Optimal selection method and device for electric power communication dispatching telephone number allocation node

By calculating the adaptability of sites in the power communication network and optimizing telephone number placement nodes, the resource overload problem caused by unreasonable selection of power communication dispatch telephones is solved, and the stability of the communication network and resource utilization efficiency are improved.

CN120812083APending Publication Date: 2025-10-17STATE GRID ELECTRIC POWER ECONOMIC RES INST IN NORTHERN HEBEI TECH CO LTD +2
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Patent Information

Application Number
CN202510944934.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

In the existing technology, the selection of the number release node for the electric power communication dispatch telephone is relatively subjective, which leads to the problem of overloading of communication transmission network channel resources.

Method used

By obtaining the number of export telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy of all sites in the power communication network, the adaptability of the site is calculated, and the telephone number placement node is optimized based on the adaptability.

Benefits of technology

It effectively avoids the overloading of communication transmission network channel resources and waste of investment caused by unreasonable selection of dispatch telephone number release points, and improves the security and stability of the dispatch switching network.

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Abstract

The invention belongs to the technical field of electric power communication, and provides an optimal selection method and device for electric power communication dispatching telephone number allocation nodes. The optimal selection method of the electric power communication dispatching telephone number allocation node comprises the following steps: acquiring the number of outlet telephone channels, the transmission bandwidth occupancy rate, the machine room space occupancy rate and the power capacity occupancy rate of all stations in an electric power communication network; determining the adaptation degree of the site according to the number of outlet telephone channels, the transmission bandwidth occupancy rate, the machine room space occupancy rate and the power capacity occupancy rate; and preferably selecting the telephone number allocation node according to the adaptation degree. According to the invention, channel resource reloading and investment waste of the communication transmission network caused by unreasonable selection of the dispatching telephone number placing point can be avoided, and meanwhile, the safety and stability of the dispatching exchange network are also improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of electric power communication, in particular to the dispatching technical field in the electric power system, and specifically relates to a preferred method and device for a telephone number releasing node of electric power communication dispatching. BACKGROUND

[0002] The electric power communication dispatching exchange network is like the nervous system of the power grid, and its healthy and stable operation plays an extremely important role in the strong nature of the power grid. With the development of power grid construction, the technical system of the dispatching exchange network is also constantly updated, and many scholars point out that the remote number releasing replacement technology of the dispatching exchange network mainly adopts three ways of "IP user board + IAD equipment", "user board + concentrator box + hybrid access device" and "optoelectronic integrated machine".

[0003] Due to the lack of understanding of the application of new technologies for dispatching telephones in the dispatching exchange network in the early industry, the specifications also lack guidance, so that under the new technical system, the selection of the number releasing node of part of the dispatching telephones is subjective, resulting in the problem of overload of the communication transmission network channel resources. SUMMARY

[0004] The preferred method for the telephone number releasing node of the electric power communication dispatching provided by the application aims to solve the problem of overload of the channel resources of the electric power communication transmission network in the prior art.

[0005] Another object of the application is to provide an audit device for system change operation. Another object of the application is to provide an electronic device comprising a memory and a processor, the memory storing a computer program, and the processor implementing the steps of the system change operation audit method when executing the computer program. Another object of the application is to provide a readable medium having a computer program stored thereon, the computer program being executed by a processor to implement the steps of the system change operation audit method.

[0006] In a first aspect, the application provides a preferred method for a telephone number releasing node of electric power communication dispatching, which comprises:

[0007] Obtaining the number of outlet telephone channels, the transmission bandwidth occupancy rate, the machine room space occupancy rate and the power supply capacity occupancy rate of all sites in the electric power communication network;

[0008] Determining the adaptation degree of the site according to the number of outlet telephone channels, the transmission bandwidth occupancy rate, the machine room space occupancy rate and the power supply capacity occupancy rate;

[0009] Optimizing the telephone number releasing node according to the adaptation degree.

[0010] In some embodiments of the present application, the fitness of the site is determined according to the number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy, comprising:

[0011] Pi = cos{(π / 20)*[(1 / F1)∑UF1-m]}*ω*β*α;

[0012] wherein Pi is the fitness, F1 is the number of outgoing telephone channels, UF1-m is the sum of the number of telephone channels passing through the site for each channel in all outgoing telephone channels, π is the ratio of a circle, ω is the room space occupancy, β is the power supply capacity occupancy, and α is the transmission bandwidth occupancy.

[0013] In some embodiments of the present application, the fitness of the site is determined according to the number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy, comprising:

[0014] The weight of the number of outgoing telephone channels, the weight of the transmission bandwidth occupancy, the weight of the room space occupancy and the weight of the power supply capacity occupancy are determined according to the selection requirement of the telephone number releasing node;

[0015] The fitness is determined according to the number of outgoing telephone channels and the weight thereof, the transmission bandwidth occupancy and the weight thereof, the room space occupancy and the weight thereof, and the power supply capacity occupancy and the weight thereof.

[0016] In some embodiments of the present application, after the telephone number releasing node is preferred according to the fitness, further comprising:

[0017] It is judged whether the corresponding site currently satisfies the selection requirement according to the current number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy of the corresponding site corresponding to the preferred telephone number releasing node.

[0018] In some embodiments of the present application, the step of obtaining the room space occupancy and the power supply capacity occupancy comprises:

[0019] The room space occupancy and the power supply capacity occupancy are obtained according to the optical cable topology map, the room plan and the service mode map of the power communication network.

