Machine room relocation method and device in communication network, electronic equipment and storage medium

By acquiring equipment and resource information and combining it with the optical cable routing status, the system automatically selects target equipment rooms in the communication network and generates relocation plans, solving the problems of time-consuming and resource-wasting traditional manual planning, and achieving efficient and accurate equipment room relocation planning.

CN122053404APending Publication Date: 2026-05-15INSPUR TIANYUAN COMM INFORMATION SYST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
INSPUR TIANYUAN COMM INFORMATION SYST CO LTD
Filing Date
2025-12-29
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Traditional communication network equipment room relocation planning relies on manual experience, which makes dynamic and accurate calculation difficult, resulting in infeasible planning schemes or waste of resources, and is time-consuming.

Method used

By acquiring information on equipment in the data center to be relocated and resource information in candidate data centers, and combining this with the status of fiber optic cable routing, the system automatically determines the target data center and generates a relocation plan. This includes evaluating the status of fiber optic cable routing and resource usage data, and calculating a relocation score to select the optimal target data center.

Benefits of technology

It has achieved automation, accuracy and traceability in data center relocation planning, shortened the planning cycle, ensured the feasibility and optimization of the relocation plan, and reduced resource waste.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a machine room relocation method and device in a communication network, electronic equipment and a storage medium, and the method comprises the steps: obtaining the equipment information of to-be-relocated equipment in a to-be-relocated machine room and the resource information of a plurality of candidate machine rooms, and determining the optical cable routing state between the to-be-relocated machine room and each candidate machine room; determining a target machine room of the machine room to be moved from the plurality of candidate machine rooms based on the equipment information, the resource information and the optical cable routing state; and based on the target machine room, determining a relocation scheme of the to-be-relocated machine room, so as to relocate the to-be-relocated equipment in the to-be-relocated machine room into the target machine room based on the relocation scheme. Through the technical scheme provided by the invention, full-process automation from data acquisition, intelligent decision making to scheme generation is realized, the planning period is greatly shortened, meanwhile, the equipment information, the resource information and the optical cable routing state are comprehensively considered, multi-dimensional constraints are formed, and the feasibility and optimality of migrating the equipment to be moved into the target machine room are ensured.
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Description

Technical Field

[0001] This invention relates to the field of communication network planning and operation and maintenance technology, and in particular to a method, apparatus, electronic device and storage medium for relocating a computer room in a communication network. Background Technology

[0002] During the evolution of communication networks, in order to optimize network structure and reduce costs and increase efficiency, it is often necessary to relocate the equipment of non-core computer rooms to the planned architecture node computer rooms. Traditional relocation planning relies heavily on human experience, but it is difficult for humans to dynamically and accurately calculate the situation of computer rooms before and after the relocation, which can easily lead to infeasible planning solutions or waste of resources, and manual planning is also time-consuming. Summary of the Invention

[0003] This invention provides a method, apparatus, electronic device, and storage medium for relocating a data center in a communication network, in order to overcome the deficiencies in the prior art.

[0004] This invention provides a method for relocating a data center in a communication network, comprising: Obtain equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and determine the optical cable routing status between the data center to be relocated and each of the candidate data centers; Based on the equipment information, the resource information, and the optical cable routing status, the target data center of the data center to be relocated is determined from multiple candidate data centers; Based on the target data center, a relocation plan for the data center to be relocated is determined, and the equipment to be relocated in the data center to be relocated is moved to the target data center based on the relocation plan.

[0005] According to a method for relocating a data center in a communication network provided by the present invention, the step of determining the target data center of the data center to be relocated from multiple candidate data centers based on the equipment information, the resource information, and the optical cable routing status includes: If a target optical cable routing state exists among multiple optical cable routing states, based on the device information and the resource information, the resource usage data after migrating the device to be relocated to the candidate equipment room corresponding to the target optical cable routing state is determined, and the target equipment room is determined based on the resource usage data and the optical cable reuse route; wherein, the target optical cable routing state indicates that there is an end-to-end optical cable reuse route between the device to be relocated and the candidate equipment room; If the target optical cable route state is not found among the multiple optical cable route states, the construction optical cable route between the equipment to be relocated and each of the candidate equipment rooms is determined. Based on the equipment information and the resource information, the resource usage data after relocating the equipment to be relocated to the candidate equipment room corresponding to the target optical cable route state is determined, and the target equipment room is determined based on the resource usage data and the construction optical cable route.

