wire
Journey logs in the first level router in SSH modes, after logining successfully, and logs in the second level router in telnet modes, works as login
Third level VPN device is logged in telnet modes again after success, ping surveys are carried out to the third level VPN device after logining successfully
Examination, and show test result.
Further, described device also includes router artificial enquiry module, and manually query router is provided for basis
Order is inquired about router state.
Further, described device uses loose coupling mechanism, and each monitoring module is separate, can independent acquisition it is corresponding
The abnormality of monitored object.
Further, described device guides user to fill in using configuration interface needs the unified configuration information read, and each
The corresponding configuration parameter of monitored object, then be stored in the separate configurations file of each monitored object.
In summary, methods and apparatus of the present invention is being read and set the every numerical value of the network equipment using SNMP modes
Meanwhile, the problem of equipment MIB storehouses are inconsistent is not only overcome, while also retains telnet and ssh modes, user can conveniently step on
The land network equipment, every numerical value of the network equipment is checked using order, it is possible to according to the peculiar network structure of civil aviaton's network, by
Level is jumped on the network equipment of second line of a couplet minor node, the router and VPN line conditions on the small airport of the test second line of a couplet.And also retain
Ping functions under DOS.
The present invention can be applied to the wide area network of civil aviaton's departure from port computer room and the network environment of local departure from port LAN, fit very much
Close and disposed in civil aviaton's departure from port computer room, and develop and test in departure from port network environment.To departure from port router and interchanger,
The equipment such as fire wall, VPN are monitored.
Compared with other network monitoring softwares use single landing approach on monitoring mode, methods and apparatus of the present invention
The combination that can be used SSH to add Telnet in monitoring, is jumped one by one on the network equipment of one group of interconnection
The test and monitoring of property.
Compared with all monitoring informations of other network monitoring softwares are enumerated in a screen, the present invention uses modularized design,
Each monitoring function is an independent module, and displaying is also separate, the need for user can be according to oneself, and oneself
The true environment of network, shows the monitoring content required for oneself.
Finally it should be noted that:The above embodiments are merely illustrative of the technical solutions of the present invention, rather than its limitations;Although
The present invention is described in detail with reference to the foregoing embodiments, it will be understood by those within the art that:It still may be used
To be modified to the technical scheme described in foregoing embodiments, or equivalent substitution is carried out to which part technical characteristic,
And these modification or replace, do not make appropriate technical solution essence depart from various embodiments of the present invention technical scheme spirit and
Scope.
Claims (14)
1. a kind of meshed network monitoring method, it is characterised in that methods described includes:
Step 1:Carry out node parameter configuration;
Step 2:According to user instruction, monitored object is determined;
Step 3:According to monitored object, corresponding monitoring module is called to be monitored monitored object,
Wherein, when monitored object is second line of a couplet VPN circuits, second line of a couplet VPN circuit monitorings module is called to read each bar second line of a couplet VPN circuits
Configuration parameter, separated time journey carries out Ping Test to each bar second line of a couplet VPN circuits respectively, and shows the test of each bar second line of a couplet VPN circuits
As a result, including:
Step 3a:Read second line of a couplet VPN line configuration parameters;
Step 3b:According to the second line of a couplet VPN line configuration parameters, dual-thread is used to log in active and standby two of the first order in SSH modes
Router, after logining successfully, into step 3c, otherwise provides and unsuccessfully points out;
Step 3c:The single router in the second level is logged in telnet modes, after logining successfully, into 3d, failure is otherwise provided
Prompting;
Step 3d:The single VPN device of the third level is logged in telnet modes, after logining successfully, into 3e, failure is otherwise provided
Prompting;
Step 3e:Ping test is carried out to third level VPN device, and shows test result.