[0020] In some embodiments of the present application, the step of obtaining the number of outgoing telephone channels and the transmission bandwidth occupancy comprises:

[0021] The number of outgoing telephone channels and the transmission bandwidth occupancy are obtained according to the configuration file and the SNMP protocol of the network equipment in the power communication network.

[0022] In a second aspect, the present application provides a preferred device for a power communication dispatch telephone number allocation node, which comprises:

[0023] an occupancy obtaining module, configured to obtain an outlet telephone channel number, a transmission bandwidth occupancy, a machine room space occupancy and a power supply capacity occupancy of all sites in a power communication network;

[0024] a fitness determining module, configured to determine a fitness of the site according to the outlet telephone channel number, the transmission bandwidth occupancy, the machine room space occupancy and the power supply capacity occupancy;

[0025] a telephone number allocation node preferring module, configured to prefer a telephone number allocation node according to the fitness.

[0026] In some embodiments of the present application, the fitness determining module comprises:

[0027] Pi = cos{(π / 20)*[(1 / F1)∑UF1-m]}*ω*β*α;

[0028] wherein Pi represents the fitness, F1 represents the outlet telephone channel number, UF1-m represents a sum of telephone channel numbers of all outlet telephone channels passing through the site, π represents a circular constant, ω represents the machine room space occupancy, β represents the power supply capacity occupancy, and α represents the transmission bandwidth occupancy.

[0029] In some embodiments of the present application, the fitness determining module comprises:

[0030] a weight determining unit, configured to determine a weight of the outlet telephone channel number, a weight of the transmission bandwidth occupancy, a weight of the machine room space occupancy and a weight of the power supply capacity occupancy according to a selection requirement of the telephone number allocation node;

[0031] a fitness determining unit, configured to determine the fitness according to the outlet telephone channel number and the weight thereof, the transmission bandwidth occupancy and the weight thereof, the machine room space occupancy and the weight thereof, and the power supply capacity occupancy and the weight thereof.

[0032] In some embodiments of the present application, a preferred device for a power communication dispatch telephone number allocation node further comprises:

[0033] a requirement confirming module, configured to determine whether a corresponding site of the preferred telephone number allocation node satisfies the selection requirement according to a current outlet telephone channel number, a current transmission bandwidth occupancy, a current machine room space occupancy and a current power supply capacity occupancy of the corresponding site.

[0034] In some embodiments of the present application, the occupancy obtaining module comprises:

[0035] The occupancy obtaining first unit is configured to obtain the room space occupancy and the power supply capacity occupancy according to a cable topology diagram, a room plan diagram and a service mode diagram of the power communication network.

[0036] In some embodiments of the present application, the occupancy obtaining module comprises:

[0037] The occupancy obtaining second unit is configured to obtain the number of outgoing telephone channels and the transmission bandwidth occupancy according to a configuration file of a network device in the power communication network and an SNMP protocol.

[0038] In a third aspect, the present application provides a computer program product comprising computer programs / instructions which, when executed by a processor, implement the steps of the preferred method of the power communication dispatch telephone number allocation node.

[0039] In a fourth aspect, the present application provides an electronic device comprising a memory, a processor and a computer program stored in the memory and executable on the processor, wherein the processor implements the steps of the preferred method of the power communication dispatch telephone number allocation node when executing the program.

[0040] In a fifth aspect, the present application provides a computer readable storage medium having stored thereon a computer program which, when executed by a processor, implements the steps of the preferred method of the power communication dispatch telephone number allocation node.

[0041] As can be seen from the above description, the preferred method and device of the power communication dispatch telephone number allocation node provided by the embodiments of the present application comprise the following steps: firstly, obtaining the number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy of all sites in the power communication network; then, determining the adaptation degree of the sites according to the number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy; and finally, optimizing the telephone number allocation node according to the adaptation degree.

[0042] In summary, the preferred method of the power communication dispatch telephone number allocation node provided by the present application can avoid the communication transmission network channel resource overload and investment waste caused by unreasonable selection of the dispatch telephone number allocation node, and improve the safety and stability of the dispatch switching network. BRIEF DESCRIPTION OF DRAWINGS

[0043] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0044] Figure 1 Flowchart of preferred method for a power communication dispatch telephone dialing node in an embodiment of the present invention Figure 1 .

[0045] Figure 2 Flowchart of step 200 of preferred method for a power communication dispatch telephone dialing node in an embodiment of the present invention

[0046] Figure 3 Flowchart of preferred method for a power communication dispatch telephone dialing node in an embodiment of the present invention Figure 2 .

[0047] Figure 4 Flowchart of preferred method for a power communication dispatch telephone dialing node in a specific embodiment of the present invention

[0048] Figure 5 Block diagram of preferred apparatus for a power communication dispatch telephone dialing node in an embodiment of the present invention Figure 1 .

[0049] Figure 6 Block diagram of adaptation degree determination module 20 in an embodiment of the present invention

[0050] Figure 7 Block diagram of preferred apparatus for a power communication dispatch telephone dialing node in an embodiment of the present invention Figure 2 .

[0051] Figure 8 Structure diagram of electronic device in an embodiment of the present invention DETAILED DESCRIPTION

[0052] In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some of the embodiments of the present invention but not all of the embodiments of the present invention. Based on the embodiments of the present invention, any other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present invention.