[0006] According to a method for relocating a data center in a communication network provided by the present invention, the step of determining resource usage data after relocating the equipment to be relocated to the candidate data center corresponding to the target optical cable routing state based on the equipment information and the resource information includes: Based on the equipment information and the resource information, the room area utilization rate and power quota status of the candidate room after relocating the equipment to be moved to the target optical cable routing status are determined, and the room area utilization rate and power quota status are used as the resource usage data.

[0007] According to a method for relocating a data center in a communication network provided by the present invention, the step of determining the target data center of the data center to be relocated from multiple candidate data centers based on the equipment information, the resource information, and the optical cable routing status includes: Based on the equipment information, the resource information, and the optical cable routing status, a relocation score is calculated for each candidate equipment room; wherein, the relocation score is used to characterize the suitability of the candidate equipment room to accommodate the equipment to be relocated; Based on the relocation score, the target data center is determined.

[0008] According to a method for relocating a data center in a communication network provided by the present invention, the step of calculating a relocation score for each candidate data center based on the equipment information, the resource information, and the optical cable routing status includes: Based on the optical cable routing status, calculate the cost score for each of the candidate computer rooms; Based on the equipment information and the resource information, calculate the resource margin score for each candidate computer room; Based on the cost score and the resource adequacy score, the relocation score for each candidate data center is calculated.

[0009] According to a method for relocating a data center in a communication network provided by the present invention, the step of calculating the cost score of each candidate data center based on the optical cable routing status includes: Based on the optical cable routing status, calculate the routing cost for each of the candidate computer rooms; Based on the operational information of each candidate data center, calculate the operational cost of each candidate data center; Based on the routing cost and the operating cost, the cost score of each candidate data center is calculated.

[0010] According to a method for relocating a data center in a communication network provided by the present invention, the step of calculating the resource margin score of each candidate data center based on the equipment information and the resource information includes: Based on the equipment information and the resource information, calculate the room area utilization rate and power quota after relocating the equipment to be moved into each of the candidate computer rooms; Based on the data center area utilization rate and the power quota, the resource margin score of each candidate data center is calculated.

[0011] The present invention also provides a data center relocation device in a communication network, comprising: The acquisition module is configured to acquire equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and determine the optical cable routing status between the data center to be relocated and each of the candidate data centers; The first determining module is configured to determine the target room of the room to be relocated from multiple candidate rooms based on the device information, the resource information, and the optical cable routing status. The second determining module is configured to determine a relocation plan for the data center to be relocated based on the target data center, so as to move the equipment to be relocated in the data center to be relocated into the target data center based on the relocation plan.

[0012] The present invention also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the data center relocation method in any of the above-described communication networks.

[0013] The present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the data center relocation method in any of the above-described communication networks.

[0014] The present invention also provides a computer program product, including a computer program that, when executed by a processor, implements a data center relocation method in any of the above-described communication networks.

[0015] The present invention provides a method, apparatus, electronic device, and storage medium for relocating equipment rooms in a communication network. By using equipment information of the equipment to be relocated in the equipment room to be relocated, resource information of candidate equipment rooms, and the optical cable routing status between the equipment room to be relocated and each of the candidate equipment rooms, a target equipment room is determined from multiple candidate equipment rooms. Based on the determined target equipment room, a relocation plan for the equipment room to be relocated is determined, and the equipment to be relocated in the equipment room to be relocated is moved to the target equipment room based on the relocation plan. Through the technical solution provided by the present invention, the entire process from data collection and intelligent decision-making to plan generation is automated. This transforms the original equipment room relocation planning work, which relied on manual experience, was computationally cumbersome, and prone to errors, into an efficient, accurate, and traceable automated process, greatly shortening the planning cycle. At the same time, by comprehensively considering equipment information, resource information, and optical cable routing status, multi-dimensional constraints are formed to ensure the feasibility and optimality of relocating the equipment to be relocated to the target equipment room. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0017] Figure 1 This is a flowchart illustrating the data center relocation method in a communication network provided by the present invention.

[0018] Figure 2 This is a schematic diagram of the structure of the data center relocation device in the communication network provided by the present invention.

[0019] Figure 3 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation

[0020] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.

[0021] The data involved in this application (including but not limited to data used for analysis, data stored, data displayed, etc.) are all information and data authorized by the user or fully authorized by all parties. The collection, use and processing of the relevant data shall comply with the relevant laws, regulations and standards of the relevant countries and regions, and corresponding operation portals shall be provided for users to choose to authorize or refuse.

