WO2024066172A1 - 专网一体化装置的配置方法、装置、设备以及存储介质 - Google Patents

专网一体化装置的配置方法、装置、设备以及存储介质 Download PDF

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Publication number
WO2024066172A1
WO2024066172A1 PCT/CN2023/077114 CN2023077114W WO2024066172A1 WO 2024066172 A1 WO2024066172 A1 WO 2024066172A1 CN 2023077114 W CN2023077114 W CN 2023077114W WO 2024066172 A1 WO2024066172 A1 WO 2024066172A1
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Prior art keywords
module
private network
equipment
indicator
optional
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PCT/CN2023/077114
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English (en)
French (fr)
Inventor
董雪
周胜
吕雪峰
刘红
王海涛
宋上雷
程玉松
杨志波
李媛媛
张娅
王晓鹏
刘学林
Original Assignee
中国移动通信集团设计院有限公司
中国移动通信集团有限公司
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Publication of WO2024066172A1 publication Critical patent/WO2024066172A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/084Configuration by using pre-existing information, e.g. using templates or copying from other elements
    • H04L41/0846Configuration by using pre-existing information, e.g. using templates or copying from other elements based on copy from other elements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0889Techniques to speed-up the configuration process

Definitions

  • the embodiments of the present invention relate to the field of network communication technology, and relate to but are not limited to a configuration method, device, equipment and storage medium of a private network integrated device.
  • Private network deployment faces various challenges such as weak infrastructure and long implementation cycle.
  • the application requirements of different scenarios have different requirements for communication equipment configuration.
  • fast and automatic configuration of private network integrated devices is conducive to gaining a competitive advantage.
  • the configuration devices or systems of the private network integrated devices are all private network scenarios for a certain industry, such as a coal and rock power disaster monitoring and early warning visualization system based on 5G communication, a dedicated mobile communication system suitable for working in the harsh environment of a mine area, and a smart logistics park management system based on a 5G network.
  • the above systems are all composed of multiple functional modules or functional systems.
  • the configuration technology of the private network integrated device in the related technology can only be used for a specific single scenario, it cannot be quickly adapted and copied to the business demand scenarios of private network users in different industries, which results in low configuration efficiency of the private network integrated device and poor user experience of the configuration.
  • an embodiment of the present invention provides a configuration method for a private network integrated device, which is used to solve the problems of low configuration efficiency and configuration time of the private network integrated device in the prior art.
  • An embodiment of the present invention provides a method for configuring a private network integrated device, the method comprising:
  • the function module to be configured is at least one of the optional functional modules;
  • the module performance indicator is used to characterize the private network service capability that the optional functional module can provide;
  • the device performance indicators are used to characterize the private network service capabilities that the optional devices can provide;
  • the equipment to be configured is configured and rack-mounted to obtain a configured private network integrated device.
  • the method further includes:
  • the function module to be configured is determined from the optional function modules according to the module requirement index value.
  • the method further includes:
  • the device to be configured is determined from the optional devices according to the device requirement index value and the device performance index values respectively corresponding to the optional devices under the device performance index.
  • the method further includes:
  • the device to be configured is determined from the optional devices according to the selection weight.
  • the method further includes:
  • the selection weight of the optional device is determined according to the index weights corresponding to all the device requirement index values satisfied by the optional device.
  • the method further includes:
  • the index superposition attribute is used to characterize whether the device requirement index value can be met by using multiple optional devices at the same time;
  • the selection weight is determined according to the equipment performance index, its index superposition attribute and the index weight.
  • the method further includes:
  • the devices to be configured are distributed and deployed on the corresponding target racks to obtain the configured private network integrated device; wherein, the deployment requirement information is determined based on the private network business requirements, the hardware characteristics of the deployed equipment and the environmental resources of the computer room.
  • An embodiment of the present invention provides a configuration device for a private network integrated device, including:
  • a module matching module configured to match the private network service requirements of the user with the module performance indicators respectively corresponding to the plurality of optional function modules, and obtain a function module to be configured corresponding to the user;
  • the function module to be configured is at least one of the optional function modules;
  • the module performance indicator is used to characterize the private network service capability that the optional function module can provide;
  • the device matching module is configured to determine the device to be configured corresponding to the function module to be configured from a plurality of optional devices according to the private network service requirements and the device performance index corresponding to the function module to be configured; the device performance index is used to characterize the private network service that the optional device can provide. Service capabilities;
  • the device configuration module is configured to perform device configuration and rack deployment on the device to be configured to obtain a configured private network integrated device.
  • An embodiment of the present invention provides a configuration device for a private network integrated device, including:
  • a processor a memory, a communication interface and a communication bus, wherein the processor, the memory and the communication interface communicate with each other via the communication bus;
  • the memory is configured to store at least one executable instruction, and the executable instruction enables the processor to perform operations of the configuration method of the private network integrated device as described in any one of the above.
  • An embodiment of the present invention provides a storage medium storing at least one executable instruction, wherein the executable instruction enables a configuration device of a private network integrated device to execute any one of the operations of the configuration method of the private network integrated device.
  • the embodiment of the present invention obtains a to-be-configured function module corresponding to the user by matching the private network service demand of the user with the module performance indicators respectively corresponding to a plurality of optional function modules; the to-be-configured function module is at least one of the optional function modules; the module performance indicator is used to characterize the private network service capability that the optional function module can provide; the to-be-configured device corresponding to the to-be-configured function module is determined from a plurality of optional devices according to the private network service demand and the device performance indicator corresponding to the to-be-configured function module; the device performance indicator is used to characterize the private network service capability that the optional device can provide; the to-be-configured device is configured and rack-deployed to obtain a fully configured function module.
  • the completed private network integrated device can convert the user's private network business needs according to the module performance indicators, and obtain the corresponding module demand indicator values, so as to determine the functional modules that need to be configured, and convert the private network business needs according to the equipment performance indicators corresponding to the functional modules to be configured, and obtain the corresponding equipment demand indicator values, so as to select the equipment that can meet the corresponding functional module equipment demand indicator values from the optional equipment, and finally configure and mount the selected equipment to obtain the configured private network integrated device, thereby quickly completing the equipment configuration of the private network integrated device that meets the user's specific private network needs, thereby improving the configuration efficiency of the private network integrated device and the user experience.
  • FIG1 is a schematic diagram showing a flow chart of a method for configuring a private network integrated device according to an embodiment of the present invention
  • FIG2 shows a schematic diagram of the structure of a private network integrated device in a method for configuring a private network integrated device provided in an embodiment of the present invention
  • FIG. 3 is a schematic diagram showing the definition of device performance indicators in the configuration method of the private network integrated device provided in an embodiment of the present invention
  • FIG4 is a schematic diagram showing a flow chart of a method for configuring a private network integrated device according to another embodiment of the present invention.
  • FIG5a shows a specific flow chart 1 of a configuration method of a private network integrated device provided by another embodiment of the present invention.
  • FIG5b shows a second specific flow chart of a method for configuring a private network integrated device according to another embodiment of the present invention
  • FIG6 shows a schematic diagram of the structure of a configuration device for a private network integrated device provided in an embodiment of the present invention
  • FIG. 7 shows a schematic diagram of the structure of a configuration device of a private network integration apparatus provided in an embodiment of the present invention.
  • FIG1 shows a flow chart of a configuration method of a private network integrated device provided by an embodiment of the present invention, and the method is executed by a computer processing device.
  • the computer processing device may include a mobile phone, a laptop computer, etc. As shown in FIG1 , the method includes the following steps:
  • Step 10 Match the user's private network service requirements with the module performance indicators corresponding to multiple optional functional modules to obtain the function module to be configured corresponding to the user; the function module to be configured is at least one of the optional functional modules; the module performance indicator is used to characterize the private network service capabilities that the optional functional module can provide.
  • FIG2 shows various optional functional modules that may be included in the private network integrated device.
  • the optional functional modules may be divided into business modules and infrastructure modules, wherein the business module may include at least one of an access module, a transmission module, a switching module, a computing application module, a management module, and a networking module, and the infrastructure module may include at least one of a cooling module, a fire protection module, a monitoring module, a power supply module, and a connector module.
  • the functional modules are described as follows:
  • the power module is used to obtain the power input of the private network integration device through the power supply introduction or the power supply equipment in the computer room, and power the device.
  • the power module can provide multiple outputs as needed to power each rack.
  • the power module can be further divided into different functional categories, including but not limited to AC functional category and DC functional category.
  • the power module When configuring the power module, you can configure it according to the power connection method and power consumption requirements of all functional module devices in the rack, and according to the remaining space reservation suggestions of the device and the power consumption requirements of each function module.
  • the power module equipment configuration (for example, the maximum configuration of the functional module equipment has not been reached) reserves certain power consumption requirements and power terminal requirements.
  • the power module can support the introduction of mains power, uninterruptible power supply (UPS) access or DC access as needed; when the functional module equipment in this device requires different power supply methods, the power module can meet the rectification function of AC to DC and the inversion function of DC to AC; if the reliability requirements of the private network service are high, the power module can be equipped with batteries as needed, and in the event of a power outage in the room, it can meet the power output for a certain backup time.
  • UPS uninterruptible power supply
  • the connector module is used to provide a standard connection between the functional module devices in the device and the standard connection of the device to the outside, including a power connector module and a signal connector module.
  • the power connector module is configured as needed according to the rack dimensions, and the input is the voltage and current output provided by the power module, and the output is the power input required by the functional module devices of the rack; the power connector module can be configured as needed according to the power connection method and power consumption requirements of the functional module devices of the rack, circuit breaker terminals or power distribution unit (PDU) sockets, etc., and can be redundant according to the remaining space reservation recommendations of the rack and the configuration of each functional module device (for example, the maximum configuration of the functional module device has not been reached).
  • PDU power distribution unit
  • the signal connector module is configured on demand based on the rack dimension, and provides standard optical fiber, network cable, 2M cable and other interfaces to realize data communication connection between functional module devices in the rack, data communication connection between functional module devices in the rack and other racks, and external data communication connection of functional module devices in the rack; the signal connector module can be configured on demand according to the external bandwidth and interface type of each functional module device in the rack, and can redundantly provide a certain proportion of optical fiber, network cable, 2M cable and other interfaces based on the remaining space reservation suggestions of the rack and the configuration of each functional module device (for example, the maximum configuration of the functional module device has not been reached).
  • each rack width and the size of the power circuit breaker/fuse, PDU jack, optical fiber, network cable, 2M cable and other interfaces can be defined; each rack can match and select the appropriate plug-in module configuration template according to the equipment situation of the rack.
  • the monitoring module is used for computer room environment monitoring and infrastructure function module monitoring.
  • the monitoring module can be further divided into different functional categories, including but not limited to dynamic environment monitoring functional category and video monitoring functional category.
  • the dynamic environment monitoring functional category includes but is not limited to smoke detection, water immersion, temperature and humidity, battery clamp, door magnet, smart power supply, smart UPS, smart air conditioning, fire cylinder pressure, etc.
  • the refrigeration module is realized by the configured air conditioning system and the hot and cold air ducts in the rack of this device, and is used to provide cooling for this device and its surrounding environment, and realize its temperature control.
  • the refrigeration module can be configured according to the cooling requirements of all functional module equipment in this rack, and can meet the redundant cooling capacity requirements based on the remaining space reservation suggestions of this rack and the configuration of each functional module equipment (for example, the maximum configuration of the functional module equipment has not been reached).
  • the hot and cold channels and ventilation methods of each rack of this device need to be determined by the ventilation method of each functional module equipment in this rack, and equipment with the same air supply method shall be deployed in the same rack or in a certain area of the same rack.
  • the refrigeration module can be further divided into different functional categories, including but not limited to the upper air supply functional category, the lower air supply functional category, and the heat pipe backplane functional category.
  • the fire fighting module is implemented by the configured gas fire extinguishing device, which is used to provide gas fire fighting for the device and its surrounding environment; the filling amount of the fire fighting cylinder and the selection of the pipeline need to consider the volume of the protection area, etc.