[0053] Those skilled in the art should understand that the embodiments of the present invention can be provided as a method, a system or a computer program product. Therefore, the present invention can take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment combining software and hardware aspects. Moreover, the present invention can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage etc.) containing computer-usable program code.

[0054] It should be noted that the terms "comprising" and "having" and any variations thereof in the specification and in the claims and the above description of the drawings are intended to cover both the exclusive and the non-exclusive inclusion of the steps or elements listed, such that the processes, methods, systems, products or devices that comprise or have any of the listed steps or elements do not have to include all of them, but can include only some of them. The embodiments and features of the embodiments in the present application can be combined with each other, provided that there is no conflict. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0055] The embodiments of the present application provide a preferred method for scheduling telephone number allocation nodes in power communication, which can be seen from the specific embodiments of the preferred method for scheduling telephone number allocation nodes in power communication Figure 1 , which comprises the following steps:

[0056] Step 100: Obtain the number of outgoing telephone channels, transmission bandwidth occupancy, machine room space occupancy and power supply capacity occupancy of all sites in the power communication network.

[0057] Step 200: Determine the adaptability of the site according to the number of outgoing telephone channels, transmission bandwidth occupancy, machine room space occupancy and power supply capacity occupancy.

[0058] Step 300: Preferentially select the telephone number allocation node according to the adaptability.

[0059] From the above description, the embodiments of the present application provide a preferred method for scheduling telephone number allocation nodes in power communication, which comprises the following steps: first, obtaining the number of outgoing telephone channels, transmission bandwidth occupancy, machine room space occupancy and power supply capacity occupancy of all sites in the power communication network; then, determining the adaptability of the site according to the number of outgoing telephone channels, transmission bandwidth occupancy, machine room space occupancy and power supply capacity occupancy; finally, preferentially selecting the telephone number allocation node according to the adaptability.

[0060] In summary, the preferred method for scheduling telephone number allocation nodes in power communication provided by the present application can avoid the overloading of communication transmission network channel resources and the waste of investment caused by unreasonable selection of telephone number allocation nodes, and also improve the safety and stability of the dispatching switching network.

[0061] For step 100, the number of outgoing telephone channels refers to the number of channels used for transmitting telephone signals in the power communication network. The number of outgoing telephone channels reflects how many telephone calls the system can handle at the same time.

[0062] Transmission bandwidth occupancy refers to the ratio of the currently used bandwidth to the total available bandwidth. It is used to reflect the utilization of network transmission resources. High bandwidth occupancy indicates that the network load is heavy and needs to be optimized or expanded.

[0063] Power capacity occupancy rate refers to the proportion of the current device used power and the total power capacity of the machine room. High power capacity occupancy rate indicates that the power system is close to its maximum load, and it is necessary to evaluate the increase of power supply or optimize the use of power.

[0064] After step 200 is executed, the selected telephone number placing nodes are all the sites with the relatively optimal transmission channel resources, machine room space resources, communication power resources and average channel organization point number.

[0065] For step 300, telephone number placing node selection refers to the allocation of telephone numbers or communication channels at internal nodes of the power system (such as dispatch centers, substations and power plants) to support voice communication.

[0066] According to the order from large to small of the adaptation values, the sites with the top adaptation values are selected as the dispatch telephone number placing nodes according to the required number of number placing nodes.

[0067] In some embodiments of the present application, step 200 is implemented by the following formula:

[0068] Pi = cos {(pi / 20)*[(1 / F1)∑UF1-m]}*ω*β*α;

[0069] Wherein, Pi: the adaptation value; F1: the number of outlet telephone channels; UF1-m: the sum of the number of telephone channels passing through the site for each channel in all outlet telephone channels; pi: the ratio of a circle; ω: the machine room space occupancy rate; β: the power capacity occupancy rate; and α: the transmission bandwidth occupancy rate.

[0070] In some embodiments of the present application, in the power communication network, all communication sites except those that must not be used as number placing points are set as a total number N, and the i-th site is denoted as Vi (1≤i≤N). The number of outlet telephone channels of the site (node) Vi is F1 (F1≥0), and the sum of the number of telephone channels passing through the site for each channel in all outlet channels of the node Vi is UF1-m (0≤m≤F1).

[0071] The transmission equipment bandwidth occupancy parameter value α (statistical transmission equipment bandwidth occupancy rate) of the site Vi is calculated as follows: α = 1, indicating that the power capacity occupancy rate is 0-50%; α = 0.7, indicating that the power capacity occupancy rate is 50-70%; α = 0.5, indicating that the power capacity occupancy rate is 70-90%; and α = 0.3, indicating that the power capacity occupancy rate is ≥90%.

[0072] The machine room location parameter value ω of the site Vi is calculated as follows: ω = 1, indicating that the machine room space occupancy rate is 0-50%; ω = 0.7, indicating that the machine room space occupancy rate is 50-70%; ω = 0.5, indicating that the machine room space occupancy rate is 70-90%; and ω = 0.9, indicating that the machine room space occupancy rate is ≥90%.

[0073] The communication power parameter value β (statistical communication power capacity occupancy rate) of the site Vi is calculated in the following manner: β = 1, indicating that the power capacity occupancy rate is 0-50%; β = 0.7, indicating that the power capacity occupancy rate is 50-70%; β = 0.5, indicating that the power capacity occupancy rate is 70-90%; and β = 0.3, indicating that the power capacity occupancy rate is ≥ 90%.