[0022] Figure 1 This is a flowchart illustrating a method for relocating a data center in a communication network according to an exemplary embodiment. Figure 1 As shown in an exemplary embodiment, the method for relocating a data center in a communication network includes steps 110 to 130, which are described in detail below.

[0023] Step 110: Obtain the equipment information of the equipment to be relocated in the data center to be relocated and the resource information of multiple candidate data centers, and determine the optical cable routing status between the data center to be relocated and each of the candidate data centers; In this embodiment of the invention, a database of data center resources for the architecture node is pre-built, which records the current remaining area, remaining power supply quota (in rated current amperes A), equipment list, equipment information, etc. of each data center.

[0024] The database is used to determine the equipment information of the devices to be relocated in the data center to be relocated, as well as resource information from multiple candidate data centers. Equipment information can be understood as a collection of various data related to the equipment to be relocated within the data center. This equipment information can be a detailed equipment list, recording specific information for each device to be relocated, such as equipment type (e.g., OLT, BBU, SPN), equipment model, quantity, physical dimensions, rated power consumption or current, etc. This information can be automatically obtained by integrating with an existing network resource management system or imported by parsing a pre-formatted data file.

[0025] Resource information can be understood as a set of data describing the carrying capacity and available resource status of multiple potential migration data centers (i.e., candidate data centers). Resource information can be stored in a resource database, recording the static and dynamic data of each candidate data center. For example, it may include, but is not limited to: the currently remaining available data center area (unit: square meters), the remaining power system quota (unit: amperes A), and the data center's physical carrying capacity (such as the load-bearing capacity of server racks, unit: kg / m²). 2 The remaining capacity of the cooling system (unit: kW), the available margin of cable trays (unit: %), and network port resources (such as the number, type, and speed of core network uplink ports) are all automatically obtained from the operation and maintenance support system and kept dynamically updated.

[0026] Fiber optic cable routing status can be understood as describing the connectivity of physical fiber optic links between the equipment room to be relocated and various candidate equipment rooms. This status information may include: whether there is a readily available end-to-end fiber optic cable reuse route, the length of the reused route, and the remaining fiber cores; or, if no end-to-end fiber optic cable reuse route exists, potential path information for constructing a new fiber optic cable, such as the length of the new path, geological conditions along the route, and construction policies.

[0027] Step 120: Based on the equipment information, the resource information, and the optical cable routing status, determine the target computer room of the computer room to be relocated from multiple candidate computer rooms; In this embodiment of the invention, each candidate computer room is evaluated one by one based on equipment information, resource information and optical cable routing status to determine the target computer room to which the computer room to be relocated will eventually be moved.

[0028] Step 130: Based on the target computer room, determine the relocation plan for the computer room to be relocated, and relocate the equipment to be relocated from the computer room to be relocated to the target computer room based on the relocation plan.

[0029] In this embodiment of the invention, after the target data center is determined, a detailed and executable relocation plan is generated. The relocation plan can be a structured data file or report. Specifically, the relocation plan can clearly list: the target data center selected for this relocation, the optical fiber route connecting the data center to be relocated and the target data center (whether it is a reused route or a newly built route, and the specific route identifier), the list of equipment to be relocated, and the resource changes that this relocation will cause to the target data center, such as the area and power occupancy details of the target data center after the relocation. This relocation plan can provide a clear and quantitative basis for subsequent network engineering implementation, review, and future network status tracking.

[0030] In this embodiment of the invention, by using the equipment information of the equipment to be relocated in the data center to be relocated, the resource information of the candidate data centers, and the optical cable routing status between the data center to be relocated and each of the candidate data centers, a target data center for the data center to be relocated is determined from multiple candidate data centers. Based on the determined target data center, a relocation plan for the data center to be relocated is determined, and the equipment to be relocated in the data center to be relocated is moved into the target data center based on the relocation plan. Through the technical solution provided by this invention, the entire process from data collection and intelligent decision-making to plan generation is automated. The data center relocation planning work, which originally relied on manual experience, was cumbersome and prone to errors, is transformed into an efficient, accurate, and traceable automated process, which greatly shortens the planning cycle. At the same time, by comprehensively considering equipment information, resource information, and optical cable routing status, multi-dimensional constraints are formed to ensure the feasibility and optimality of moving the equipment to be relocated into the target data center.