  • the fire fighting module performs gas fire fighting according to the abnormal smoke detection detected by the monitoring module or the fire fighting instruction issued by the management module.
  • Access module is used to provide network access for users in the private network. Access modules can be further divided into different functional categories, including but not limited to 2/4/5G functional category, Wireless Local Area Network (WLAN) functional category, and fiber access functional category. Access module equipment includes but is not limited to baseband processing unit (BBU), WLAN wireless access controller (AC), access switch, and fiber access equipment.
  • BBU baseband processing unit
  • AC WLAN wireless access controller
  • the transmission module is used to realize the external long-distance data transmission of the device.
  • the transmission module can be further divided into different functional categories, including but not limited to the Slicing Packet Network (SPN) functional category, the Packet Transport Network (PTN) functional category, and the Synchronous Digital Hierarchy (SDH) functional category.
  • SPN Slicing Packet Network
  • PDN Packet Transport Network
  • SDH Synchronous Digital Hierarchy
  • the switching module is used to control and forward the services of private network users.
  • the switching module can be divided into The same functional categories include but are not limited to data service functional categories and voice service functional categories.
  • the switching module equipment includes but is not limited to user plane function (UPF), private network core network equipment, long-term evolution voice bearer (Voice over Long-Term Evolution, VoLTE) IP Multimedia Subsystem (IP Multimedia Subsystem, IMS) equipment.
  • UPF user plane function
  • private network core network equipment private network core network equipment
  • VoLTE long-term evolution voice bearer
  • IP Multimedia Subsystem IP Multimedia Subsystem
  • the computing application module is used to provide the deployment capability of private network business applications.
  • the computing application module can be further divided into different functional categories, including but not limited to video monitoring functional categories and remote control functional categories.
  • the computing application module devices include but are not limited to servers and magnetic array devices.
  • the networking module realizes the internal and external data connection and corresponding security isolation of each functional module device.
  • the networking module can be further divided into different functional categories, including but not limited to switch functional category, router functional category, and firewall functional category.
  • the management module is used to collect and count the basic data of each functional module equipment, provide business data display (including but not limited to visual display based on functional module equipment, business process, user, operation status, location and other dimensions), manage and control all functional module equipment and rack operation control of this device (including but not limited to: abnormal alarm, operation control of each functional module equipment, rack operation control (such as opening and closing of rack doors), etc.).
  • module operation control including but not limited to judging the operation status of each functional module equipment according to the statistical data of each functional module equipment or the monitoring data of the monitoring module, and performing optimization control, such as shutting down an appropriate amount of equipment when the business is idle.
  • the management module can be further divided into different functional categories, including but not limited to data maintenance management functional category and management and control functional category.
  • the private network integration device can define each optional functional module according to each functional class dimension of the aforementioned optional functional modules; wherein the service module can include 2/4/5G access module, WLAN access module, optical fiber access module, SPN transmission module, PTN transmission module, SDH transmission module, data service switching module, voice service switching module, video surveillance computing application module, remote control computing application module, switch networking module, router networking module, firewall networking module, data maintenance management module, management and control management module, and the infrastructure module can include upper air supply cooling module, lower air supply cooling module, heat pipe backplane At least one of a refrigeration module, a fire protection module, a dynamic environment monitoring module, a video monitoring module, an AC power module, a DC power module and a connector module.
  • the service module can include 2/4/5G access module, WLAN access module, optical fiber access module, SPN transmission module, PTN transmission module, SDH transmission module, data service switching module, voice service switching module, video surveillance computing application module, remote control computing application module, switch networking module, router networking module, firewall networking module, data maintenance management module, management
  • each of the aforementioned optional functional modules (and their functional classes) corresponds to at least one module performance indicator
  • the module performance indicator is used to characterize the performance of a certain specific dimension of the optional functional module (and their functional classes).
  • the module performance indicators include but are not limited to access mode, transmission type, service type, data location, customer service application type, data isolation, management and maintenance mode, power mode, cooling mode, monitoring type, fire protection type, etc.
  • the service type includes but is not limited to data service, voice service, etc.
  • each module performance indicator includes but is not limited to characters, numbers, etc.
  • the correspondence between the optional functional modules and the module performance indicators can be referred to Table 1.
  • Table 1 for each module performance indicator, the corresponding optional functional module is marked.
  • the module requirement satisfaction of the optional functional module as a whole is determined by the module performance indicator satisfaction corresponding to the optional functional module, thereby selecting the required functional module so that the functions provided by the configured functional module can meet the user's private network service needs.
  • the private network service requirements can be converted according to the module performance indicators to obtain the module demand indicator value corresponding to the module performance indicators of the user, and the module demand indicator value can be determined according to the module demand indicator value.
  • the optional functional module with demand is determined as the functional module to be configured, so as to facilitate the subsequent selection of specific functional module equipment for the functional module to be configured so that it can realize the function of its functional module.
  • step 10 further includes:
  • Step 101 convert the private network service demand according to the module performance indicator to obtain the module demand indicator values corresponding to the private network service demand under the module performance indicator.
  • the demand value for each performance in the private network service demand is converted into the indicator value corresponding to the performance demand to obtain the module demand indicator value.
  • the performance requirement indicator value of the module performance indicator of the corresponding functional module is 0. Otherwise, if the user's private network service demand has a certain functional requirement, the module requirement indicator value of the module performance indicator of the corresponding functional module is assigned to the corresponding defined requirement value; if the user's private network service demand does not have an indicator requirement for a certain functional service, the module requirement indicator value of the module performance indicator of the corresponding functional module is assigned to the parameter in its typical scenario or a smaller value greater than 0. Otherwise, if the user's private network service demand has an indicator requirement for a certain functional service, the module requirement indicator value of the module performance indicator of the corresponding functional module is assigned to the private network service requirement value.
  • the user's private network service demand is decomposed into the corresponding module requirement indicator value with reference to each module performance indicator of each functional module, which can be achieved by manual decomposition or by machine matching demand model.
  • Step 102 Determine the function module to be configured from the optional function modules according to the module requirement index value.
  • the module requirement index value corresponding to the private network service demand contains any module performance index of any functional module.
  • the functional module is selected, that is, as long as the user has a demand under a certain module performance index, all optional functional modules corresponding to the module performance index are screened out as functional modules to be configured; when the module requirement index value does not contain any module performance index except for power If any module performance index of any functional module other than the source module and the connector module is not selected, the functional module is not selected, and the user's private network service requirements need to be verified and re-obtained.
  • the module demand index value corresponding to a certain module performance index is 0, it can be regarded that the user has no demand for the performance corresponding to the module performance index.
  • the optional functional module may have different module performance indicators used to evaluate their performance.
  • the optional functional module is a cooling module
  • its corresponding module performance indicator includes the cooling type. Therefore, the optional functional module corresponding to the module performance indicator refers to a module that has the performance corresponding to the module performance indicator.
  • Step 20 Determine the device to be configured corresponding to the functional module to be configured from multiple optional devices according to the private network service requirements and the device performance indicators corresponding to the functional module to be configured; the device performance indicators are used to characterize the private network service capabilities that the optional devices can provide.
  • the device selection of the module to be configured is performed based on the satisfaction of the requirements of the device performance indicators corresponding to the functional module to be configured, thereby selecting the required module device to be configured so that the functions provided by the configured module device to be configured can meet the user's private network service requirements.
  • the private network service requirements can be converted according to the equipment performance indicators to obtain the equipment requirement indicator values corresponding to the user under the equipment performance indicators, and the equipment to be configured can be determined from the optional devices according to the satisfaction of the equipment requirement indicator values, so as to facilitate the subsequent specific equipment configuration of the functional module equipment to be configured, so that it can realize and meet the functions of its modules.
  • the corresponding equipment performance indicators can be pre-defined for each optional functional module in the private network integration device.
  • the equipment performance indicators are used to characterize the equipment capability measurement uniformly applicable to each optional equipment corresponding to the functional module.
  • the equipment capability refers to the ability to meet the performance of the functional module, so as to select functional module equipment that matches the business and satisfies the capabilities according to the customer's business needs.
  • the device performance indicators can be attributed to a single functional module or multiple functional modules.
  • Functional modules include but are not limited to supported terminal types, access methods, coverage, access restrictions, transmission types, transmission distances, service types, data locations, customer service application types, data isolation, protection levels, slice requirements and types, single-user traffic, number of users, concurrency rate, number of sessions, service continuity requirements, number of applications carried, rate, bandwidth, delay, reliability, security level, jitter, packet loss rate, disaster recovery methods, management and maintenance types, management and maintenance capabilities, power methods, power capabilities, backup time, cooling methods, cooling capabilities, air supply methods, monitoring methods, monitoring capabilities, fire protection types, fire protection capabilities, interface types, size factors, weight factors, equipment power supply methods, etc.
  • data location includes but is not limited to control plane and user plane data that does not leave the park, user plane data that does not leave the park, and user plane data that can leave the park, etc.
  • disaster recovery methods include but are not limited to POOL mode, 1+1 backup, N+1 backup, etc.
  • power methods include but are not limited to switching power supply, UPS, rectifier, inverter, power distribution module, etc.
  • cooling methods include but are not limited to air cooling, water cooling, etc.
  • air supply methods include but are not limited to front airflow and rear airflow, bottom airflow and top airflow, left airflow and right airflow, etc.
  • interface types include but are not limited to optical fiber port, network cable port, 2M port, circuit breaker, PDU strip, etc.
  • the relationship between the device performance indicators and the optional functional modules may refer to FIG. 3 .
  • an indicator weight is defined for each device performance indicator, which is used to reflect the degree of influence of the result of the device performance indicator value of each optional device matching the device requirement indicator value of the user on the selection of the optional device when selecting the device of the functional module to be configured.
  • a device performance indicator with a larger indicator weight its influence on the selection of an optional device is greater, that is, the probability of the optional device whose device performance indicator matches the device requirement indicator value is greater; for a device performance indicator with a smaller indicator weight, its influence on the selection of an optional device is smaller, that is, the probability of the optional device whose device performance indicator matches the device requirement indicator value is smaller.
  • Each device performance indicator defines its indicator superposition properties, which are used in optional device selection and device During configuration, whether the device capabilities corresponding to the device performance indicators can be realized by superimposing multiple devices; that is, the device performance indicators with indicator superposition attributes can be realized by using multiple devices at the same time, and the device performance indicators without indicator superposition attributes cannot be realized by using multiple devices at the same time.
  • Device performance indicators with indicator superposition attributes are usually device performance indicators with additive quantity characteristics, such as the number of sessions, the number of carried applications, the rate, and the bandwidth; device performance indicators without indicator superposition attributes are usually non-quantitative and device performance indicators with multiplicative quantity characteristics, such as mode, type, jitter, packet loss rate, latency, etc.
  • the private network service requirements can be converted according to the equipment performance indicators to obtain the equipment requirement indicator values under each equipment performance indicator.
  • the indicator satisfaction of the optional equipment can be determined based on the matching of the equipment requirement indicator values and the equipment performance indicator values of each optional equipment under each equipment indicator.
  • the optional equipment can be screened according to the indicator satisfaction to obtain the equipment to be configured.
  • step 20 further includes:
  • Step 201 convert the private network service demand according to the device performance indicator to obtain the device demand indicator value corresponding to each of the device performance indicators.
  • the demand value for each performance in the private network service demand is converted into the indicator value corresponding to the performance to obtain the equipment demand indicator value.
  • the device requirement index value corresponding to the device performance index is 0; otherwise, if the user's private network service demand has a certain functional requirement, then the device requirement index value corresponding to the device performance index is assigned to the corresponding defined requirement value; if the user's private network service demand does not have an index requirement for a certain functional service, then the device requirement index value corresponding to the device performance index is assigned to the parameter in its typical scenario or a smaller number greater than 0. Otherwise, if the user's private network service demand has an indicator requirement for a certain functional service, the device requirement indicator value corresponding to the device performance indicator is assigned to the private network service demand value.