[0074] In some embodiments of the present application, referring to FIG. 1, step 200 comprises: Figure 2

[0075] Step 201: determining the weight of the number of outgoing telephone channels, the weight of the transmission bandwidth occupancy rate, the weight of the room space occupancy rate, and the weight of the power capacity occupancy rate according to the selection requirement of the telephone number distribution node.

[0076] The weight of the number of outgoing telephone channels, the weight of the transmission bandwidth occupancy rate, the weight of the room space occupancy rate, and the weight of the power capacity occupancy rate are defined according to the current selection requirement of the telephone number distribution node.

[0077] Preferably, the weights of the respective indicators are as follows: the number of outgoing telephone channels: 40%, the transmission bandwidth occupancy rate: 30%, the room space occupancy rate: 15%, and the power capacity occupancy rate: 15%.

[0078] Step 202: determining the fitness degree according to the number of outgoing telephone channels and the weight thereof, the transmission bandwidth occupancy rate and the weight thereof, the room space occupancy rate and the weight thereof, and the power capacity occupancy rate and the weight thereof.

[0079] In some embodiments of the present application, referring to FIG. 1, step 300 comprises: Figure 3 After step 300, a preferred method of power communication dispatch telephone number distribution node further comprises:

[0080] Step 400: determining whether the corresponding site currently meets the selection requirement according to the current number of outgoing telephone channels, the transmission bandwidth occupancy rate, the room space occupancy rate, and the power capacity occupancy rate of the preferred telephone number distribution node.

[0081] Specifically, the actual required transmission resource bandwidth, communication power load, and room installation position are checked again to determine whether the requirement is met, and if not, other sites with a relatively high fitness degree ranking are selected as the number distribution point.

[0082] In some embodiments of the present application, the step of obtaining the room space occupancy rate and the power capacity occupancy rate comprises:

[0083] ​The power communication network's cable topology, the machine room plan and the service mode diagram are used to obtain the machine room space occupancy and the power supply capacity occupancy.

[0084] In some embodiments of the application, the step of obtaining the number of export telephone channels and the transmission bandwidth occupancy includes:

[0085] The number of export telephone channels and the transmission bandwidth occupancy are obtained according to the configuration file and the SNMP (Simple Network Management Protocol) protocol of the network equipment in the power communication network.

[0086] The SNMP protocol is used to obtain the performance index, health status and other information of the equipment, configure the parameters of the equipment, set the threshold value, monitor the failure of the equipment and notify through the alarm mechanism.

[0087] The communication of the SNMP is based on the "manager-agent" model, which includes the following three main components:

[0088] Manager: refers to the network management system or software, which interacts with the equipment in the network through the SNMP protocol, initiates the request and processes the response returned by the equipment. The manager is responsible for collecting the equipment information, configuring the equipment, monitoring the performance and other tasks.

[0089] Agent: refers to the SNMP agent program on each equipment (such as router, switch, server, etc.) in the network. The agent program is responsible for responding to the request of the manager, providing the state information of the equipment or performing the configuration change and other operations. The agent regularly sends the data or alarm to the manager.

[0090] Management Information Base: is the database of the equipment, which stores the management information about the equipment, such as the interface state, traffic, CPU load and other information. The MIB organizes the information in a hierarchical structure. Each MIB object has a unique identifier.

[0091] From the above description, it can be seen that the embodiment of the application provides a preferred method for the power communication dispatch telephone number allocation node, which includes: first, obtaining the number of export telephone channels, the transmission bandwidth occupancy, the machine room space occupancy and the power supply capacity occupancy of all sites in the power communication network; then, determining the adaptation degree of the site according to the number of export telephone channels, the transmission bandwidth occupancy, the machine room space occupancy and the power supply capacity occupancy; finally, optimizing the telephone number allocation node according to the adaptation degree.

[0092] In summary, in order to overcome the problem of unreasonable occupation of communication channel resources caused by unreasonable selection of dialing node of dispatch telephone in the existing power system, the application provides a preferred method for dialing node of dispatch telephone in power communication, which can effectively improve the rationality of selection of dialing node of dispatch telephone, thereby effectively protecting investment and ensuring safe and stable operation of dispatch switching network.

[0093] In order to solve the problems of diversification of supporting system modules and subsystems, high learning cost of operation method and frequent update in the power system, the application establishes an intelligent knowledge base through knowledge graph technology to help users quickly understand and master system functions, thereby reducing learning cost and improving work efficiency.

[0094] In order to further illustrate the scheme, referring to Figure 4 The specific embodiment of the preferred method for dialing node of dispatch telephone in power communication provided by the application includes the following steps:

[0095] S1: Obtain the number of outgoing optical cables, transmission bandwidth occupation rate, machine room space occupation rate and power capacity occupation rate of all sites in the existing power communication network.

[0096] According to the existing data such as power communication optical cable topology map, machine room plan and service mode map and on-site investigation data, the number of outgoing optical cables, transmission bandwidth occupation rate, machine room space occupation rate and power capacity occupation rate of all sites in the existing power communication network are counted.

[0097] Suppose that the total number of all communication sites in the existing power communication network except for the sites that must not be used as dialing nodes is 10, then Vi is V1-V10; it is assumed that 2 sites are selected as telephone dialing nodes, and each site needs to converge 10 voice channels, and each voice channel occupies transmission equipment bandwidth of 2M.

