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SS7 Signaling Monitoring Systems 770 Network Management
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The status of each signaling point is indicated by the status of the links connected to it The following four signaling point states are defined for each signaling point
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Isolated from network, all links unavailable/oscillating Isolated from network, all B/C/D links unavailable/oscillating but at least one A link is available (only for signaling points with STP functionality) Connected Unknown Link statistics The system maintains the following statistics for each link:
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Number of MSU octets over a time interval Number of occurrences of each type of LSSU over a time interval Number of FIB/BIB inversions over a time interval Number of frames in error over a time interval Duration of unavailability over a time interval Duration of oscillating status over a time interval Number of link status changes over a time period when the link is oscillating Count of SLTM MSUs over a time interval Count of SLTA MSUs over a time interval SLC value in last SLTM message Current channel state for each channel Number of MSUs excluding SLTs over a time period
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The link status monitor provides the facility to select linksets and view their status in more detail For each link in the selected linksets, the system displays the link s current status plus all of the link statistics defined above
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Traffic monitor application The traffic monitor application measures the real-time performance of network resources and the impact of network changes by continually monitoring traffic between SS7 network elements Up to eight real-time displays show the state of the network To ensure that network problems are quickly recognized and resolved, traffic monitor displays measurement information in three levels At the first level, the network-wide data is correlated and value-sorted, and the worst-case value for each measurement is displayed in a radar diagram At the second level, up to ten worstcase elements are displayed in an active histogram and updated dynamically when
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there are any changes At the third level, a detailed view of the operation of a specific network element for a particular measurement over a 60-minute period is displayed in a time series histogram Additionally, these displays are entry points for further investigation of any faults indicated Each real-time radar diagram display consists of a number of axes on which are plotted various network parameters The actual quantity shown on an axis is the current worst case of the parameter represented Every 15 seconds, information from all SS7 links on the network is analyzed and classified for presentation on the axes The points on all the axes are joined to form a polygon which is filled with color The polygons have an inner and an outer circle, which represent the configurable threshold settings for warnings and alarms respectively If all points are within the inner circle, the polygon is green; if any point exceeds the inner circle, the polygon is yellow; and if any point exceeds the outer circle, it is red The thresholds on each axis are configurable by the user Consider an example of how Traffic Monitor can assist in network management during an unexpected event such as mass calling to a local TV station (Figure 338a)
Figure 338a The traffic monitor application shows SS7 traffic conditions using graphical displays called radar displays The concentric circles represent configurable thresholds and the colored polygons show the labeled traffic parameter value on the appropriate radial line As the value of a particular parameter moves past its thresholds, the polygon changes color from green to yellow to red Pointing and clicking on a labeled parameter brings up more detail on that parameter Shown here are the results of clicking on Load: Site (currently green) and Call-Related (currently red)
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