[0031] In an exemplary embodiment of the present invention, determining the target data center of the data center to be relocated from a plurality of candidate data centers based on the device information, the resource information, and the optical cable routing status includes: If a target optical cable routing state exists among multiple optical cable routing states, based on the device information and the resource information, the resource usage data after migrating the device to be relocated to the candidate equipment room corresponding to the target optical cable routing state is determined, and the target equipment room is determined based on the resource usage data and the optical cable reuse route; wherein, the target optical cable routing state indicates that there is an end-to-end optical cable reuse route between the device to be relocated and the candidate equipment room; If the target optical cable route state is not found among the multiple optical cable route states, the construction optical cable route between the equipment to be relocated and each of the candidate equipment rooms is determined. Based on the equipment information and the resource information, the resource usage data after relocating the equipment to be relocated to the candidate equipment room corresponding to the target optical cable route state is determined, and the target equipment room is determined based on the resource usage data and the construction optical cable route.

[0032] In this embodiment of the invention, the target optical cable route status specifically refers to the existence of a directly reusable end-to-end optical cable link between the equipment room to be relocated and a candidate equipment room, i.e., a reused optical cable route. Candidate equipment rooms with this status are processed first. All candidate equipment rooms are traversed to find all candidate equipment rooms with reused optical cable routes, and sorted according to the length of the reused optical cable routes. For example, the candidate equipment room with the shortest reused optical cable route is selected as the first verification target.

[0033] Then, a simulated migration and resource verification is performed on this preferred candidate data center. Specifically, based on the equipment information to be migrated and the resource information of the candidate data center, the resource usage data of the candidate data center after the equipment to be migrated is calculated. If the resource usage data meets the preset carrying capacity conditions, the candidate data center is determined as the target data center for this migration. If it does not meet the conditions, the candidate data center is abandoned, and the next candidate data center with a fiber optic cable reuse route is selected, and the above verification process is repeated.

[0034] When no candidate data center has an end-to-end fiber optic route that can be reused with the data center to be relocated, the logic for planning a new route will be initiated. Building a fiber optic route refers to laying new fiber optic links through engineering construction. This can be a completely new route or building a new route based on a reused segment. New route plans are then developed from the data center to be relocated to each candidate data center. In a preferred implementation, the candidate data center with the shortest new fiber optic route and the longest reused segment is selected as the target. Then, a simulated migration and resource verification are performed on this target data center, and the final determination of its suitability as the target data center is based on the verification results. If it cannot become the target data center, the next candidate data center is selected based on the new fiber optic route and the reused segment, and the above verification process is repeated.

[0035] This embodiment is based on the optical cable routing status of the room to be relocated and each candidate room, and combines the resource verification of the candidate rooms. This makes the selection process of the target room not only automated, but also more in line with the core requirement of controlling investment costs in actual engineering, thus ensuring the economy and feasibility of the selected solution.

[0036] In an exemplary embodiment of the present invention, determining the resource usage data after relocating the equipment to be moved to the candidate equipment room corresponding to the target optical cable routing state based on the device information and the resource information includes: Based on the equipment information and the resource information, the room area utilization rate and power quota status of the candidate room after relocating the equipment to be moved to the target optical cable routing status are determined, and the room area utilization rate and power quota status are used as the resource usage data.

[0037] In this embodiment of the invention, the process for determining the utilization rate of the computer room area is as follows: First, based on the equipment information (such as equipment list and model) of the equipment to be relocated, and according to the preset equipment area conversion rules, for example, one OLT device occupies an area of ​​1.1m². 2 One BBU device is equivalent to 0.2m 2 Calculate the total area required for all equipment to be relocated. Then, add this total area to the currently used area of ​​the candidate data center, and divide by the total area of ​​the candidate data center to obtain the simulated data center area utilization rate after relocation. Verify whether the data center area utilization rate exceeds a preset area threshold, such as 60%. If it exceeds this area threshold, the candidate data center is considered to have insufficient area resources and cannot be used as the target data center.

[0038] The process for determining the power quota status is as follows: First, based on the equipment information (such as equipment model and quantity) of the equipment to be relocated, the current demand (i.e., power quota demand) of all equipment to be relocated under full load is calculated according to the preset power quota calculation rules. Then, this demand is added to the current power load of the candidate computer room to determine whether it exceeds the total power quota of the candidate computer room (i.e., whether it exceeds the limit). The power quota status includes not exceeding the limit and exceeding the limit.

[0039] The final target data center must be a candidate data center whose data center area utilization rate does not exceed the area threshold and whose power quota status is not exceeded.

[0040] Furthermore, if the power quota status of the candidate data center is exceeded, a power expansion logic can be triggered. For example, adding a standard set of power equipment (such as power cabinets, batteries, etc.) will occupy a fixed area, such as 8-10m². 2 After that, the total area utilization rate of the candidate data center is calculated. If the total area utilization rate after expansion is still within a reasonable range, for example, not exceeding 100%, the candidate data center is still considered feasible, but the final plan will indicate that a power expansion is required.