[0098] The sum of the number of sites passed by each channel UF1-m (0≤m≤F1) in all channels, specifically, see Table 1:

[0099] Table 1

[0100] UF1-1 158 UF1-2 169 UF1-3 235 UF1-4 180 UF1-5 191 UF1-6 168 UF1-7 172 UF1-8 139 UF1-9 171 UF1-10 155

[0101] The transmission equipment bandwidth occupation parameter value a (statistical transmission equipment bandwidth occupation rate) of site Vi is counted in the following manner: a=1, indicating that the power capacity occupation rate is 0-50%; a=0.7, indicating that the power capacity occupation rate is 50-70%; a=0.5, indicating that the power capacity occupation rate is 70-90%; a=0.3, indicating that the power capacity occupation rate is ≥90%, specifically, see Table 2:

[0102] Table 2

[0103] site transmission bandwidth occupancy parameter value V1 72% 0.5 V2 50% 1 V3 80% 0.5 V4 30% 1 V5 58% 0.7 V6 76% 0.5 V7 85% 0.5 V8 62% 0.7 V9 91% 0.3 V10 66% 0.7

[0104] The room location parameter value ω of the site Vi is calculated as follows: ω = 1, indicating that the room space occupancy rate is 0-50%; ω = 0.7, indicating that the room space occupancy rate is 50-70%; ω = 0.5, indicating that the room space occupancy rate is 70-90%; ω = 0.9, indicating that the room space occupancy rate is ≥ 90%, see Table 3:

[0105] Table 3

[0106] site machine room occupancy parameter value V1 50% 1 V2 58% 0.7 V3 62% 0.7 V4 72% 0.5 V5 66% 0.7 V6 30% 1 V7 76% 0.5 V8 80% 0.5 V9 85% 0.5 V10 91% 0.3

[0107] The communication power parameter value β of the site Vi (statistical communication power capacity occupancy rate) is calculated according to the following formula: β = 1, indicating that the power capacity occupancy rate is 0-50%; β = 0.7, indicating that the power capacity occupancy rate is 50-70%; β = 0.5, indicating that the power capacity occupancy rate is 70-90%; β = 0.3, indicating that the power capacity occupancy rate is ≥ 90%, see Table 4:

[0108] Table 4

[0109] site power supply capacity occupancy parameter value V1 62% 0.7 V2 85% 0.5 V3 72% 0.5 V4 76% 0.5 V5 80% 0.5 V6 50% 1 V7 66% 0.7 V8 58% 0.7 V9 91% 0.3 V10 30% 1

[0110] S2: Calculate the site adaptation degree based on all sites (except sites that cannot be used as number placing nodes);

[0111] The adaptation degree Pi of the site Vi is calculated according to the following formula:

[0112] Pi = cos{(π / 20)*[(1 / F1)∑UF1-m]}*ω*β*α;

[0113] Wherein, π: circular ratio; Pi: the adaptation degree; F1: the number of exit telephone channels; UF1-m: the sum of the number of telephone channels passing through the site for each channel in all exit telephone channels; π: circular ratio; ω: room space occupancy rate; β: power capacity occupancy rate; α: transmission bandwidth occupancy rate.

[0114] The adaptation degree Pi of each site Vi is calculated, and the sites are sorted in descending order of Pi value, see Table 5.

[0115] Table 5

[0116]

[0117] S3: Select the number placing node according to the site adaptation degree value.

[0118] Two number placing nodes need to be selected, and P9 and 97 are selected as the dispatch telephone number placing nodes according to the Pi value ranking.

[0119] S4: Check the resources.

[0120] Assume the following information:

[0121] The power supply load of P7 station is 34A, the empty screen position in the machine room is 10, and the remaining transmission resource channel bandwidth is 3.4G (the service board slot is sufficient).

[0122] The power supply load of P9 station is 21A, the empty screen position in the machine room is 8, and the remaining transmission resource channel bandwidth is 1.9G (the service board slot is sufficient).

[0123] The number point needs to install 1 face of cabinet, occupies the power load 16A, and occupies the channel bandwidth 40M.

[0124] After checking, the selected station meets the needs of the telephone number point and is the relatively optimal station.

[0125] From the above description, the embodiment of the application provides a preferred method for the power communication dispatch telephone number point, which comprises the following steps: firstly, obtaining the number of outgoing telephone channels, transmission bandwidth occupation rate, machine room space occupation rate and power capacity occupation rate of all stations in the power communication network; then, determining the adaptation degree of the station according to the number of outgoing telephone channels, transmission bandwidth occupation rate, machine room space occupation rate and power capacity occupation rate; and finally, optimizing the telephone number point according to the adaptation degree.

[0126] In summary, in order to overcome the problem of unreasonable communication channel resource occupation caused by unreasonable selection of the dispatch telephone number point in the existing power system, the application provides a preferred method for the power communication dispatch telephone number point, which comprises the following steps: according to the dispatch exchange topology graph, counting the number of channels and bandwidth required by the dispatch telephone number point, calculating the repeated transmission node usage rate and bandwidth occupation rate in the channel organization, and determining the number point through optimization comparison. The method can effectively improve the rationality of the selection of the dispatch telephone number point by accounting for the channel resources of the dispatch telephone number point, thereby effectively protecting the investment and ensuring the safe and stable operation of the dispatch exchange network.