  • the user's private network service demand is decomposed into corresponding device requirement indicator values with reference to each functional module and each device performance indicator, which can be achieved through manual decomposition or machine matching demand model.
  • the corresponding device requirement indicator values can be assigned to the private network service demand values according to the decomposition in typical scenarios, or they can be assigned accordingly according to the module requirement indicator values of each functional module.
  • Step 202 Determine the device to be configured from the optional devices according to the device requirement index value and the device performance index values corresponding to the optional devices under the device performance index.
  • the corresponding device requirement indicator value is compared with the device performance indicator value of each optional device under the device performance indicator to obtain the indicator satisfaction status of the optional device for the device performance indicator.
  • the selection weight of the optional device is determined according to the satisfaction of the index values under all device performance indicators corresponding to the module to be configured. Specifically, if there is an optional device that can meet all the corresponding device requirement index values, the selection weight of the optional device is assigned according to the index weight corresponding to the satisfied device requirement index value, that is, the greater the index weight corresponding to the satisfied device requirement index value, the greater the selection weight of the optional device.
  • the indicator weight is used to characterize the influence of the matching degree of the device performance indicator on the overall module performance satisfaction of the module to be configured. It is easy to understand that the larger the indicator weight, the more decisive it is for whether the device requirement indicator value is met and whether the module performance of the module to be configured after the configuration is completed can meet the module requirement indicator.
  • step 202 further includes:
  • Step 2021 For each of the optional devices, determine the indicator satisfaction status of the optional device according to the device performance indicator value and the device requirement indicator value.
  • the device performance indicator value is compared with the device requirement indicator value.
  • the indicator satisfaction of the optional device under the device performance indicator is determined to be satisfied, thereby obtaining the indicator satisfaction of the optional device under all device performance indicators.
  • the index satisfaction of the optional device under the device performance index is determined to be unsatisfied, and it cannot be selected by the function module to be configured.
  • the index satisfaction of the optional device under the device performance index is determined to be unsatisfied, and it cannot be selected by the function module to be configured.
  • Step 2022 Determine the selection weight of the optional equipment according to the indicator satisfaction status and the indicator weight corresponding to the equipment requirement indicator value.
  • the index weight that can meet the device requirement index value can be correspondingly added to the selection weight corresponding to the optional device, that is, the more device performance indicators that are met, the greater the index weight, and the greater the selection weight of the optional device.
  • step 2022 further includes:
  • Step 20221 When it is determined that the device performance index value satisfies the device requirement index value, the selection weight of the optional device is determined according to the index weights corresponding to all the device requirement index values satisfied by the optional device.
  • the optional device when it is determined that the optional device can meet all the device requirement index values corresponding to it in the device to be configured, for example, when the module to be configured corresponds to device performance indexes A, B, and C, wherein the optional device S1 may correspond to device performance indexes A, B, and C, and when S1 can simultaneously meet A, B, and C, the sum of the index weights corresponding to all the device requirement index values met by the optional device is determined as the selection weight, that is, A, B, and C. The sum of the indicator weights corresponding to B and C is determined as the selection weight of S1.
  • the selection weight of the optional equipment is 0, and it cannot be selected by the function module to be configured.
  • the selection weight of the optional equipment is 0, and it cannot be selected by the function module to be configured.
  • step 2022 further includes:
  • Step 20222 When the device performance indicator value corresponding to the optional device does not meet the device requirement indicator value, determine the indicator superposition attribute corresponding to the device performance indicator; the indicator superposition attribute is used to characterize whether the device performance indicator can be met by using multiple optional devices at the same time.
  • the module to be configured corresponds to device performance indicators A, B, and C
  • some device performance indicators such as indicator C can be accumulated by superimposing devices, such as using multiple devices at the same time to achieve the satisfaction of device performance.
  • the capability of the optional device under the device performance indicator can be further normalized and then weighted summed with the indicator weight, so as to more accurately determine the device to be configured, and avoid ignoring the optional device with the possibility of meeting the performance after superposition because a single device cannot meet all its corresponding indicators, thereby improving the accuracy of device configuration in the functional module.
  • the normalized capability of the equipment performance indicator the equipment performance indicator capability/the maximum capability of the equipment performance indicator of the optional equipment with the same function.
  • Step 20223 Determine based on the equipment performance index and its index superposition attribute and index weight The selection weight.
  • the selection weight of the optional device is 0; otherwise, if the device performance indicator value has the capability required by the device requirement indicator value, the normalized capability of the device performance indicator is 1.
  • the selection weight of the optional device is 0; otherwise, if the device performance indicator value is better than the optional device of the device requirement indicator value, the normalized capability of the device performance indicator is 1.
  • the normalized capability of the device performance indicator the capability of the device performance indicator of the device/the maximum capability of the device performance indicator of the optional device with the same function; otherwise, if the device performance indicator value is better than the optional device of the device requirement indicator value, the normalized capability of the device performance indicator is 1.
  • the selection weight of the optional equipment ⁇ the equipment performance index value of the equipment meets the situation * the normalized capability of the equipment performance index of the equipment *
  • the indicator weight defined by the equipment performance indicator wherein the satisfaction of the equipment performance indicator value of the equipment is assigned a corresponding value according to whether the equipment performance indicator value is better than the equipment requirement indicator value. For example, for equipment performance indicators without indicator superposition attributes, if it is not better than, that is, not satisfied, it is assigned a value of 0; for equipment performance indicators with indicator superposition attributes, if it is not better than, that is, not satisfied, it is assigned a value of the equipment performance indicator capability/the maximum value of the equipment performance indicator capability of the optional equipment with the same function; correspondingly, if it is better than and meets, it is assigned a value of 1.
  • Step 2023 Determine the device to be configured from the optional devices according to the selection weight.
  • the device requirement index value based on the matching of all device performance index values of all optional devices of the function module, and select the device with the largest weight among all optional devices of the function module to be configured as the device to be configured; if the selection weights of multiple devices of the function module are the same, the device with the largest weight is selected. Select the device with the largest indicator weight, or select the device that matches the most indicator weights.
  • the access module has multiple functional classes such as 4G access functional devices, 5G access functional devices, WLAN access functional devices, and wired local area network access devices
  • the power module has multiple functional classes such as UPS, switching power supply, rectifier, inverter, and power distribution module.
  • the same functional class of the same functional module may have one or more devices for selection during configuration, such as devices with different capabilities, devices from different manufacturers, etc. Therefore, for each functional class, the optional device with the largest selection weight under the functional class can be determined as the device to be configured, so that the module function of the module to be configured can be satisfied by satisfying the functional class.
  • Step 30 Perform equipment configuration and rack deployment on the equipment to be configured to obtain a configured private network integrated device.
  • the configuration information of the equipment to be configured is generated, and according to the deployment requirement information of the user, the equipment to be configured is distributed and deployed on the corresponding target rack to obtain the configured private network integrated device.
  • the configuration information of the equipment to be deployed may include the equipment hardware configuration, port configuration, equipment quantity, power supply configuration, power consumption, equipment size, weight, air supply type and other information corresponding to each configuration function module device in the private network integrated device; the deployment requirement information is determined according to the private network service requirements, the hardware characteristics of the deployed equipment and the environmental resources of the computer room.
  • step 30 further includes:
  • Step 301 Generate configuration information of the device to be configured according to the device performance indicator value, the device requirement indicator value corresponding to the private network service requirement and the configuration algorithm of the device to be configured.
  • the configuration information such as the configuration quantity and the board port is determined.
  • the configuration algorithm of the device is used to configure according to the capability characteristics of the device itself, or according to the highest requirement condition of multiple device demand index values. Or configure according to a device requirement indicator value with an indicator superposition attribute.
  • Step 302 Distribute and deploy the devices to be configured onto corresponding target racks according to the user's deployment requirement information to obtain the configured private network integrated device; wherein the deployment requirement information is determined based on the private network service requirements, the hardware characteristics of the deployed equipment, and the environmental resources of the computer room.
  • the deployment requirement information obtains backup requirements, cooling requirements, rack size, computer room load-bearing requirements, power supply method, size, weight, power consumption, spacing and other constraints of the equipment to be configured based on the private network business requirements, deployment equipment hardware characteristics and computer room environmental resources. Based on the constraints, the equipment to be configured is distributed and deployed on the corresponding target rack.
  • the private network service requirements of the user are matched with the module performance indicators corresponding to the plurality of optional function modules and their function classes, respectively, to obtain the function modules to be configured and their function classes corresponding to the user, the method comprising:
  • the function modules to be configured and their function classes are determined from the optional function modules and their function classes according to the module requirement index value.
  • the configuration method of the private network integrated device may also refer to FIG. 4 .
  • S0 defines the module performance indicators, equipment performance indicators, indicator weights and indicator superposition properties of each functional module equipment of the private network integration device, and obtains the customer's existing functional module equipment capabilities by referring to the module performance indicators and equipment performance indicators.
  • the business needs of private network customers are decomposed with reference to the defined module performance indicators and equipment performance indicators to obtain the corresponding module demand indicator values and equipment demand indicator values, which are used as the demand indicator items of each functional module equipment of the private network integrated device.
  • the module after decomposing the module performance indicators of each business module and the business needs of the private network customers Match the demand indicator values and select the appropriate business module for the private network integration device.
  • S3 matches the equipment performance index values of all devices in the selected business module with the equipment demand index values after decomposing the business needs of the private network customers, selects equipment with business matching and sufficient capabilities for the selected business module, and generates the configuration information of each device in the required business module based on the configuration algorithm of the business module equipment, the business needs of the private network customers and the capabilities of the customer's existing business module equipment.
  • S8 based on backup requirements, cooling requirements, rack size, room load requirements, power supply mode, etc., and based on the size, weight, power consumption, spacing, etc. of the selected infrastructure module equipment, generate rack installation of the selected infrastructure module equipment of this device. In the case of less infrastructure equipment, it can be placed in different areas in the same rack with the business module equipment.
  • the configuration information of the device includes but is not limited to hardware configuration, port configuration, device quantity, power configuration, power consumption, device size, weight, air supply method, etc.
  • the configuration method of this private network integrated device can be deployed on the rack based on the following rack deployment principles, see Table 2 for details.
  • the process of configuring the private network integrated device may also refer to FIG. 5a and FIG. 5b , and includes the following steps P01-P74:
  • P01 defines the module performance indicators and equipment performance indicators of each functional module of the private network integrated device, and defines the indicator weights and indicator superposition properties of the equipment performance indicators.
  • the structure of the private network integrated device can refer to Figure 2.
  • the equipment performance index value of the customer's existing functional module equipment capability corresponding to the customer's existing business resource equipment and equipment performance index. If the customer does not have existing functional module equipment capability for some functional modules, the equipment performance index value of the customer's existing functional module equipment capability for the functional module is 0.
  • the module requirement index value includes any module performance index of any business module, the corresponding business module is selected.
  • the indicator weight assignment of its corresponding device performance indicator the normalized capability of the device performance indicator * its corresponding predefined indicator weight.
  • the device selection weight the sum of the index weights of the corresponding device performance indicators of all its matching device requirement index values, and select the device with the largest selection weight as the business module device that matches the device requirement index value corresponding to the private network business demand.
  • P27 calculate the configuration requirement index value of the equipment selected by the business module selected by this device, which is the equipment requirement index value corresponding to the private network business demand - the equipment performance index value of the customer's existing business module equipment capability.
  • P28 based on the configuration algorithm of the selected business module equipment, generates the configuration information of each device of the required business module according to the configuration requirement index value of the selected device of the selected business module.
  • P29 based on backup requirements, cooling requirements, rack size, computer room load-bearing requirements, power supply method, etc., and based on the size, weight, power consumption, spacing, etc. of the selected equipment, generate the rack installation of the business module part of this device.