[0041] This embodiment concretizes resource usage data into data center area utilization and power quota status, making the resource verification process data-driven and greatly improving the accuracy of planning. Furthermore, it introduces power expansion logic, making decision-making more flexible and in-depth, enabling the discovery of optimal solutions that can be achieved with minimal modification investment, and avoiding the erroneous rejection of high-quality candidate data centers.

[0042] In an exemplary embodiment of the present invention, determining the target data center of the data center to be relocated from a plurality of candidate data centers based on the device information, the resource information, and the optical cable routing status includes: Based on the equipment information, the resource information, and the optical cable routing status, a relocation score is calculated for each candidate equipment room; wherein, the relocation score is used to characterize the suitability of the candidate equipment room to accommodate the equipment to be relocated; Based on the relocation score, the target data center is determined.

[0043] In this embodiment of the invention, based on equipment information, resource information, and optical cable routing status, a relocation score is calculated for each candidate equipment room. The relocation score characterizes the suitability of a candidate equipment room to accommodate the relocated equipment. This embodiment does not simply accept any candidate equipment room that meets the basic conditions; instead, it performs a comprehensive quantitative evaluation of the equipment room to be relocated and each possible candidate equipment room, resulting in a comprehensive score, i.e., the relocation score. This score is a continuous numerical value; the higher the score, the more suitable the candidate equipment room is as a relocation target.

[0044] After calculating the migration scores for all candidate data centers, they can be sorted from highest to lowest score. Typically, the candidate data center with the highest score will be selected as the final target data center. In certain special cases, a recommendation list of the top-scoring data centers can be compiled for final manual decision-making.

[0045] In this embodiment, a global scoring and ranking mechanism is adopted, which can include all possibilities in a unified evaluation framework for horizontal comparison, thereby ensuring that the selected target data center is the optimal solution or close to the optimal solution from a global perspective, making the entire relocation decision-making process more scientific, comprehensive and reasonable.

[0046] In an exemplary embodiment of the present invention, calculating the relocation score of each candidate equipment room based on the device information, the resource information, and the optical cable routing status includes: Based on the optical cable routing status, calculate the cost score for each of the candidate computer rooms; Based on the equipment information and the resource information, calculate the resource margin score for each candidate computer room; Based on the cost score and the resource adequacy score, the relocation score for each candidate data center is calculated.

[0047] In this embodiment of the invention, a cost score is calculated for each candidate data center based on the optical cable routing status. The cost score quantifies the total cost associated with that candidate data center; a higher score generally indicates a lower cost.

[0048] Based on equipment and resource information, a resource adequacy score is calculated for each candidate data center. The resource adequacy score quantifies the resource health or remaining capacity of the candidate data center after the equipment to be relocated is moved in; a higher score indicates more abundant resources.

[0049] Based on cost scores and resource adequacy scores, a relocation score is calculated for each candidate data center. The relocation score is a comprehensive reflection of the scores of the above sub-items. The scores of the above items are weighted and summed, i.e., relocation score = w1 × cost score + w2 × resource adequacy score. The weighting coefficients w1 and w2 can be dynamically adjusted by the planners according to different strategies (such as investment priority or resource reuse priority).

[0050] In another embodiment of the invention, the relocation score may further include a risk aversion score. The risk aversion score is used to assess the potential risks of relocating the equipment to be moved to the candidate equipment room. Potential risks include routing risks and / or engineering risks. Routing risks are determined based on whether the newly constructed optical cable route passes through areas prone to geological disasters and whether there is a single point of failure risk. Engineering risks are determined based on the complexity of the power system upgrade and the construction period. The lower the potential risk, the higher the score. After obtaining the risk aversion score, the cost score, resource adequacy score, and risk aversion score are weighted and summed to obtain the relocation score.

[0051] This embodiment decomposes the fuzzy suitability into multiple dimensions such as quantifiable cost and resource adequacy, thereby enabling a better determination of the target data center.

[0052] In an exemplary embodiment of the present invention, calculating the cost score of each candidate equipment room based on the optical cable routing status includes: Based on the optical cable routing status, calculate the routing cost for each of the candidate computer rooms; Based on the operational information of each candidate data center, calculate the operational cost of each candidate data center; Based on the routing cost and the operating cost, the cost score of each candidate data center is calculated.