[0127] Based on the same inventive concept, the application further provides a preferred device for power communication dispatch telephone number allocation node, which can be used to implement the method described in the above embodiments. Since the preferred device for power communication dispatch telephone number allocation node solves problems in the same principle as the preferred method for power communication dispatch telephone number allocation node, the implementation of the preferred device for power communication dispatch telephone number allocation node can be referred to the implementation of the preferred method for power communication dispatch telephone number allocation node, and the repeated parts will not be described herein. The term "unit" or "module" used below can be a combination of software and / or hardware that can implement a predetermined function. Although the system described in the following embodiments is preferably implemented in software, the implementation of hardware or a combination of software and hardware is also possible and is conceived.

[0128] The embodiment of the application provides a specific implementation of a preferred device for power communication dispatch telephone number allocation node, which can implement the preferred method for power communication dispatch telephone number allocation node, referring to Figure 5 The preferred device for power communication dispatch telephone number allocation node specifically includes the following contents:

[0129] The occupancy obtaining module 10 is configured to obtain the number of exit telephone channels, the transmission bandwidth occupancy, the machine room space occupancy and the power supply capacity occupancy of all sites in the power communication network.

[0130] The adaptability determining module 20 is configured to determine the adaptability of the site according to the number of exit telephone channels, the transmission bandwidth occupancy, the machine room space occupancy and the power supply capacity occupancy.

[0131] The telephone number allocation node optimizing module 30 is configured to optimize the telephone number allocation node according to the adaptability.

[0132] In some embodiments of the application, the adaptability determining module includes:

[0133] Pi = cos { (π / 20) * [(1 / F1)∑UF1-m]} * ω * β * α;

[0134] Wherein, Pi: the adaptability; F1: the number of exit telephone channels; UF1-m: the sum of the number of telephone channels of each channel passing through the site in all exit telephone channels; π: the ratio of circumference to diameter; ω: the machine room space occupancy; β: the power supply capacity occupancy; α: the transmission bandwidth occupancy.

[0135] In some embodiments of the application, referring to Figure 6 The adaptability determining module 20 includes:

[0136] The weight determining unit 20a is configured to determine the weight of the number of the outgoing telephone channels, the weight of the transmission bandwidth occupancy, the weight of the room space occupancy and the weight of the power supply capacity occupancy according to the selection requirement of the telephone number distribution node.

[0137] The fitness determining unit 20b is configured to determine the fitness according to the number of the outgoing telephone channels and the weight thereof, the transmission bandwidth occupancy and the weight thereof, the room space occupancy and the weight thereof and the power supply capacity occupancy and the weight thereof.

[0138] In some embodiments of the present application, referring to Figure 7 The preferred device for the power communication dispatch telephone number distribution node further comprises:

[0139] The requirement confirming module 40 is configured to determine whether the corresponding site currently meets the selection requirement according to the current number of the outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy of the corresponding site of the preferred telephone number distribution node.

[0140] In some embodiments of the present application, the occupancy obtaining module comprises:

[0141] The first occupancy obtaining unit is configured to obtain the room space occupancy and the power supply capacity occupancy according to the optical cable topology map, the room plan and the service mode map of the power communication network.

[0142] In some embodiments of the present application, the occupancy obtaining module comprises:

[0143] The second occupancy obtaining unit is configured to obtain the number of the outgoing telephone channels and the transmission bandwidth occupancy according to the configuration file and the SNMP protocol of the network equipment in the power communication network.

[0144] From the above description, it can be seen that the embodiment of the present application provides a preferred device for the power communication dispatch telephone number distribution node, which comprises: an occupancy obtaining module configured to obtain the number of the outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy of all sites in the power communication network; a fitness determining module configured to determine the fitness of the site according to the number of the outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy; and a telephone number distribution node preferring module configured to prefer the telephone number distribution node according to the fitness.

[0145] In summary, the present application can avoid the communication transmission network channel resource overload and investment waste caused by unreasonable selection of the dispatch telephone number distribution node, and improve the safety and stability of the dispatch switching network.

[0146] The embodiment of the present application also provides a specific implementation of an electronic device that can implement all steps in the preferred method of the power communication dispatch telephone number node in the above embodiment, see Figure 8 , electronic equipment specifically includes the following:

[0147] Processor 1201, memory 1202, communications interface 1203, and bus 1204;

[0148] The processor 1201, the memory 1202, and the communication interface 1203 communicate with each other via the bus 1204; the communication interface 1203 is used to implement information transmission between the server device and the client device and other related devices;

[0149] The processor 1201 is used to call the computer program in the memory 1202. When the processor executes the computer program, all steps of the preferred method of the power communication dispatch telephone number release node in the above embodiment are implemented. For example, when the processor executes the computer program, the following steps are implemented:

[0150] Obtain the number of export telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy of all sites in the power communication network;

[0151] Determining the adaptability of the site based on the number of outlet telephone channels, transmission bandwidth occupancy, computer room space occupancy, and power capacity occupancy;

[0152] The telephone number allocation node is optimized according to the adaptability.

[0153] In some embodiments of the present application, determining the adaptability of the site according to the number of outlet telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy includes:

[0154] Pi=cos{(π / 20)*[(1 / F1)∑UF1-m]}*ω*β*α;

[0155] Among them, Pi: the adaptability; F1: the number of the export telephone channels; UF1-m: the sum of the number of telephone channels of each channel passing through the site in all export telephone channels; π: pi; ω: the space occupancy rate of the computer room; β: the power capacity occupancy rate; α: the transmission bandwidth occupancy rate.

