Method and device for controlling network service processing resources
A technology for processing resources and network services, which is applied in the field of network service processing resource control, can solve the problems that the processing capacity of switching equipment is not fully utilized, and network service processing resources cannot be flexibly adjusted, so as to achieve the effect of dynamic allocation
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Embodiment 1
[0027] In this embodiment, the local switching device A can be connected to multiple switching devices B, C, D, ..., and the office directions are respectively A ↔ B , A ↔ C , A ↔ D , …. Allocate business processing resources for each office when creating interconnected office data. The sum of the service processing resources of each office direction plus the reserved service processing resources is the service processing resources of the entire switching device A. figure 1 It is a flowchart of a network service processing resource control method according to an embodiment of the present invention. Such as figure 1 As shown, this embodiment includes:
[0028] Step S102: Monitor office direction A ↔ B business volume;
[0029] Step S104: According to the office direction A ↔ B Service vol...
Embodiment 2
[0035]In this embodiment, on the basis of Embodiment 1, the present invention will be explained in detail by taking the traffic congestion between offices as an example. In this embodiment, the traffic is the traffic of the voice service; the initial adjustment range is the office direction A ↔ B The initial adjustment range of the BICC CIC, the negotiation adjustment range is the office direction A ↔ B Negotiation adjustment range of BICC CIC. figure 2 It is a schematic diagram of inter-office traffic capacity allocation of VOIP softswitch equipment. Such as figure 2 As shown, A, B, C, and D are switching devices that meet the requirements of the 3GPP R4 version. The BICC protocol is used for call control between the office routes. The traffic between the office routes is based on IP bearer. A ↔ B Peaceful direction B ↔ A are the lo...
Embodiment 3
[0056] In this embodiment, on the basis of Embodiments 1 and 2, the mobile communication network in Hefei is taken as an example for specific description. Due to the roaming characteristics of mobile communication users, there is a certain degree of suddenness and randomness in the change of traffic in the mobile communication network.
[0057] The Hefei local network in Anhui has a total of 11 switches covering the urban area of Hefei, and the switch numbers are from HFGS1 to 9, HFGSA, and HFGSB. The switches in the local network are meshed (all switches are interconnected in pairs). Taking HFGS1 as an example, there are BICC relay circuits between HFGS1 and the other 10 switches. It is assumed that the BICC CIC ranges from 0 to 1024. , under normal circumstances, the traffic load from HFGS1 to other switches is assumed to be 0.4Erl.
[0058] Due to the large-scale mass activities held in the urban area of Hefei, the area where the activities are located is covered by HF...
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