2. a kind of meshed network monitoring method according to claim 1, it is characterised in that described according to monitored object, is adjusted
Monitored object is monitored with corresponding monitoring module, including:
When monitored object is router port, router port monitoring module is called to read router port configuration parameter, and
Separated time journey is carried out to router port to monitor in real time, is alarmed when router port is changed;
When monitored object is router port flow, router port traffic monitoring module is called to read router port configuration
Parameter, and router port flow is carried out to monitor and show in real time;
When monitored object is wall port, wall port monitoring module is called to read firewall configuration parameter, and to anti-
Wall with flues port carries out separated time journey and monitored in real time, is alarmed when wall port is changed;
When monitored object is switch ports themselves, switch ports themselves monitoring module is called to read switch ports themselves configuration parameter, and
Separated time journey is carried out to switch ports themselves to monitor in real time, is alarmed when switch ports themselves are changed;
When monitored object is router cpu, internal memory and housing temperature, router cpu, internal memory and housing temperature monitoring mould are called
Block reads router port configuration parameter, and router cpu, internal memory and housing temperature progress separated time journey are monitored in real time;
When monitored object is 3G boards and signal, 3G boards and signal monitoring module is called to read 3G board configuration parameters, and
Separated time journey is carried out to 3G boards and signal strength to monitor in real time, and shows the port status and signal intensity of 3G boards;
When monitored object is network link, network link monitoring module is called to read network configuration parameters, and to network
The Remote ping that the control point of middle setting carries out separated time journey are monitored in real time, when test network control point has packet loss or obstructed
Shi Jinhang alarms;
When monitored object is VPN circuits, calls VPN circuit monitorings module to read VPN line configuration parameters, carry out Ping surveys
Examination, and show test result.
3. a kind of meshed network monitoring method according to claim 2, it is characterised in that in step 1, carries out router
Port parameter is configured, including:
Step 1a:It is determined that the router packet read;
Step 1b:It is grouped according to router, reads the IP address and SNMP community name of router A machines and B machines;
Step 1c:Port scan is carried out to router A machines and B machines respectively using dual-thread, and scanning result is shown to user
To be selected;
Step 1d:Read the port of user's selection No. index;
Step 1e:The port information of router A machines and B machines is spliced into the MIB storehouses point position that can be read according to port No. index
Information parameter, and write in configuration file.
4. a kind of meshed network monitoring method according to claim 2, it is characterised in that in step 3, work as monitored object
During for router port, router port monitoring module is called to proceed as follows:
Step 2a:It is determined that the router packet read;
Step 2b:It is grouped according to router, reads the IP address and SNMP community name of router, and the port to be checked
MIB storehouses information parameter, including read the state and error information of router port;
Step 2c:Port status scanning and error information scannings are carried out to router using dual-thread respectively;
Step 2d:Determine whether read port state first, if reading first, then judge whether port status is normal;
If not reading first, then into step 2e;
Step 2e:Judge whether port status is normal, if abnormal, port status judged result first is obtained, if holding first
Mouth state is abnormal, then does not alarm, if port status is normal first, alarms.
5. a kind of meshed network monitoring method according to one of claim 3-4, it is characterised in that methods described also includes
Router state is inquired about according to query router order.
6. a kind of meshed network monitoring method according to claim 5, it is characterised in that methods described uses loose coupling machine
System, each monitoring module is separate, is capable of the abnormality of the corresponding monitored object of independent acquisition.
7. a kind of meshed network monitoring method according to one of claim 3-4, it is characterised in that methods described, which is used, matches somebody with somebody
Putting interface guiding user and filling in needs the unified configuration information read, and the corresponding configuration parameter of each monitored object, then is stored in
In the separate configurations file of each monitored object.
8. a kind of meshed network supervising device, it is characterised in that described device includes:Configuration module, command reception module, call
Module and multiple monitoring modules, wherein,
The configuration module is used to carry out node parameter configuration;
The command reception module is used for according to user instruction, determines monitored object;
The calling module is used for according to monitored object, calls corresponding monitoring module;
The monitoring module is used to be monitored monitored object;
Wherein, the multiple monitoring module includes:Second line of a couplet VPN circuit monitoring modules, for reading each bar second line of a couplet VPN line configurings
Parameter, carries out Ping Test, and show the test result of each bar second line of a couplet VPN circuits to each bar second line of a couplet VPN circuits respectively;
Wherein, the second line of a couplet VPN circuit monitoring modules, for reading second line of a couplet VPN line configuration parameters;And according to the second line of a couplet
VPN line configuration parameters, use dual-thread to log in the first level router in SSH modes, after logining successfully, in telnet modes
The second level router is logged in, third level VPN device is logged in telnet modes again after logining successfully, to after logining successfully
Three-level VPN device carries out ping test, and shows test result.