[0156] In some embodiments of the present application, determining the adaptability of the site according to the number of outlet telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy includes:

[0157] determining weights of the number of the outgoing telephone channels, the transmission bandwidth occupation rate, the room space occupation rate and the power supply capacity occupation rate according to the selection requirement of the telephone number releasing node;

[0158] determining the fitness degree according to the number of the outgoing telephone channels and the weight thereof, the transmission bandwidth occupation rate and the weight thereof, the room space occupation rate and the weight thereof, and the power supply capacity occupation rate and the weight thereof.

[0159] In some embodiments of the present application, after the telephone number releasing node is preferred according to the fitness degree, the method further comprises:

[0160] judging whether the corresponding site currently meets the selection requirement according to the current number of the outgoing telephone channels, the transmission bandwidth occupation rate, the room space occupation rate and the power supply capacity occupation rate of the corresponding site corresponding to the preferred telephone number releasing node.

[0161] In some embodiments of the present application, the step of obtaining the room space occupation rate and the power supply capacity occupation rate comprises:

[0162] obtaining the room space occupation rate and the power supply capacity occupation rate according to the optical cable topology map, the room plan and the service mode map of the power communication network.

[0163] In some embodiments of the present application, the step of obtaining the number of the outgoing telephone channels and the transmission bandwidth occupation rate comprises:

[0164] obtaining the number of the outgoing telephone channels and the transmission bandwidth occupation rate according to the configuration file and the SNMP protocol of the network equipment in the power communication network.

[0165] Embodiments of the present application also provide a computer readable storage medium capable of implementing all steps of the preferred method of the power communication dispatch telephone number releasing node in the above-mentioned embodiments, and the computer readable storage medium stores a computer program, which, when executed by a processor, implements all steps of the preferred method of the power communication dispatch telephone number releasing node in the above-mentioned embodiments, for example, the processor executes the computer program to implement the following steps:

[0166] obtaining the number of the outgoing telephone channels, the transmission bandwidth occupation rate, the room space occupation rate and the power supply capacity occupation rate of all sites in the power communication network;

[0167] determining the fitness degree of the site according to the number of the outgoing telephone channels, the transmission bandwidth occupation rate, the room space occupation rate and the power supply capacity occupation rate;

[0168] preferring the telephone number releasing node according to the fitness degree.

[0169] In some embodiments of the present application, the fitness of the site is determined according to the number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy, comprising:

[0170] Pi = cos{(π / 20)*[(1 / F1)∑UF1-m]}*ω*β*α;

[0171] wherein Pi is the fitness, F1 is the number of outgoing telephone channels, UF1-m is the sum of the number of telephone channels passing through the site for each channel in all outgoing telephone channels, π is the ratio of a circle, ω is the room space occupancy, β is the power supply capacity occupancy, and α is the transmission bandwidth occupancy.

[0172] In some embodiments of the present application, the fitness of the site is determined according to the number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy, comprising:

[0173] The weight of the number of outgoing telephone channels, the weight of the transmission bandwidth occupancy, the weight of the room space occupancy and the weight of the power supply capacity occupancy are determined according to the selection requirement of the telephone number releasing node;

[0174] The fitness is determined according to the number of outgoing telephone channels and the weight thereof, the transmission bandwidth occupancy and the weight thereof, the room space occupancy and the weight thereof, and the power supply capacity occupancy and the weight thereof.

[0175] In some embodiments of the present application, after the telephone number releasing node is preferred according to the fitness, further comprising:

[0176] It is judged whether the corresponding site currently satisfies the selection requirement according to the current number of outgoing telephone channels, the transmission bandwidth occupancy, the room space occupancy and the power supply capacity occupancy of the corresponding site corresponding to the preferred telephone number releasing node.

[0177] In some embodiments of the present application, the step of obtaining the room space occupancy and the power supply capacity occupancy comprises:

[0178] The room space occupancy and the power supply capacity occupancy are obtained according to the optical cable topology map, the room plan and the service mode map of the power communication network.

[0179] In some embodiments of the present application, the step of obtaining the number of outgoing telephone channels and the transmission bandwidth occupancy comprises:

[0180] The number of outgoing telephone channels and the transmission bandwidth occupancy are obtained according to the configuration file and the SNMP protocol of the network equipment in the power communication network.

[0181] The various embodiments described in this specification are intended to be illustrative only and in no way limit the scope of the application. Those skilled in the art will be able to implement corresponding implementations without undue experimentation. There are numerous modifications and variations that can be made to the embodiments without departing from the spirit or scope of the application. Therefore, the described implementations and applications should be understood to be only by way of non-limiting examples.

[0182] The above description of certain implementations has been presented for the purposes of illustration and description. It is not intended to be exhaustive or to limit the application to the precise form described, and many modifications, variations, alterations, and equivalents can be possible in the light of the above teachings. It is intended that the scope of the application be limited not with this detailed description, but rather by the claims appended hereto.

[0183] Although the present application provides method operations steps as in the embodiments or flow charts, more or less operations steps can be included based on the practical application. The order of the steps listed in the embodiments is only one of the many possible execution sequences, and does not represent the only execution sequence. In actual implementation, the method can be executed in the order shown in the embodiments or flow charts, or in parallel (for example, in a parallel processor or multi-threaded processing environment).