  • P32 determines whether the module requirement index value corresponding to the private network service demand includes any module performance index of the refrigeration module.
  • the required refrigeration capacity of the device is output to the customer.
  • the indicator weight assignment of its corresponding equipment performance indicator the normalized capacity of the equipment performance indicator * its corresponding predefined indicator weight.
  • the device selection weight the sum of the index weights of the corresponding device performance indicators of all its matching device demand index values, and select the device with the largest selection weight as the refrigeration module device that matches the device demand index value corresponding to the private network service demand.
  • the equipment demand index value is realized by performing a union operation on the equipment demand index value of the refrigeration module in step P12 and the refrigeration capacity demand required by the device.
  • P37 based on the configuration algorithm of the selected refrigeration module equipment, generates the configuration information of each device of the required refrigeration module according to the configuration requirement index value of the selected device of the selected refrigeration module.
  • P43 determines whether the equipment performance index of all equipment of the power module is better than the equipment requirement index value.
  • the indicator weight assignment of the corresponding equipment performance indicator the normalized capability of the equipment performance indicator * its corresponding predefined indicator weight.
  • the device selection weight the sum of the index weights of the corresponding device performance indicators of all matching device requirement index values. Select the selection weight.
  • the device with the largest weight is the power module device that matches the device requirement index value corresponding to the private network service demand.
  • P46 based on the configuration algorithm of the power module device, generates the configuration information of each device of the required power module according to the configuration requirement index value of the device selected by the power module.
  • P47 based on backup requirements, cooling requirements, rack size, room load-bearing requirements, power supply method, etc., based on the size, weight, power consumption, spacing, etc. of the selected equipment, generate the rack installation of the cooling module and power module parts of this device; among them, when there are fewer power module and cooling module devices, they can be placed in different areas in the same rack as the business module devices; it is necessary to properly reserve the installation position of the corresponding monitoring module equipment, which can be considered according to the maximum size of the purchased monitoring module equipment, or can be achieved according to the ratio of the height of the selected cooling module and power module equipment * the height of the monitoring equipment. This ratio can be achieved by obtaining the ratio value or by matching the capacity scenario model.
  • P51 determine whether the module requirement index value corresponding to the private network service demand includes any module performance index of the fire protection module. If the module requirement index value does not include any module performance index of the fire protection module, go to P61, otherwise, go to P52.
  • the indicator weight assignment of its corresponding equipment performance indicator the normalized capability of the equipment performance indicator * its corresponding predefined indicator weight.
  • P56 based on the configuration algorithm of the selected fire protection module equipment, generates the configuration information of each device of the required fire protection module according to the configuration requirement index value of the selected device of the selected fire protection module.
  • P57 based on backup requirements, cooling requirements, rack size, room load-bearing requirements, power supply method, etc., based on the size, weight, power consumption, spacing, etc. of the selected equipment, generate the rack installation of the fire protection module part of this device; among them, when there are fewer fire protection module devices, they can be placed in different areas in the same rack as the business module devices; it is necessary to properly reserve the installation position of the corresponding monitoring module equipment, which can be considered according to the maximum size of the purchased monitoring module equipment, or can be achieved according to the ratio of the height of the selected fire protection module equipment * the height of the monitoring equipment. This ratio can be achieved by obtaining the ratio value or by matching the capacity scenario model.
  • P62 determine whether the module requirement index value corresponding to the private network service demand includes any If the customer's business demand indicators do not include any module performance indicators of the monitoring module, execute P63a to output the configuration demand indicators of the monitoring module equipment required by this device to the customer.
  • the customer business demand indicator includes any module performance indicator of the monitoring module, execute P63b to determine whether the device performance indicators of all devices in the selected monitoring module are better than the device demand indicator values corresponding to the private network business demand.
  • the indicator weight assignment of the corresponding equipment performance indicator the normalized capability of the equipment performance indicator * its corresponding predefined indicator weight.
  • the device selection weight the sum of the index weights of the corresponding device performance indicators of all its matching device demand index values. Select the device with the largest selection weight as the monitoring module device that matches the device demand index value corresponding to the private network service demand.
  • the rack arrangement can be carried out according to the principle that the monitoring module device and the monitored device are installed in the same rack.
  • the configuration requirement index value is used to generate the configuration information of the connector module equipment; among them, according to the interface type and interface quantity of each functional module equipment, the rack width and the size of the connectors such as the power circuit breaker/fuse, PDU jack, optical fiber, network cable, 2M cable, etc., based on different types and quantity combinations, several connector module configuration templates can be defined; each rack can match and select the appropriate plug-in module configuration template according to the equipment situation of the rack.
  • P73 based on the number of device interface types per rack of the device, generates the configuration of each rack connector module and the module device connected to each port, determines the color spectrum of the connector module port and generates a port label.
  • P74 based on the equipment ports and mounting conditions of each functional module, determine the cable color spectrum, label and length of the device.
  • the length of the external cable needs to be determined by obtaining the length of the cable outside the rack.
  • the embodiment of the present invention obtains the to-be-configured function module corresponding to the user by matching the private network service demand of the user with the module performance indicators respectively corresponding to a plurality of optional function modules; the to-be-configured function module is at least one of the optional function modules; the module performance indicator is used to characterize the private network service capability that the optional function module can provide; the to-be-configured device corresponding to the to-be-configured function module is determined from a plurality of optional devices according to the private network service demand and the device performance indicator corresponding to the to-be-configured function module; the device performance indicator is used to characterize the private network service capability that the optional device can provide; the to-be-configured device is configured and rack-deployed to obtain a configuration completion
  • the private network integrated device can convert the user's private network business needs according to the module performance indicators, and obtain the corresponding module demand indicator values, so as to determine the functional modules that need to be configured, and then convert the private network business needs according to the equipment performance indicators corresponding to the
  • FIG. 6 shows a structure diagram of a configuration device for a private network integrated device provided in an embodiment of the present invention.
  • the apparatus 40 includes: a module matching module 401 , a device matching module 402 , and a device configuration module 403 .
  • the module matching module 401 is configured to match the private network service requirements of the user with the module performance indicators corresponding to the multiple optional functional modules, and obtain the function module to be configured corresponding to the user; the function module to be configured is at least one of the optional functional modules; the module performance indicator is used to characterize the private network service capability that the optional functional module can provide;
  • the device matching module 402 is configured to determine the device to be configured corresponding to the function module to be configured from a plurality of optional devices according to the private network service requirements and the device performance indicators corresponding to the function module to be configured; the device performance indicators are used to characterize the private network service capabilities that the optional devices can provide;
  • the device configuration module 403 is configured to perform device configuration and rack deployment on the device to be configured to obtain a configured private network integrated device.
  • the operation process of the configuration device of the private network integrated device provided in the embodiment of the present invention is roughly the same as the operation process of the aforementioned method embodiment, and will not be repeated here.
  • the configuration device of the private network integration device obtains the function module to be configured corresponding to the user by matching the user's private network service demand with the module performance indicators corresponding to multiple optional function modules respectively; the function module to be configured is at least one of the optional function modules; the module performance indicator is used to characterize the private network service capability that the optional function module can provide; the to-be-configured device corresponding to the to-be-configured function module is determined from multiple optional devices according to the private network service demand and the device performance indicator corresponding to the to-be-configured function module; the device performance indicator is used to characterize the private network service capability that the optional device can provide; the to-be-configured device is configured and rack-deployed to obtain a configured private network integration device, which can realize the conversion of the user's private network service demand according to the module performance indicator to obtain the corresponding module demand indicator value, thereby determining the function module to be configured, and then converting the private network service demand according to the device performance indicator corresponding to the to-be-con
  • FIG7 shows a schematic diagram of the structure of the configuration device of the private network integration device provided in an embodiment of the present invention.
  • the specific embodiment of the present invention does not limit the specific implementation of the configuration device of the private network integration device.
  • the configuration equipment of the private network integrated device may include: a processor (processor) 502, a communication interface (Communications Interface) 504, a memory (memory) 506, and a communication bus 508.
  • the processor 502, the communication interface 504, and the memory 506 communicate with each other via the communication bus 508.
  • the communication interface 504 is used to communicate with other devices such as a client or other server network elements.
  • the processor 502 is used to execute the program 510, which can specifically execute the relevant steps in the above-mentioned configuration method embodiment for the private network integration device.
  • the program 510 may include program code including computer executable instructions.
  • Processor 502 may be a central processing unit (CPU), or an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of the present invention.
  • the one or more processors included in the configuration device of the private network integration device may be processors of the same type, such as one or more CPUs; or processors of different types, such as one or more CPUs and one or more ASICs.
  • Memory 506 is used to store program 410.
  • Memory 506 may include high-speed RAM memory, and may also include non-volatile memory (non-volatile memory), such as at least one disk storage.
  • the program 510 can be specifically called by the processor 502 to enable the configuration device of the private network integrated device to perform the following operations:
  • the module performance indicators corresponding to the user's private network service requirements and multiple optional functional modules Matching is performed to obtain a function module to be configured corresponding to the user; the function module to be configured is at least one of the optional function modules; the module performance indicator is used to characterize the private network service capability that the optional function module can provide;
  • the device performance indicators are used to characterize the private network service capabilities that the optional devices can provide;
  • the equipment to be configured is configured and rack-mounted to obtain a configured private network integrated device.
  • the operation process of the configuration device of the private network integrated device provided in the embodiment of the present invention is roughly the same as the operation process of the aforementioned method embodiment, and will not be repeated here.
  • the configuration device of the private network integrated device obtains the function module to be configured corresponding to the user by matching the private network service demand of the user with the module performance indicators corresponding to multiple optional function modules; the function module to be configured is at least one of the optional function modules; the module performance indicator is used to characterize the private network service capability that the optional function module can provide; the device to be configured corresponding to the function module to be configured is determined from multiple optional devices according to the private network service demand and the device performance indicator corresponding to the function module to be configured; the device performance indicator is used to characterize the private network service capability that the optional device can provide; the device to be configured is configured and the rack assembly is performed The private network integration device is deployed to obtain a configured private network.
  • the equipment configuration of the private network integration device that meets the user's specific private network needs can be quickly completed, thereby improving the configuration efficiency of the private network integration device and the user experience.
  • An embodiment of the present invention provides a storage medium, wherein the storage medium stores at least one executable An executable instruction, when executed on a configuration device of a private network integration device, enables the configuration device of the private network integration device to execute a configuration method of the private network integration device in any of the above method embodiments.
  • the executable instructions can be specifically used to enable the configuration device of the private network integrated device to perform the following operations:
  • the function module to be configured is at least one of the optional functional modules;
  • the module performance indicator is used to characterize the private network service capability that the optional functional module can provide;
  • the device performance indicators are used to characterize the private network service capabilities that the optional devices can provide;
  • the equipment to be configured is configured and rack-mounted to obtain a configured private network integrated device.
  • the operation process of the executable instructions stored in the storage medium provided in the embodiment of the present invention is substantially the same as the operation process of the aforementioned method embodiment, and will not be described in detail.
  • An embodiment of the present invention provides a configuration device for a private network integrated device, which is used to execute the configuration method of the private network integrated device.
  • An embodiment of the present invention provides a computer program, which can be called by a processor to enable a configuration device of a private network integrated device to execute a configuration method of a private network integrated device in any of the above method embodiments.
  • An embodiment of the present invention provides a computer program product, which includes a computer program stored on a storage medium, and the computer program includes program instructions.
  • the program instructions When the program instructions are run on a computer, the computer executes the configuration method of the private network integrated device in any of the above method embodiments.
  • modules in the devices in the embodiments may be adaptively changed and arranged in one or more devices different from the embodiments.