[0053] In this embodiment of the invention, the routing cost of each candidate equipment room is calculated based on the optical cable routing status. The routing cost can be further subdivided into: New construction cost, which is the cost when a new optical cable route needs to be built, can be calculated based on the length of the new optical cable route and the different cost coefficients assigned to different sections based on geological conditions, policies and other factors. Reuse cost: When existing optical cable routes can be utilized, this cost can be considered as the cost of leasing the fiber cores of the reused optical cable, or the cost of long-term maintenance.

[0054] Based on the operational information of each candidate data center, the operating costs of each candidate data center are calculated. Operating costs focus on long-term cost changes after the relocation is completed. Operational information may include electricity prices per unit area and site rental fees for different candidate data centers. By calculating the differences in these long-term expenditures before and after the relocation, the changes in operating costs can be quantified.

[0055] Based on routing and operating costs, a cost score is calculated for each candidate data center. First, the various costs can be weighted or summed to obtain a total cost value. Then, the cost score can be calculated as an inverse function of the total cost value, for example, cost score = 1 / (1 + total cost value). This design ensures that the lower the total cost value, the higher the cost score.

[0056] This embodiment quantifies both short-term investments (such as route construction) and long-term expenditures (such as electricity costs) involved in relocation by establishing a refined cost score, making the cost assessment more comprehensive and accurate, and providing solid data support for the final decision.

[0057] In an exemplary embodiment of the present invention, calculating the resource adequacy score of each candidate data center based on the device information and the resource information includes: Based on the equipment information and the resource information, calculate the room area utilization rate and power quota after relocating the equipment to be moved into each of the candidate computer rooms; Based on the data center area utilization rate and the power quota, the resource margin score of each candidate data center is calculated.

[0058] In this embodiment of the invention, based on equipment information and resource information, the room area utilization rate and power quota of each candidate computer room after the equipment to be relocated is calculated. That is, according to the needs of the equipment to be relocated, the room area utilization rate and power quota of each candidate computer room after the equipment to be relocated are simulated.

[0059] Based on the data center area utilization rate and power quota, the resource margin score for each candidate data center is calculated. Specifically, the power quota is the current demand of the equipment in the candidate data center when it is running at full load after all the equipment to be relocated is moved into the candidate data center. The power load rate is obtained by dividing the current demand of the equipment running at full load by the total current quota of the candidate data center. The resource margin score is calculated based on the data center area utilization rate and the power load rate. For example, the resource margin score can be calculated as: Resource Margin Score = a × (1 - Data Center Area Utilization Rate) + b × (1 - Power Load Rate). Where a and b are weighting coefficients.

[0060] In this embodiment of the invention, by calculating resource sufficiency, the selection of candidate data centers with more abundant resources is encouraged, leaving sufficient room for future network expansion.

[0061] In another embodiment of the present invention, in addition to area and power, the calculation of resource margin score can also take into account other key resource indicators such as cooling load rate.

[0062] This embodiment quantifies resource adequacy, transforming the health of candidate data centers into a comparable score. This approach is more scientific and flexible than simple threshold judgment, enabling the selection of the most promising data center among multiple candidates that meet basic resource requirements, thereby enhancing the long-term utilization value of the infrastructure.

[0063] The following describes the data center relocation device in the communication network provided by the present invention. The data center relocation device in the communication network described below can be referred to in correspondence with the data center relocation method in the communication network described above. It should be noted that the device provided in the following embodiments and the method provided in the above embodiments belong to the same concept, and the specific way in which each module and unit performs its operation has been described in detail in the method embodiments, and will not be repeated here.

[0064] In one exemplary embodiment of the present invention, please refer to Figure 2 , Figure 2 This is an exemplary embodiment of a data center relocation device in a communication network, comprising the following modules.

[0065] The acquisition module 210 is configured to acquire equipment information of the equipment to be relocated in the equipment room to be relocated and resource information of multiple candidate equipment rooms, and determine the optical cable routing status between the equipment room to be relocated and each of the candidate equipment rooms. The first determining module 220 is configured to determine the target room of the room to be relocated from multiple candidate rooms based on the device information, the resource information and the optical cable routing status; The second determining module 230 is configured to determine a relocation plan for the data center to be relocated based on the target data center, so as to move the equipment to be relocated in the data center to be relocated into the target data center based on the relocation plan.