9. a kind of meshed network supervising device according to claim 8, it is characterised in that the multiple monitoring module includes
Router port monitoring module, router port traffic monitoring module, wall port monitoring module, switch ports themselves monitoring mould
Block, router cpu, internal memory and housing temperature monitoring module, 3G boards and signal monitoring module, network link monitoring module,
VPN circuit monitoring modules, second line of a couplet VPN circuit monitoring modules, wherein,
The router port monitoring module, separated time is carried out for reading router port configuration parameter, and to router port
Journey is monitored in real time, is alarmed when router port is changed;
The router port traffic monitoring module, for reading router port configuration parameter, and to router port flow
Monitor and show in real time;
The wall port monitoring module, for reading firewall configuration parameter, and it is real to carry out separated time journey to wall port
When monitor, alarmed when wall port is changed;
The switch ports themselves monitoring module, separated time is carried out for reading switch ports themselves configuration parameter, and to switch ports themselves
Journey is monitored in real time, is alarmed when switch ports themselves are changed;
The router cpu, internal memory and housing temperature monitoring module, for reading router port configuration parameter, and to route
Device CPU, internal memory and housing temperature carry out separated time journey and monitored in real time;
The 3G boards and signal monitoring module, are carried out for reading 3G board configuration parameters, and to 3G boards and signal strength
Separated time journey is monitored in real time, and shows the port status and signal intensity of 3G boards;
The network link monitoring module, is divided for reading network configuration parameters, and to the control point set in network
The Remote ping of thread are monitored in real time, when test network control point there is packet loss or it is obstructed when alarmed;
The VPN circuit monitorings module, for reading VPN line configuration parameters, carries out Ping Test, and show test result.
10. a kind of meshed network supervising device according to claim 9, it is characterised in that the configuration module, including road
Submodule is configured by device port parameter, the router port parameter configuration submodule is used for the router packet for determining to read;
And be grouped according to router, read the IP address and SNMP community name of router A machines and B machines;Satisfied the need respectively using dual-thread
Port scan is carried out by device A machines and B machines, and scanning result is shown to user to be selected;Read the port of user's selection
No. index;And the MIB storehouses point that can be read is spliced into according to No. index port information by router A machines and B machines of port
Position information parameter, and write in configuration file.
11. a kind of meshed network supervising device according to claim 9, it is characterised in that the router port monitoring
Module is used for the router packet for determining to read;And be grouped according to router, read the IP address and SNMP community of router
Name, and the port MIB storehouses information parameter to be checked, including read the state and error information of router port;And adopt
Port status scanning and error information scannings are carried out to router respectively with dual-thread;And given based on port status reading result
Go out warning message.
12. a kind of meshed network supervising device according to one of claim 10-11, it is characterised in that described device is also
Including router artificial enquiry module, manually provide query router order for basis and router state is inquired about.
13. a kind of meshed network supervising device according to claim 12, it is characterised in that described device uses loose coupling
Mechanism, each monitoring module is separate, is capable of the abnormality of the corresponding monitored object of independent acquisition.