  • the modules or units or components in the embodiments may be combined into one module or unit or component, and may be divided into a plurality of submodules or subunits or subcomponents. Except that at least some of such features and/or processes or units are mutually exclusive, all features disclosed in this specification (including the accompanying claims, abstracts and drawings) and all processes or units of any method or device disclosed in this manner may be combined in any combination. Unless otherwise expressly stated, each feature disclosed in this specification (including the accompanying claims, abstracts and drawings) may be replaced by an alternative feature providing the same, equivalent or similar purpose.
  • the embodiment of the present application provides a configuration method, device, equipment and storage medium for a private network integrated device, the configuration method of the private network integrated device comprising: matching the private network service requirements of a user with module performance indicators corresponding to a plurality of optional functional modules, obtaining a to-be-configured functional module corresponding to the user; the to-be-configured functional module is at least one of the optional functional modules; the module performance indicator is used to characterize the private network service capability that the optional functional module can provide; determining the to-be-configured device corresponding to the to-be-configured functional module from a plurality of optional devices according to the private network service requirements and the device performance indicator corresponding to the to-be-configured functional module; the device performance indicator is used to characterize the private network service capability that the optional device can provide;
  • the equipment is configured and installed in the rack to obtain a configured private network integrated device, which can convert the user's private network business needs according to the module performance indicators to obtain the corresponding module demand indicator values, thereby determining the functional modules

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Abstract

本发明实施例涉及网络通信技术领域,公开了一种专网一体化装置的配置方法,该方法包括:将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到用户对应的待配置功能模块;待配置功能模块为可选功能模块中的至少一个;模块性能指标用于表征可选功能模块所能提供的专网业务能力;根据专网业务需求以及待配置功能模块对应的设备性能指标从多个可选设备中确定待配置功能模块对应的待配置设备;设备性能指标用于表征可选设备所能提供的专网业务能力;对待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。通过上述方式,本发明能够快速实现不同专网场景下专网一体化装置的配置及搭建。

Description

专网一体化装置的配置方法、装置、设备以及存储介质
相关申请的交叉引用
本申请要求在2022年09月26日提交中国专利局、申请号为202211176405.1、申请名称为“专网一体化装置的配置方法、装置、设备以及计算机存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明实施例涉及网络通信技术领域,涉及但不限于一种专网一体化装置的配置方法、装置、设备以及存储介质。
背景技术
专网部署中面临基础设施薄弱、实施周期长等各种挑战;不同场景应用需求对通信设备配置有差异;针对不同行业专网用户的业务需求,快速自动配置专网一体化装置有利于占据竞争优势。
相关技术中,专网一体化装置的配置装置或系统均是针对某一行业的专网场景,比如基于5G通信的煤岩动力灾害监测预警可视化系统、适合工作于矿山井区的恶劣环境的专用移动通信系统以及基于5G网络的智慧物流园区管理系统等,上述系统均由多个功能模块或功能系统组成。
由于相关技术中的专网一体化装置的配置技术只能针对特定的单一场景,无法快速适配和复制到不同行业专网用户的业务需求场景中,由此导致专网一体化装置的配置的效率较低、配置的用户体验不佳。
发明内容
鉴于上述问题,本发明实施例提供了一种专网一体化装置的配置方法,用于解决现有技术中存在的专网一体化装置的配置的效率较低、配置的用 户体验不佳的问题。
本发明实施例提供了一种专网一体化装置的配置方法,所述方法包括:
将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;
对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
在一种可选的方式中,所述方法还包括:
根据所述模块性能指标对所述专网业务需求进行转换,得到所述专网业务需求在所述模块性能指标下分别对应的模块需求指标值;
根据所述模块需求指标值从所述可选功能模块中确定所述待配置功能模块。
在一种可选的方式中,所述方法还包括:
根据所述设备性能指标对所述专网业务需求进行转换,得到所述专网业务需求在各个所述设备性能指标下分别对应的设备需求指标值;
根据所述设备需求指标值以及所述可选设备在所述设备性能指标下分别对应的设备性能指标值从所述可选设备中确定所述待配置设备。
在一种可选的方式中,所述方法还包括:
针对各个所述可选设备,根据所述设备性能指标值以及所述设备需求指标值确定所述可选设备的指标满足情况;
根据所述指标满足情况以及所述设备需求指标值对应的指标权重确定所述可选设备的选择权重;
根据所述选择权重从所述可选设备中确定所述待配置设备。
在一种可选的方式中,所述方法还包括:
在确定所述设备性能指标值满足所述设备需求指标值的情况下,根据所述可选设备所满足的所有所述设备需求指标值对应的指标权重确定所述可选设备的选择权重。
在一种可选的方式中,所述方法还包括:
在所述可选设备对应的所述设备性能指标值不满足所述设备需求指标值的情况下,确定所述设备性能指标对应的指标叠加属性;所述指标叠加属性用于表征所述设备需求指标值是否能通过多台可选设备的同时使用来满足;
根据所述设备性能指标及其指标叠加属性和指标权重确定所述选择权重。
在一种可选的方式中,所述方法还包括:
根据所述设备性能指标值、所述专网业务需求对应的所述设备需求指标值和所述待配置设备的配置算法,生成待配置设备的配置信息;
根据用户的部署需求信息将所述待配置设备分布部署到对应的目标机架上,得到所述配置完成的专网一体化装置;其中,所述部署需求信息根据专网业务需求、部署设备硬件特性和机房环境资源情况确定。
本发明实施例提供了一种专网一体化装置的配置装置,包括:
模块匹配模块,配置为将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
设备匹配模块,配置为根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业 务能力;
设备配置模块,配置为对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
本发明实施例提供了一种专网一体化装置的配置设备,包括:
处理器、存储器、通信接口和通信总线,所述处理器、所述存储器和所述通信接口通过所述通信总线完成相互间的通信;
所述存储器配置为存放至少一可执行指令,所述可执行指令使所述处理器执行如任意一项所述的专网一体化装置的配置方法的操作。
本发明实施例提供了一种存储介质,所述存储介质中存储有至少一可执行指令,所述可执行指令使专网一体化装置的配置设备执行任意一项所述的专网一体化装置的配置方法的操作。
本发明实施例通过将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,能够实现根据模块性能指标对用户的专网业务需求进行转换,得到对应的模块需求指标值,从而确定需要配置的功能模块,根据待配置功能模块所对应的设备性能指标对专网业务需求进行转换,得到对应的设备需求指标值,从而从可选设备中选择能够满足对应功能模块设备需求指标值的设备,最后对所选择的设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,由此能够快速完成满足用户特定的专网需求的专网一体化装置的设备配置,提升了专网一体化装置的配置的效率以及用户体验。
上述说明仅是本发明实施例技术方案的概述,为了能够更清楚了解本发明实施例的技术手段,而可依照说明书的内容予以实施,并且为了让本发明实施例的上述和其它目的、特征和优点能够更明显易懂,以下特举本发明的具体实施方式。
附图说明
附图仅用于示出优选实施方式的目的,而并不认为是对本发明实施例的限制。而且在整个附图中,用相同的参考符号表示相同的部件。在附图中:
图1示出了本发明实施例提供的专网一体化装置的配置方法的流程示意图;
图2示出了本发明实施例提供的专网一体化装置的配置方法中的专网一体化装置的结构示意图;
图3示出了本发明实施例提供的专网一体化装置的配置方法中的设备性能指标的定义示意图;
图4示出了本发明另一个实施例提供的专网一体化装置的配置方法的流程示意图;
图5a示出了本发明另一个实施例提供的专网一体化装置的配置方法的具体流程示意图一;
图5b示出了本发明另一个实施例提供的专网一体化装置的配置方法的具体流程示意图二;
图6示出了本发明实施例提供的专网一体化装置的配置装置的结构示意图;
图7示出了本发明实施例提供的专网一体化装置的配置设备的结构示意图。
具体实施方式
下面将参照附图更详细地描述本发明的示例性实施例。虽然附图中显示了本发明的示例性实施例,然而应当理解,可以以各种形式实现本发明而不应被这里阐述的实施例所限制。
图1示出了本发明实施例提供的专网一体化装置的配置方法的流程图,该方法由计算机处理设备执行。该计算机处理设备可以包括手机、笔记本电脑等。如图1所示,该方法包括以下步骤:
步骤10:将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力。
在本发明的一个实施例中,图2示出了专网一体化装置可以包括的各个可选功能模块,如图2所示,可选功能模块可以分为业务模块和基础设施模块,其中,业务模块可以包括接入模块、传输模块、交换模块、计算应用模块、管理模块以及组网模块中的至少一项,基础设施模块可以包括制冷模块、消防模块、监控模块、电源模块以及接插件模块中的至少一项。对各个功能模块说明如下:
电源模块,用于通过供电引入或所在机房内的供电设备,获得专网一体化装置的供电输入,为本装置供电。在本装置配置多个机架的情况下,电源模块能够按需提供多路输出,为各机架供电。考虑到不同的专网机房供电条件和设备供电方式要求,电源模块可再分为不同的功能类,包括但不限于交流功能类、直流功能类。
电源模块在进行设备配置时,可根据本机架所有功能模块设备的接电方式及其功耗需求进行配置,并可根据本装置的剩余空间预留建议和各功 能模块设备配置情况(比如未达到功能模块设备的最大配置),预留一定功耗需求及接电端子需求。根据专网机房供电条件,电源模块可按需支持市电引入、不间断电源(Uninterruptible Power Supply,UPS)接入或直流接入;在本装置中的功能模块设备需要不同的供电方式的情况下,电源模块可满足交转直的整流功能、直转交的逆变功能;若专网业务可靠性要求较高,电源模块可按需配置蓄电池,在机房市电接入断电的情况下,可满足一定后备时间的电力输出。
接插件模块,用于提供本装置内功能模块设备间互联的标准连接及本装置对外连接的标准连接,包括电源插接件模块和信号插接件模块。电源插接件模块,按机架维度按需进行配置,输入为电源模块提供的电压电流输出,输出为本机架各功能模块设备所需的电源输入;电源接插件模块,可根据本机架各功能模块设备的接电方式和功耗需求,按需配置空开端子或电源分配单元(Power Distribution Unit,PDU)插孔等,并可根据本机架的剩余空间预留建议和各功能模块设备配置情况(比如未达到功能模块设备的最大配置),冗余一定比例的电源空开端子、熔丝或插孔、预留一定功耗需求。信号插接件模块,以机架维度按需进行配置,提供标准光纤、网线、2M线等接口,实现本机架内各功能模块设备间的数据通信连接、本机架内功能模块设备的跨机架间的数据通信连接、本机架内功能模块设备的对外数据通信连接;信号插接件模块,可根据本机架各功能模块设备对外带宽、接口类型按需配置,并可根据本机架的剩余空间预留建议和各功能模块设备配置情况(比如未达到功能模块设备的最大配置),冗余一定比例的光纤、网线、2M线等接口。根据各功能模块设备的接电端子数量和信号接口数量、机架宽度及电源空开/熔丝、PDU插孔、光纤、网线、2M线等接口的尺寸大小,基于不同的类型和数量组合,可定义若干接插件模块配置模板;每机架可根据本机架设备情况,匹配选择合适的插件模块配置模板。
监控模块,用于机房环境监控和基础设施功能模块监控。监控模块可再分为不同的功能类,包括但不限于动环监控功能类、视频监控功能类,其中动环监控功能类包括但不限于烟感、水浸、温湿度、电池夹、门磁、智能电源、智能UPS、智能空调、消防钢瓶压力等。
制冷模块,由配置的空调系统、本装置机架内的冷热风道实现,用于为本装置及其附近环境提供制冷,并实现其温度可控。制冷模块,可根据本机架所有功能模块设备制冷需求进行配置,并可根据本机架的剩余空间预留建议和各功能模块设备配置情况(比如未达到功能模块设备的最大配置),冗余制冷量需求。本装置的各机架的冷热通道及通风方式,需由本机架内各功能模块设备的通风方式确定,相同机架或同一机架的某一区域部署相同送风方式的设备。制冷模块可再分为不同的功能类,包括但不限于上送风功能类、下送风功能类、热管背板功能类。
消防模块,由配置的气体灭火装置实现,用于为本装置及其附近环境提供气体灭火;消防钢瓶的充装量、管道的选择,需考虑防护区体积等。消防模块,根据监控模块监测到的烟感异常或管理模块下达消防指令,进行气体灭火。
接入模块,用于为专网内用户提供网络接入。接入模块可再分为不同的功能类,包括但不限于2/4/5G功能类、无线局域网(Wireless Local Area Network,WLAN)功能类、光纤接入功能类。接入模块设备包括但不限于基带处理单元(Baseband Unit,BBU)、WLAN无线接入控制器(Access Point Controller,AC)、接入交换机、光纤接入设备。
传输模块,用于实现本装置对外远距离数据传输。传输模块可再分为不同的功能类,包括但不限于切片分组网(Slicing Packet Network,SPN)功能类、分组传送网(Packet Transport Network,PTN)功能类、同步数字体系(Synchronous Digital Hierarchy,SDH)功能类。
交换模块,用于实现专网用户的业务控制转发。交换模块可再分为不 同的功能类,包括但不限于数据业务功能类、语音业务功能类,交换模块设备包括但不限于用户面功能(User plane function,UPF)、专网核心网设备、长期演进语音承载(Voice over Long-Term Evolution,VoLTE)IP多媒体子系统(IP Multimedia Subsystem,IMS)设备。
计算应用模块,用于提供专网业务应用部署能力。计算应用模块可再分为不同的功能类,包括但不限于视频监控功能类、远程控制功能类,计算应用模块设备包括但不限于服务器、磁阵设备。
组网模块,实现各功能模块设备对内对外数据连接及相应的安全隔离。组网模块可再分为不同的功能类,包括但不限于交换机功能类、路由器功能类、防火墙功能类。
管理模块,用于采集统计各功能模块设备基础数据,提供业务数据展示(包括但不限于基于功能模块设备、业务流程、用户、运行状态、位置等维度的可视化展示),管理控制本装置所有功能模块设备及机架操作控制(包括但不限于:异常告警、各功能模块设备运行控制、机架操作控制(例如机架门的开合)等)。其中,模块运行控制,包括但不限于根据各功能模块设备的统计数据或者监控模块的监控数据,判断各功能模块设备运行状态,并进行优化控制,比如业务闲时关闭适量的设备。管理模块可再分为不同的功能类,包括但不限于数据维护管理功能类、管控控制功能类。
在本发明的另一个实施例中,专网一体化装置可按照前述各个可选功能模块的各个功能类维度进行各个可选功能模块的定义;其中,业务模块可以包括2/4/5G接入模块、WLAN接入模块、光纤接入模块,SPN传输模块、PTN传输模块、SDH传输模块、数据业务交换模块、语音业务交换模块、视频监控计算应用模块、远程控制计算应用模块、交换机组网模块、路由器组网模块、防火墙组网模块、数据维护管理模块、管控控制管理模块,基础设施模块可以包括上送风制冷模块、下送风制冷模块、热管背板 制冷模块、消防模块、动环监控模块、视频监控模块、交流电源模块、直流电源模块以及接插件模块中的至少一项。
在本发明的一个实施例中,前述各个可选功能模块(及其功能类)至少对应于一个模块性能指标,模块性能指标用于表征该可选功能模块(及其功能类)的某个特定维度的性能。具体地,模块性能指标包括但不限于接入方式、传输类型、业务类型、数据位置、客户业务应用类型、数据隔离、管理维护方式、动力方式、制冷方式、监控类型、消防类型等。其中,业务类型包括但不限于数据业务、语音业务等。
其中,每模块性能指标的取值,包含但不限于字符、数值等。
在本发明的再一个实施例中,可选功能模块与模块性能指标的对应关系可以参考表1,表1中针对各个模块性能指标,标注出了与其存在对应的可选功能模块。
表1

在本发明的一个实施例中,通过可选功能模块对应的模块性能指标的需求满足情况,确定该可选功能模块整体的模块需求满足情况,由此选择所需的功能模块,使得配置的功能模块所提供的功能能够符合用户的专网业务需求。
因此,可根据模块性能指标对专网业务需求进行转化,得到用户在所述模块性能指标下对应的模块需求指标值,根据所述模块需求指标值判定 用户是否对特定的可选功能模块存在需求,并将存在需求的可选功能模块确定为待配置功能模块,以便于后续对待配置功能模块进行具体的功能模块的设备选择,以使其能够实现其功能模块的功能。
因此,在本发明的一个实施例中,步骤10还包括:
步骤101:根据所述模块性能指标对所述专网业务需求进行转换,得到所述专网业务需求在所述模块性能指标下分别对应的模块需求指标值。
在本发明的一个实施例中,根据模块性能指标对应的指标值计算方法对专网业务需求中针对各项性能的需求值转化为该项性能需求对应的指标值,得到模块需求指标值。
若用户的专网业务需求无某功能需求,则其对应该功能模块的模块性能指标的性能需求指标值为0,否则,若用户的专网业务需求有某功能需求,则其对应该功能模块的模块性能指标的模块需求指标值赋值为相应的定义需求值;若用户的专网业务需求未对某功能业务有指标要求,则其对应该功能模块的模块性能指标的模块需求指标值赋值为其典型场景下的参数或某一个大于0的较小数值,否则,若用户的专网业务需求对某功能业务有指标要求,则其对应该功能模块的模块性能指标的模块需求指标值赋值为专网业务需求数值。用户的专网业务需求参照每功能模块每模块性能指标拆解为对应的模块需求指标值,可通过人工拆解,也可通过机器匹配需求模型实现。
步骤102:根据所述模块需求指标值从所述可选功能模块中确定所述待配置功能模块。
在本发明的一个实施例中,可以通过判断专网业务需求对应的模块需求指标值是否包含任意功能模块的任意模块性能指标,当模块需求指标值包含任意功能模块的任意模块性能指标,则选择该功能模块,即只要是用户在某模块性能指标下存在需求,则将该模块性能指标所对应的所有可选功能模块筛选出来,作为待配置功能模块;当模块需求指标值不包含除电 源模块和接插件模块外的任意功能模块的任意模块性能指标,则未选出功能模块,需核实并重新获取用户的专网业务需求。其中,在某项模块性能指标对应的模块需求指标值为0的情况下,则可以视作用户针对该项模块性能指标所对应的性能不存在需求。
容易理解的是,不同的可选功能模块所用来评估其性能的模块性能指标可能不同,如可选功能模块是制冷模块时,其对应的模块性能指标包括制冷类型。因此,模块性能指标对应的可选功能模块指的是具备实现该模块性能指标对应的性能的模块。
步骤20:根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力。
在本发明的一个实施例中,通过所述待配置功能模块对应的设备性能指标的需求满足情况进行待配置模块的设备选择,由此选择所需的待配置模块设备,使得配置的待配置模块设备所提供的功能能够符合用户的专网业务需求。
因此,可根据所述设备性能指标对所述专网业务需求进行转换,得到用户在所述设备性能指标下对应的设备需求指标值,根据设备需求指标值的满足情况从可选设备中确定所述待配置设备,以便于后续对待配置功能模块设备进行具体的设备配置,以使其能够实现并满足其模块的功能。
考虑到在进行待配置功能模块的设备选择时,不同的设备所能实现的模块性能的类型以及能力可能不同。因此,针对专网一体化装置中的各个可选功能模块可以预先定义其对应的设备性能指标,设备性能指标用于表征该功能模块对应的各个可选设备所统一适用的设备能力度量,设备能力指的是对功能模块的性能满足的能力,从而实现根据客户业务需求选择业务匹配、能力满足的功能模块设备。
在本发明的一个实施例中,设备性能指标可归属于单个功能模块或多 个功能模块。具体地,设备性能指标包括但不限于支持终端类型、接入方式、覆盖范围、接入限制、传输类型、传输距离、业务类型、数据位置、客户业务应用类型、数据隔离、保护等级、切片需求及类型、单用户流量、用户数、并发率、会话数、业务连续性要求、承载应用数、速率、带宽、时延、可靠性、安全等级、抖动、丢包率、容灾方式、管理维护类型、管理维护能力、动力方式、动力能力、后备时间、制冷方式、制冷能力,送风方式、监控方式、监控能力、消防种类、消防能力、接口类型、尺寸因素、重量因素、设备电源方式等。
其中,数据位置包括但不限于控制面和用户面数据不出园区、用户面数据不出园区、用户面数据可以出园区等;容灾方式包括但不限于POOL方式、1+1备份、N+1备份等;动力方式包括但不限于开关电源、UPS、整流器、逆变器、配电模块等;制冷方式包括但不限于风冷、水冷等;送风方式包括但不限于前进风后出风、下进风上出风、左进风右出风等;接口类型包括但不限于光纤口、网线口、2M口、空开、PDU插排等。定义的设备性能指标间可以相互独立,也可以具有关联性,比如带宽=单用户流量*用户数。
在本发明的再一个实施例中,设备性能指标与可选功能模块对应的关系可以参考图3。
具体地,针对每个设备性能指标定义其指标权重,用于在待配置功能模块设备选择时反映每个可选设备的该设备性能指标值匹配用户的设备需求指标值的结果对选择可选设备的影响程度。对于指标权重较大的设备性能指标,其决定选择某可选设备的影响更大,即,该设备性能指标匹配设备需求指标值的可选设备选中概率更大;对于指标权重较小的设备性能指标,其决定选择某可选设备的影响更小,即,该设备性能指标匹配设备需求指标值的可选设备选中概率更小。