[0066] In an exemplary embodiment of the present invention, the first determining module 220 includes: The first determining submodule is configured to, if a target optical cable routing state exists among multiple optical cable routing states, determine the resource usage data after migrating the equipment to be relocated to the candidate equipment room corresponding to the target optical cable routing state based on the device information and the resource information, and determine the target equipment room based on the resource usage data and the optical cable reuse route; wherein, the target optical cable routing state indicates that there is an end-to-end optical cable reuse route between the equipment to be relocated and the candidate equipment room; The second determining submodule is configured to, if the target optical cable routing state does not exist among the multiple optical cable routing states, determine the construction optical cable route between the equipment to be relocated and each of the candidate equipment rooms, determine the resource usage data after relocating the equipment to be relocated to the candidate equipment room corresponding to the target optical cable routing state based on the equipment information and the resource information, and determine the target equipment room based on the resource usage data and the construction optical cable route.

[0067] In one exemplary embodiment of the present invention, the second determining submodule includes: The determining unit is configured to determine the room area utilization rate and power quota status of the candidate room after relocating the equipment to be moved into the target optical cable routing state based on the equipment information and the resource information, and use the room area utilization rate and power quota status as the resource usage data.

[0068] In an exemplary embodiment of the present invention, the first determining module 220 includes: The calculation submodule is configured to calculate the relocation score of each candidate equipment room based on the device information, the resource information, and the optical cable routing status; wherein the relocation score is used to characterize the suitability of the candidate equipment room to accommodate the equipment to be relocated; The third determination submodule is configured to determine the target data center based on the relocation score.

[0069] In one exemplary embodiment of the present invention, the computing submodule includes: The first calculation unit is configured to calculate the cost score of each of the candidate computer rooms based on the optical cable routing status. The second calculation unit is configured to calculate the resource margin score of each of the candidate computer rooms based on the device information and the resource information. The third calculation unit is configured to calculate the relocation score of each of the candidate data centers based on the cost score and the resource margin score.

[0070] In an exemplary embodiment of the present invention, the first computing unit includes: The first calculation subunit is configured to calculate the routing cost of each of the candidate computer rooms based on the optical cable routing status. The second calculation subunit is configured to calculate the operating cost of each candidate data center based on the operating information of each candidate data center. The third calculation subunit is configured to calculate the cost score of each of the candidate data centers based on the routing cost and the operating cost.

[0071] In one exemplary embodiment of the present invention, the second computing unit is configured to include: The fourth calculation unit is configured to calculate the room area utilization rate and power quota after the equipment to be relocated is moved into each of the candidate computer rooms based on the equipment information and the resource information. The fifth calculation unit is configured to calculate the resource margin score of each candidate computer room based on the computer room area utilization rate and the power quota.

[0072] Figure 3 An example is a schematic diagram of the physical structure of an electronic device, such as... Figure 3As shown, the electronic device may include a processor 310, a communications interface 320, a memory 330, and a communication bus 340, wherein the processor 310, communications interface 320, and memory 330 communicate with each other via the communication bus 340. The processor 310 can call logical instructions in the memory 330 to execute a data center relocation method in the communication network. This method includes: acquiring equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and determining the optical cable routing status between the data center to be relocated and each of the candidate data centers; Based on the equipment information, the resource information, and the optical cable routing status, the target data center of the data center to be relocated is determined from multiple candidate data centers; Based on the target data center, a relocation plan for the data center to be relocated is determined, and the equipment to be relocated in the data center to be relocated is moved to the target data center based on the relocation plan.

[0073] Furthermore, the logical instructions in the aforementioned memory 330 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, essentially, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0074] On the other hand, the present invention also provides a computer program product, the computer program product including a computer program, the computer program being able to be stored on a non-transitory computer-readable storage medium, the computer program being executed by a processor, the computer being able to execute the data center relocation method in the communication network provided by the above methods, the method including: obtaining equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and determining the optical cable routing status between the data center to be relocated and each of the candidate data centers; Based on the equipment information, the resource information, and the optical cable routing status, the target data center of the data center to be relocated is determined from multiple candidate data centers; Based on the target data center, a relocation plan for the data center to be relocated is determined, and the equipment to be relocated in the data center to be relocated is moved to the target data center based on the relocation plan.

[0075] In another aspect, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon. When executed by a processor, the computer program is implemented to perform the data center relocation method in the communication network provided by the above methods. The method includes: acquiring equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and determining the optical cable routing status between the data center to be relocated and each of the candidate data centers. Based on the equipment information, the resource information, and the optical cable routing status, the target data center of the data center to be relocated is determined from multiple candidate data centers; Based on the target data center, a relocation plan for the data center to be relocated is determined, and the equipment to be relocated in the data center to be relocated is moved to the target data center based on the relocation plan.