14. a kind of meshed network supervising device according to one of claim 10-11, it is characterised in that described device is adopted
Guiding user to fill in configuration interface needs the unified configuration information read, and the corresponding configuration parameter of each monitored object, then protects
In the separate configurations file that there is each monitored object.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410266104.7A CN104022905B (en) | 2014-06-13 | 2014-06-13 | Meshed network monitoring method and device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410266104.7A CN104022905B (en) | 2014-06-13 | 2014-06-13 | Meshed network monitoring method and device |
Publications (2)
Publication Number | Publication Date |
---|---|
CN104022905A CN104022905A (en) | 2014-09-03 |
CN104022905B true CN104022905B (en) | 2017-10-03 |
Family
ID=51439488
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201410266104.7A Active CN104022905B (en) | 2014-06-13 | 2014-06-13 | Meshed network monitoring method and device |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN104022905B (en) |
Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106161434A (en) * | 2016-06-27 | 2016-11-23 | 安徽科成信息科技有限公司 | A kind of monitoring method |
CN106506585B (en) * | 2016-09-14 | 2019-10-25 | 深圳市宏电技术股份有限公司 | The method and system of router is remotely controlled by browser |
CN107171968A (en) * | 2017-06-27 | 2017-09-15 | 柳州知明资讯科技有限公司 | A kind of router |
CN109474517A (en) * | 2018-12-04 | 2019-03-15 | 广东九联科技股份有限公司 | A kind of Household intelligent gateway system of monitoring user online |
CN110191017B (en) * | 2019-05-28 | 2021-09-10 | 上海尚往网络科技有限公司 | Monitoring system and method for monitoring routing equipment abnormity |
CN110380935B (en) * | 2019-07-23 | 2021-02-12 | 杭州数梦工场科技有限公司 | Port scanning method and device |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101436274A (en) * | 2008-11-14 | 2009-05-20 | 山东浪潮齐鲁软件产业股份有限公司 | Method for across-platform monitoring enterprise application system performance |
CN101714930A (en) * | 2009-12-30 | 2010-05-26 | 北京世纪互联宽带数据中心有限公司 | Method and system for realizing network monitoring |
CN102594613A (en) * | 2012-04-01 | 2012-07-18 | 华为技术有限公司 | Method and device for failure diagnosis of multi-protocol label switching virtual private network (MPLS VPN) |
-
2014
- 2014-06-13 CN CN201410266104.7A patent/CN104022905B/en active Active
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101436274A (en) * | 2008-11-14 | 2009-05-20 | 山东浪潮齐鲁软件产业股份有限公司 | Method for across-platform monitoring enterprise application system performance |
CN101714930A (en) * | 2009-12-30 | 2010-05-26 | 北京世纪互联宽带数据中心有限公司 | Method and system for realizing network monitoring |
CN102594613A (en) * | 2012-04-01 | 2012-07-18 | 华为技术有限公司 | Method and device for failure diagnosis of multi-protocol label switching virtual private network (MPLS VPN) |
Also Published As
Publication number | Publication date |
---|---|
CN104022905A (en) | 2014-09-03 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN104022905B (en) | Meshed network monitoring method and device | |
CN106789177B (en) | A kind of system of dealing with network breakdown | |
US8811193B2 (en) | Network path discovery and analysis | |
US8270306B2 (en) | Fault management apparatus and method for identifying cause of fault in communication network | |
US8458319B2 (en) | System and method for tracking network resources | |
US11316728B2 (en) | Method and system for assessing network resource failures using passive shared risk resource groups | |
CN107018070A (en) | A kind of isomery multimode gateway equipment and its transmission method and application | |
CN109245951B (en) | Method for realizing networking monitoring of network optimization equipment based on web | |
JP2002525943A (en) | Interface system for integrated monitoring and management of network devices in telecommunication networks | |
CN103259681A (en) | Method for automatic routing inspection of communication network host | |
CN111934936B (en) | Network state detection method and device, electronic equipment and storage medium | |
CN111147286B (en) | IPRAN network loop monitoring method and device | |
CN103957138B (en) | A kind of method for monitoring network, device and its system | |
CN109495719A (en) | A kind of private network video monitoring failure judges automatically and active cruising inspection system | |
CN109964450B (en) | Method and device for determining shared risk link group | |
CN111142878A (en) | SDN operation and maintenance method, device, equipment and readable storage medium | |
CN103634166B (en) | Equipment survival detection method and equipment survival detection device | |
CN104639386B (en) | fault location system and method | |
CN112003747A (en) | Fault positioning method of cloud virtual gateway | |
CN110620693A (en) | Railway station route remote restart control system and method based on Internet of things | |
CN116264558A (en) | Cloud private line quality monitoring method, device, equipment and computer storage medium | |
CN109327343B (en) | Automatic inspection method and system for openstack cloud environment | |
CN101141329A (en) | Method and system for implementing connectivity detection | |
CN110071836A (en) | A kind of network state detection system and method based on intelligent gateway | |
EP2858302A1 (en) | Connectivity check method of service stream link, related apparatus and system |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CP02 | Change in the address of a patent holder |
Address after: 100085 Yumin Street, Houshayu Town, Shunyi District, Beijing Patentee after: CHINA TRAVELSKY HOLDING Co. Address before: 100010, No. 157 West Fourth Street, Beijing, Dongcheng District Patentee before: CHINA TRAVELSKY HOLDING Co. |
|
CP02 | Change in the address of a patent holder |