每个设备性能指标定义其指标叠加属性,用于在可选设备选择和设备 配置时其设备性能指标对应的设备能力是否可以通过多台设备叠加实现;即,具有指标叠加属性的设备性能指标,其能力可通过同时使用多台设备实现,不具有指标叠加属性的设备性能指标,其能力无法通过同时使用多台设备实现。具有指标叠加属性的设备性能指标,通常为具有加法数量特性的设备性能指标,比如会话数、承载应用数、速率、带宽;不具有指标叠加属性的设备性能指标,通常为非数量和具有乘法数量特性的设备性能指标,比如方式、类型、抖动、丢包率、时延等。
设备性能指标可分为模块指标和全局指标;模块指标可直接作为该功能模块可选设备选择和设备配置的参数,比如覆盖范围、速率、用户数、单用户流量等;全局指标需进一步拆解为不同功能模块的模块指标,比如时延=接入时延+传输时延+交换时延等。
因此,可将专网业务需求根据设备性能指标进行转化,得到各个设备性能指标下的设备需求指标值,根据设备需求指标值和各个可选设备在各个设备指标下的设备性能指标值的匹配情况确定可选设备的指标满足情况,最后根据指标满足情况对可选设备进行筛选,得到待配置设备。
因此,在本发明的一个实施例中,步骤20还包括:
步骤201:根据所述设备性能指标对所述专网业务需求进行转换,得到所述专网业务需求在各个所述设备性能指标下分别对应的设备需求指标值。
在本发明的一个实施例中,根据设备性能指标对应的指标值计算方法对专网业务需求中针对各项性能的需求值转化为该项性能对应的指标值,得到设备需求指标值。
具体地,若用户的专网业务需求无某功能需求,则其对应该设备性能指标的设备需求指标值为0,否则,若用户的专网业务需求有某功能需求,则其对应该设备性能指标的设备需求指标值赋值为相应的定义需求值;若用户的专网业务需求未对某功能业务有指标要求,则其对应该设备性能指标的设备需求指标值赋值为其典型场景下的参数或某一个大于0的较小数 值,否则,若用户的专网业务需求对某功能业务有指标要求,则其对应该设备性能指标的设备需求指标值赋值为专网业务需求数值。用户的专网业务需求参照每功能模块每设备性能指标拆解为对应的设备需求指标值,可通过人工拆解,也可通过机器匹配需求模型实现。对于具有全局指标属性的设备性能指标,其对应的设备需求指标值可赋值为专网业务需求数值按典型场景下的拆分,也可根据各个功能模块的模块需求指标值进行相应赋值。
步骤202:根据所述设备需求指标值以及所述可选设备在所述设备性能指标下分别对应的设备性能指标值从所述可选设备中确定所述待配置设备。
在本发明的一个实施例中,针对待配置模块对应的每一个设备性能指标,将其对应的设备需求指标值与各个可选设备在该设备性能指标下的设备性能指标值进行比较,得到可选设备对于该设备性能指标的指标满足情况。
针对每一个可选设备,根据其在待配置模块对应的所有设备性能指标下的指标值满足情况确定可选设备的选择权重。具体地,若存在可选设备能够满足其对应的所有设备需求指标值,则根据其所满足的设备需求指标值对应的指标权重对可选设备的选择权重进行赋值,即所满足的设备需求指标值对应的指标权重越大,则该可选设备的选择权重越大。
其中,指标权重用于表征该设备性能指标的匹配程度对于待配置模块整体的模块性能满足程度的影响程度,容易理解的是,指标权重越大,则该设备需求指标值是否得到满足对于配置完成后的待配置模块的模块性能能否满足模块需求指标的决定性更大。
最后,根据选择权重对所有可选设备进行筛选,得到待配置设备。
因此,在本发明的一个实施例中,步骤202还包括:
步骤2021:针对各个所述可选设备,根据所述设备性能指标值以及所述设备需求指标值确定所述可选设备的指标满足情况。
在本发明的一个实施例中,针对每一个可选设备,在每一个设备性能指标下,将设备性能指标值与设备需求指标值进行比较,在设备性能指标值优于设备需求指标值的情况下,则将该可选设备在该设备性能指标下的指标满足情况确定为满足,由此得到可选设备在所有设备性能指标下的指标满足情况。
其中,对于不具有指标叠加属性的设备性能指标,设备性能指标不优于设备需求指标值的可选设备,则将该可选设备在该设备性能指标下的指标满足情况确定为不满足,并且其无法被待配置功能模块选中。对于能力具备与否的设备性能指标,设备性能指标不具备设备需求指标值所需能力的可选设备,则将该可选设备在该设备性能指标下的指标满足情况确定为不满足,其无法被待配置功能模块选中。
步骤2022:根据所述指标满足情况以及所述设备需求指标值对应的指标权重确定所述可选设备的选择权重。
在本发明的一个实施例中,在可选设备可以满足某项设备需求指标值的情况下,则可以将该能满足设备需求指标值的指标权重对应地增加到该可选设备对应的选择权重上,即所满足的设备性能指标越多,指标权重越大,则该可选设备的选择权重越大。
因此,在本发明的一个实施例中,步骤2022还包括:
步骤20221:在确定所述设备性能指标值满足所述设备需求指标值的情况下,根据所述可选设备所满足的所有所述设备需求指标值对应的指标权重确定所述可选设备的选择权重。
在本发明的一个实施例中,在确定可选设备能够满足其在待配置设备内对应的所有的设备需求指标值的情况下,如当待配置模块对应于设备性能指标A、B、C,其中,可选设备S1可能对应于设备性能指标A、B以及C,在S1可以同时满足A、B以及C的情况下,则将所述可选设备所满足的所有所述设备需求指标值对应的指标权重的总和确定为选择权重,即将A、 B以及C分别对应的指标权重的和确定为S1的选择权重。
其中,对于能力具备与否的设备性能指标,该设备性能指标不具备设备需求指标值所需能力的可选设备,则该可选设备的选择权重为0,其无法被待配置功能模块选中。对于不具有指标叠加属性的设备性能指标,该设备性能指标不优于设备需求指标值的可选设备,则该可选设备的选择权重为0,其无法被待配置功能模块选中。
因此,在本发明的再一个实施例中,步骤2022还包括:
步骤20222:在所述可选设备对应的所述设备性能指标值不满足所述设备需求指标值的情况下,确定所述设备性能指标对应的指标叠加属性;所述指标叠加属性用于表征所述设备性能指标是否能通过多台可选设备的同时使用来满足。
在本发明的一个实施例中,考虑到可能存在单个的可选设备并不能够满足待配置模块内其对应的所有设备需求指标值,如结合前述举例继续说明,待配置模块对应于设备性能指标A、B、C,存在可选设备S2对应于设备性能指标A、B以及C,而S2能够满足指标A、B但是无法满足指标C,在这种情况下,考虑一些设备性能指标比如指标C是可以通过设备的叠加来进行性能的累积,如同时使用多台设备来实现对设备性能的满足,因此在指标的满足可以通过同时使用多台设备来实现的情况下,可以进一步对可选设备在设备性能指标下的能力进行归一化处理后与指标权重进行加权求和,从而更加准确地确定待配置设备,避免因为单个设备不能满足其对应的全部指标就忽略具有叠加后满足性能的可能性的可选设备,由此提高功能模块内设备配置的准确率。
其中,对于具有指标叠加属性的设备性能指标值不优于设备需求指标值的可选设备,该设备性能指标的归一化能力=该设备性能指标能力/同功能可选设备该设备性能指标的能力最大值。
步骤20223:根据所述设备性能指标及其指标叠加属性和指标权重确定 所述选择权重。
在本发明的一个实施例中,对于能力具备与否的设备性能指标,若该设备性能指标值不具备设备需求指标值所需能力的可选设备,则该可选设备的选择权重为0;否则,该设备性能指标值具备设备需求指标值所需能力的可选设备,该设备性能指标的归一化能力为1。对于不具有指标叠加属性的设备性能指标,若该设备性能指标值不优于设备需求指标值的可选设备,则该可选设备的选择权重为0;否则,该设备性能指标值优于设备需求指标值的可选设备,该设备性能指标的归一化能力为1。对于具有指标叠加属性的设备性能指标,若该设备性能指标值不优于设备需求指标值的可选设备,则该设备性能指标的归一化能力=设备该设备性能指标能力/同功能可选设备该设备性能指标的能力最大值;否则,该设备性能指标值优于设备需求指标值的可选设备,该设备性能指标的归一化能力为1。
可选设备的选择权重=∑该设备的该设备性能指标值满足情况*该设备的该设备性能指标的归一化能力*
该设备性能指标定义的指标权重,其中,该设备的该设备性能指标值满足情况根据该设备性能指标值是否优于设备需求指标值而对应赋值,如对于不具有指标叠加属性的设备性能指标在不优于即不满足的情况下赋值为0,对于具有指标叠加属性的设备性能指标在不优于即不满足情况下赋值为该设备性能指标能力/同功能可选设备该设备性能指标的能力最大值,对应地,在优于及满足时则赋值为1。
步骤2023:根据所述选择权重从所述可选设备中确定所述待配置设备。
在本发明的一个实施例中,进行待配置功能模块进行设备选择时,需根据该功能模块所有可选设备的所有设备性能指标值匹配设备需求指标值确定,选择所述待配置功能模块所有可选设备中选择权重最大的设备作为待配置设备;若该功能模块多个设备的选择权重相同,则选择匹配最多更 大指标权重的设备,或选择匹配最多指标权重的设备。
在本发明的另一个实施例中,若同一功能模块存在不同功能类设备的情况,比如接入模块有4G接入功能设备、5G接入功能设备、WLAN接入功能设备、有线局域网络接入设备等多个功能类,比如电源模块有UPS、开关电源、整流器、逆变器、配电模块等多个功能类。而根据可选设备情况,同一功能模块的同一功能类可能存在一种或多种设备供配置时选择,比如能力不同的设备、厂家不同的设备等。因此,可以针对每一个功能类,将该功能类下的选择权重最大的可选设备确定为待配置设备,从而通过功能类的满足来实现对待配置模块的模块功能的满足。
步骤30:对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
在本发明的一个实施例中,根据专网业务需求及待配置设备的设备性能指标值和设备配置算法,生成待配置设备的配置信息,并根据所述用户的部署需求信息将所述待配置设备分布部署到对应的目标机架上,得到所述配置完成的专网一体化装置。其中,所述待部署设备的配置信息可以包括专网一体化装置中的各个配置功能模块设备对应的设备硬件配置、端口配置、设备数量、电源配置、功耗、设备尺寸、重量、送风类型等信息;所述部署需求信息根据专网业务需求、部署设备硬件特性和机房环境资源情况确定。
因此,在本发明的一个实施例中,步骤30还包括:
步骤301:根据所述设备性能指标值、所述专网业务需求对应的所述设备需求指标值和所述待配置设备的配置算法,生成待配置设备的配置信息。
在本发明的一个实施例中,根据所述待配置设备的设备性能指标值及专网业务需求对应的所述设备需求指标值,基于该设备的配置算法,确定其配置数量及板卡端口等配置信息。其中,设备的配置算法用于根据设备本身的能力特点,或按照多个设备需求指标值的最高需要条件进行配置, 或按照某一具有指标叠加属性的设备需求指标值进行配置。
步骤302:根据用户的部署需求信息将所述待配置设备分布部署到对应的目标机架上,得到所述配置完成的专网一体化装置;其中,所述部署需求信息根据专网业务需求、部署设备硬件特性和机房环境资源情况确定。
在本发明的一个实施例中,所述部署需求信息根据专网业务需求、部署设备硬件特性和机房环境资源情况,得到备份要求、制冷要求、机架尺寸、机房承重要求、供电方式、待配置设备的尺寸、重量、功耗、间隔等约束条件,基于所述约束条件将所述待配置设备分布部署到对应的目标机架上。
在本发明的一个实施例中,将用户的专网业务需求与多个可选功能模块及其功能类分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块及其功能类,该所述方法包括:
根据所述可选功能模块及其功能类的模块性能指标对所述专网业务需求进行转换,得到所述专网业务需求在所述模块性能指标下分别对应的模块需求指标值;
根据所述模块需求指标值从所述可选功能模块及其功能类中确定所述待配置功能模块及其功能类。
在本发明的一个实施例中,进行专网一体化装置的配置方法还可以参考图4。
如图4所示,S0,定义专网一体化装置各功能模块设备的模块性能指标、设备性能指标及其指标权重和指标叠加属性,并参照模块性能指标和设备性能指标获取客户已有各功能模块设备能力。
S1,专网客户业务需求参照已定义的模块性能指标和设备性能指标进行拆解,得到对应的模块需求指标值和设备需求指标值,作为专网一体化装置各功能模块设备的需求指标项。
S2,将各业务模块的模块性能指标与专网客户业务需求拆解后的模块 需求指标值进行匹配,选择专网一体化装置合适的业务模块。
S3,将所选业务模块所有设备的设备性能指标值与专网客户业务需求拆解后的设备需求指标值进行匹配,为所选业务模块选择业务匹配、能力满足的设备,并基于该业务模块设备的配置算法、专网客户业务需求和客户已有业务模块设备能力,生成所需业务模块各设备的配置信息。
S4,基于备份要求、制冷要求、机架尺寸、机房承重要求、供电方式等,基于所选业务模块设备的尺寸、重量、功耗、间隔等,生成本装置业务模块设备的机架装架。其中,需预留每业务模块机架的接插件模块位置。