[0076] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0077] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.

[0078] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for relocating a computer room in a communication network, characterized in that, include: Obtain equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and determine the optical cable routing status between the data center to be relocated and each of the candidate data centers; Based on the equipment information, the resource information, and the optical cable routing status, the target data center of the data center to be relocated is determined from multiple candidate data centers; Based on the target data center, a relocation plan for the data center to be relocated is determined, and the equipment to be relocated in the data center to be relocated is moved to the target data center based on the relocation plan.

2. The method for relocating a computer room in a communication network according to claim 1, characterized in that, The step of determining the target data center for the data center to be relocated from multiple candidate data centers based on the equipment information, the resource information, and the optical cable routing status includes: If a target optical cable routing state exists among multiple optical cable routing states, based on the device information and the resource information, the resource usage data after migrating the device to be relocated to the candidate equipment room corresponding to the target optical cable routing state is determined, and the target equipment room is determined based on the resource usage data and the optical cable reuse route; wherein, the target optical cable routing state indicates that there is an end-to-end optical cable reuse route between the device to be relocated and the candidate equipment room; If the target optical cable route state is not found among the multiple optical cable route states, the construction optical cable route between the equipment to be relocated and each of the candidate equipment rooms is determined. Based on the equipment information and the resource information, the resource usage data after relocating the equipment to be relocated to the candidate equipment room corresponding to the target optical cable route state is determined, and the target equipment room is determined based on the resource usage data and the construction optical cable route.

3. The method for relocating a computer room in a communication network according to claim 2, characterized in that, The step of determining the resource usage data after relocating the equipment to be moved to the candidate equipment room corresponding to the target optical cable routing status based on the equipment information and the resource information includes: Based on the equipment information and the resource information, the room area utilization rate and power quota status of the candidate room after the equipment to be relocated is moved into the target optical cable routing status are determined, and the room area utilization rate and power quota status are used as the resource usage data.

4. The method for relocating a computer room in a communication network according to claim 1, characterized in that, The step of determining the target data center for the data center to be relocated from multiple candidate data centers based on the equipment information, the resource information, and the optical cable routing status includes: Based on the equipment information, the resource information, and the optical cable routing status, a relocation score is calculated for each candidate equipment room; wherein, the relocation score is used to characterize the suitability of the candidate equipment room to accommodate the equipment to be relocated; Based on the relocation score, the target data center is determined.

5. The method for relocating a computer room in a communication network according to claim 4, characterized in that, The calculation of relocation scores for each candidate equipment room based on the equipment information, resource information, and optical cable routing status includes: Based on the optical cable routing status, calculate the cost score for each of the candidate computer rooms; Based on the equipment information and the resource information, calculate the resource margin score for each candidate computer room; Based on the cost score and the resource adequacy score, the relocation score for each candidate data center is calculated.

6. The method for relocating a computer room in a communication network according to claim 5, characterized in that, The calculation of the cost score for each candidate equipment room based on the optical cable routing status includes: Based on the optical cable routing status, calculate the routing cost for each of the candidate computer rooms; Based on the operational information of each candidate data center, calculate the operational cost of each candidate data center; Based on the routing cost and the operating cost, the cost score of each candidate data center is calculated.

7. The method for relocating a computer room in a communication network according to claim 5, characterized in that, The calculation of the resource adequacy score for each candidate data center based on the device information and the resource information includes: Based on the equipment information and the resource information, calculate the room area utilization rate and power quota after relocating the equipment to be moved into each of the candidate computer rooms; Based on the data center area utilization rate and the power quota, the resource margin score of each candidate data center is calculated.

8. A data center relocation device in a communication network, characterized in that, include: The acquisition module is configured to acquire equipment information of the equipment to be relocated in the data center to be relocated and resource information of multiple candidate data centers, and to determine the optical cable routing status between the data center to be relocated and each of the candidate data centers; The first determining module is configured to determine the target room of the room to be relocated from multiple candidate rooms based on the device information, the resource information, and the optical cable routing status. The second determining module is configured to determine a relocation plan for the data center to be relocated based on the target data center, so as to move the equipment to be relocated in the data center to be relocated into the target data center based on the relocation plan.

9. An electronic device comprising a memory, a processor, and a computer program stored in the memory and running on the processor, characterized in that, When the processor executes the computer program, it implements the data center relocation method in the communication network as described in any one of claims 1 to 7.

10. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the data center relocation method in the communication network as described in any one of claims 1 to 7.