[0184] For the convenience of description, the above device is described as various modules respectively described in function. Of course, in the implementation of the embodiments of the present specification, the functions of each module can be implemented in the same or multiple software and / or hardware, or the modules implementing the same function can be implemented by a combination of multiple sub-modules or sub-units. The device embodiments described above are only schematic, for example, the division of the units is only a logical function division, and in actual implementation, there can be another division manner, for example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point, the coupling or direct coupling or communication connection between the displayed or discussed each other can be through some interface, indirect coupling or communication connection between devices or units, which can be electrical, mechanical or other forms.

[0185] Those skilled in the art will further appreciate that the controller, in addition to its purely software program code implementation, can also be implemented by means of logic programming of the method steps in the form of logic gates, switches, application specific integrated circuits, programmable logic controllers and embedded microcontrollers, etc. to achieve the same functionality. Such a controller can thus be considered as a hardware component, and the means comprised therein for achieving the various functions can be considered as structures within the hardware component. Alternatively, the means for achieving the various functions can even be considered as both a software module implementing the method and a structure within the hardware component.

[0186] In one typical arrangement, the computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.

[0187] The memory can include non-persistent memory in the form of volatile memory, random access memory (RAM), and / or non-volatile memory, such as read only memory (ROM) or flash memory, among others. The memory is an example of computer readable media.

[0188] The embodiments of the present specification can be described in the general context of computer-executable instructions, such as program modules, being executed by a computer. Generally, program modules include routines, programs, objects, components, data structures, and the like, that perform particular tasks or implement particular abstract data types. The embodiments of the present specification can also be practiced in distributed computing environments where tasks are performed by remote processing devices that are linked through a communications network. In a distributed computing environment, program modules can be located in both local and remote computer storage media including memory storage devices.

[0189] The various embodiments in the present specification are described in progressive manner, and the same or similar parts among the various embodiments can be mutually referred to, and each embodiment focuses on the differences from other embodiments. In particular, for the system embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the part of the description of the method embodiments. In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the embodiments of the present specification. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any suitable manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples without contradiction.

[0190] The above merely provides an example of the present application, and is not intended to limit the present application. The present application can have various modifications and changes, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.

Claims

1. A method for optimizing telephone number placement nodes for power communication dispatching, characterized in that: include: Obtain the number of export telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy of all sites in the power communication network; Determining the adaptability of the site based on the number of outlet telephone channels, transmission bandwidth occupancy, computer room space occupancy, and power capacity occupancy; The telephone number allocation node is optimized according to the adaptability.

2. The preferred method according to claim 1, characterized in that Determining the adaptability of the site according to the number of egress telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy includes: Pi=cos{(π / 20)*[(1 / F1)∑UF1-m]}*ω*β*α; Among them, Pi: the adaptability; F1: the number of the export telephone channels; UF1-m: the sum of the number of telephone channels of each channel passing through the site in all export telephone channels; π: pi; ω: the space occupancy rate of the computer room; β: the power capacity occupancy rate; α: the transmission bandwidth occupancy rate.

3. The preferred method according to claim 1, characterized in that Determining the adaptability of the site according to the number of egress telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy includes: Determine the weight of the number of export telephone channels, the weight of the transmission bandwidth occupancy rate, the weight of the computer room space occupancy rate, and the weight of the power supply capacity occupancy rate according to the selection requirements of the telephone number placement node; The adaptability is determined based on the number of export telephone channels and their weights, the transmission bandwidth occupancy rate and their weights, the computer room space occupancy rate and their weights, and the power capacity occupancy rate and their weights.

4. The preferred method according to claim 3, characterized in that After selecting the node for allocating telephone numbers according to the adaptability, the method further includes: Based on the current number of export telephone channels, transmission bandwidth occupancy, computer room space occupancy and power capacity occupancy of the site corresponding to the preferred telephone number release node, it is determined whether the corresponding site currently meets the selection requirements.

5. The preferred method according to claim 1, characterized in that The step of obtaining the computer room space occupancy rate and the power supply capacity occupancy rate includes: The space occupancy rate of the computer room and the power capacity occupancy rate are obtained according to the optical cable topology diagram, computer room floor plan and business mode diagram of the electric power communication network.

6. The preferred method according to claim 1, characterized in that The step of obtaining the number of the egress telephone channels and the transmission bandwidth occupancy rate includes: The number of export telephone channels and the transmission bandwidth occupancy rate are obtained according to the configuration file of the network device in the power communication network and the SNMP protocol.

7. A preferred device for a telephone number release node for electric power communication dispatching, characterized in that: include: The occupancy acquisition module is used to obtain the number of export telephone channels, transmission bandwidth occupancy, equipment room space occupancy, and power capacity occupancy of all sites in the power communication network; A suitability determination module, configured to determine the suitability of the site based on the number of egress telephone channels, transmission bandwidth occupancy, computer room space occupancy, and power capacity occupancy; The telephone number placement node optimization module is used to optimize the telephone number placement node according to the adaptability.

8. A computer program product comprising a computer program / instructions, characterized in that When the computer program / instruction is executed by a processor, the steps of the preferred method of the power communication dispatching telephone number release node as described in any one of claims 1 to 6 are implemented.

9. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the steps of the optimization method of the power communication dispatching telephone number release node as described in any one of claims 1 to 6 are implemented.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the preferred method of the power communication dispatching telephone number release node as described in any one of claims 1 to 6 are implemented.

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