S5,基于所选业务模块设备的电源信号接口情况及功耗、已确定的业务模块机架情况及机房环境等,更新基础设施模块的模块需求指标值和设备需求指标值。
S6,将除接插件模块外的基础设施模块的模块性能指标与更新后的模块需求指标值进行匹配,选择专网一体化装置合适的除接插件模块外的基础设施模块。
S7,将所选基础设施模块设备的设备性能指标与更新后的设备需求指标值进行匹配,为所选基础设施模块选择需求匹配、能力满足的设备,并基于该基础设施模块设备的配置算法以及客户已有该基础设施模块设备能力,生成所需基础设施模块设备的配置信息。
S8,基于备份要求、制冷要求、机架尺寸、机房承重要求、供电方式等,基于所选基础设施模块设备的尺寸、重量、功耗、间隔等,生成本装置所选基础设施模块设备的机架装架。其中,在基础设施设备较少的情况下,可与业务模块设备同机架分区域放置。
S9,基于本装置每机架设备电源和信号接口类型数量等情况,生成每机架接插件模块配置及其每端口所连接模块设备情况,并确定接插件模块端口的色谱并生成端口标签。
S10,基于各功能模块设备端口及装架情况、确定本装置线缆色谱、标 签及长度,其中对外线缆长度确定需明确架外部分线缆长度。
其中,设备的配置信息包含但不限于硬件配置、端口配置、设备数量、电源配置、功耗、设备尺寸、重量、送风方式等。
其中,本专网一体化装置的配置方法可基于如下机架部署原则进行机架部署,具体参见表2。
表2

在本发明的再一个实施例中,进行专网一体化装置的配置的过程还可以参考图5a以及图5b,包括如下步骤P01-P74:
如图5a以及图5b所示,P01,定义专网一体化装置各功能模块的模块性能指标和设备性能指标,并定义设备性能指标的指标权重和指标叠加属性,其中,如前所述,专网一体化装置的结构可以参考图2。
P02,获取所有可采购功能模块设备与设备性能指标相对应的设备能力。
P11,获取客户已有业务资源设备与设备性能指标相对应的客户已有功能模块设备能力的设备性能指标值。其中,若对于部分功能模块,客户无已有功能模块设备能力,则该功能模块的客户已有功能模块设备能力的设备性能指标值为0。
P12,获取专网业务需求与模块性能指标和设备性能指标对应的模块需求指标值和设备需求指标值。
P21,判断专网业务需求对应的模块需求指标值是否包含任意业务模块的任意模块性能指标。
P22a,若模块需求指标值包含任意业务模块的任意模块性能指标,则选择相应业务模块。
否则,执行P22b,即,若模块需求指标值不包含任意业务模块的任意模块性能指标,则未选出业务模块,需核实并重新获取专网业务需求,转至P12。
P23,分别判断所选业务模块各个设备的设备性能指标是否优于专网业 务需求对应的设备需求指标值。
P24a,若所选业务模块存在所选择的设备性能指标优于设备需求指标值,则对于优于设备需求指标值的所选业务模块设备,其相应设备性能指标的指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
否则,执行P24b,即,若不存在所选业务模块存在所选择的设备性能指标优于设备需求指标值,则判断所选业务模块的设备性能指标是否具有指标叠加属性。
P25a,若所选业务模块的设备性能指标具有指标叠加属性,则对于所选业务模块设备具有指标叠加属性的设备性能指标,其指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
否则,执行P25b,即,若无所选业务模块的设备性能指标具有指标叠加属性,则需核实并重新获取专网业务需求,转至P12。
P26,计算所选业务模块所有设备的选择权重,该设备选择权重=其所有匹配设备需求指标值的相应设备性能指标的指标权重赋值之和,选择选择权重最大的设备为该匹配专网业务需求对应的设备需求指标值的业务模块设备。
P27,计算本装置所选业务模块所选设备的配置需求指标值,该配置需求指标值=专网业务需求对应的设备需求指标值-客户已有业务模块设备能力的设备性能指标值。
P28,基于所选业务模块设备的配置算法,根据所选业务模块所选设备的配置需求指标值,生成所需业务模块各设备的配置信息。
P29,基于备份要求、制冷要求、机架尺寸、机房承重要求、供电方式等,基于所选设备的尺寸、重量、功耗、间隔等,生成本装置业务模块部分的机架装架。
P31,计算本装置所需制冷量=已选业务模块总的设备功耗*(1+预留用 于消防模块和监控模块设备的功耗比例)+建筑显冷量。其中,由于监控模块设备和消防模块设备所需功耗均较小,电源模块和制冷模块的配置需适当预留此部分需求即可,该比例可通过获取比例数值方式实现,也可通过匹配容量场景模型实现。
P32,判断专网业务需求对应的模块需求指标值是否包含制冷模块的任意模块性能指标。
P33a,若模块需求指标值未包含制冷模块的任意模块性能指标,则向客户输出本装置所需制冷量。
否则,执行P33b,即,若模块需求指标值包含制冷模块的任意模块性能指标,则需判断所选制冷模块所有设备的设备性能指标是否优于专网业务需求对应的设备需求指标值。
P34a,若所选制冷模块所有设备的设备性能指标优于设备需求指标值,则对于优于设备需求指标值的所选制冷模块设备,其相应设备性能指标的指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
否则,执行P34b,即,若无所选制冷模块所有设备的设备性能指标优于设备需求指标值,则所选制冷模块设备具有指标叠加属性的设备性能指标,其指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
P35,计算所选制冷模块所有设备的选择权重,该设备选择权重=其所有匹配设备需求指标值的相应设备性能指标的指标权重赋值之和,选择选择权重最大的设备为该匹配专网业务需求对应的设备需求指标值的制冷模块设备。
P36,基于图3中制冷模块的设备性能指标,将本装置所需制冷量需求增加至上述的客户业务需求指标中,计算本装置所选制冷模块所选设备的配置需求指标值=专网业务需求对应的设备需求指标值-客户已有制冷模块设备能力的设备性能指标值;其中,将本装置所需制冷量需求增加至上述 的设备需求指标值中,通过对步骤P12中制冷模块的设备需求指标值与本装置所需制冷量需求做并集操作实现。
P37,基于所选制冷模块设备的配置算法,根据所选制冷模块所选设备的配置需求指标值,生成所需制冷模块各设备的配置信息。
P41,基于不同电源方式,计算本装置该电源方式的已选设备功耗,该设备功耗=该电源方式的所选业务模块总的设备功耗*(1+预留用于已选的消防模块和监控模块设备的功耗比例)+该电源方式的已选制冷模块总的设备功耗。
P42,基于图3中电源模块的设备性能指标,将已选业务模块设备和制冷模块设备的设备电源方式需求和已选设备功耗需求增加至上述的专网业务需求对应的设备需求指标值中,计算本装置电源模块设备的配置需求指标值=专网业务需求对应的设备需求指标值-客户已有电源模块设备能力的设备性能指标值;其中,将已选业务模块设备和制冷模块设备的设备电源方式需求和已选设备功耗需求增加至上述的设备需求指标值中,通过对步骤P12中电源模块的设备需求指标值与已选业务模块设备和制冷模块设备的设备电源方式需求和已选设备功耗需求做并集操作实现。
P43,判断电源模块所有设备的设备性能指标是否优于设备需求指标值。
P44a,若电源模块所有设备的设备性能指标优于设备需求指标值,则对于优于设备需求指标值的所选电源模块设备,其相应设备性能指标的指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
否则,执行P44b,即,若无电源模块所有设备的设备性能指标优于设备需求指标值,则所选电源模块设备具有指标叠加属性的设备性能指标,其指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
P45,计算电源模块所有设备的选择权重,该设备选择权重=其所有匹配设备需求指标值的相应设备性能指标的指标权重赋值之和,选择选择权 重最大的设备为该匹配专网业务需求对应的设备需求指标值的电源模块设备。
P46,基于电源模块设备的配置算法,根据电源模块所选设备的配置需求指标值,生成所需电源模块各设备的配置信息。
P47,基于备份要求、制冷要求、机架尺寸、机房承重要求、供电方式等,基于所选设备的尺寸、重量、功耗、间隔等,生成本装置制冷模模块和电源模块部分的机架装架;其中,在电源模块设备和制冷模块设备较少的情况下,可与业务模块设备同机架分区域放置;需适当预留其相应监控模块设备的安装位置,可按照采购监控模块设备最大尺寸考虑,也可按照已选制冷模块设备和电源模块设备的高度*监控设备高度比例实现,该比例可通过获取比例数值方式实现,也可通过匹配容量场景模型实现。
P51,判断专网业务需求对应的模块需求指标值是否包含消防模块的任意模块性能指标,若模块需求指标值未包含消防模块的任意模块性能指标,则转至P61,否则,转至P52。
P52,判断所选消防模块所有设备的设备性能指标是否优于专网业务需求对应的设备需求指标值。
P53a,若所选消防模块所有设备的设备性能指标优于设备需求指标值,则对于优于设备需求指标值的所选消防设备,其相应设备性能指标的指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
否则,执行P53b,即,若无所选消防模块所有设备的设备性能指标优于设备需求指标值,则所选消防模块设备具有指标叠加属性的设备性能指标,其指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
P54,计算所选消防模块所有设备的选择权重,该设备选择权重=其所有匹配设备需求指标值的相应设备性能指标的指标权重赋值之和,选择选择权重最大的设备为该匹配专网业务需求对应的设备需求指标值的消防模 块设备。
P55,基于已确定机架装架或/及获取的机房环境情况,确定消防防护区体积,基于图3中消防模块的设备性能指标,将本装置的防护区体积增加至上述的设备需求指标值中,计算本装置所需消防模块设备的配置需求指标值=专网业务需求对应的设备需求指标值-客户已有消防模块设备能力的设备性能指标值;其中,将本装置的防护区体积增加至上述的设备需求指标值中,通过对步骤P12中消防模块的设备需求指标值与本装置的防护区体积做并集操作实现。
P56,基于所选消防模块设备的配置算法,根据所选消防模块所选设备的配置需求指标值,生成所需消防模块各设备的配置信息。
P57,基于备份要求、制冷要求、机架尺寸、机房承重要求、供电方式等,基于所选设备的尺寸、重量、功耗、间隔等,生成本装置消防模块部分的机架装架;其中,在消防模块设备较少的情况下,可与业务模块设备同机架分区域放置;需适当预留其相应监控模块设备的安装位置,可按照采购监控模块设备最大尺寸考虑,也可按照已选消防模块设备的高度*监控设备高度比例实现,该比例可通过获取比例数值方式实现,也可通过匹配容量场景模型实现。
P61,基于图3中监控模块的设备性能指标,根据已选设备配置信息,将已选制冷、电源、消防模块设备的监控方式和监控能力需求增加至上述的专网业务需求对应的设备需求指标值中,计算本装置所需监控模块设备的配置需求指标值=专网业务需求对应的设备需求指标值-客户已有监控模块设备能力的设备性能指标值;其中,将已选制冷、电源、消防模块设备的监控方式和监控能力需求增加至上述的设备需求指标值中,通过对步骤P12中监控模块的设备需求指标值与已选制冷、电源、消防模块设备的监控方式和监控能力需求做并集操作实现。
P62,判断专网业务需求对应的模块需求指标值是否包含监控模块的任 意模块性能指标;若客户业务需求指标不包含监控模块的任意模块性能指标,则执行P63a,向客户输出本装置所需监控模块设备的配置需求指标。
否则,若客户业务需求指标包含监控模块的任意模块性能指标,则执行P63b,判断所选监控模块所有设备的设备性能指标是否优于专网业务需求对应的设备需求指标值。
P64a,若所选监控模块所有设备的设备性能指标优于设备需求指标值,则对于优于设备需求指标值的所选监控模块设备,其相应设备性能指标的指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
否则,执行P64b,即,若无所选监控模块所有设备的设备性能指标优于设备需求指标值,则所选监控模块设备具有指标叠加属性的设备性能指标,其指标权重赋值=该设备性能指标的归一化能力*其对应的预定义的指标权重。
P65,计算所选监控块所有设备的选择权重,该设备选择权重=其所有匹配设备需求指标值的相应设备性能指标的指标权重赋值之和,选择选择权重最大的设备为该匹配专网业务需求对应的设备需求指标值的监控模块设备。
P66,基于所选监控模块设备的配置算法,根据所选监控模块所选设备的配置需求指标值,生成所需监控模块各设备的配置信息。其中,可按照监控模块设备与被监控设备安装在同一机架的原则进行装架布置。
P71,基于图3中接插件模块的设备性能指标,将已选各模块设备的接口类型和接口数量需求增加至上述的专网业务需求对应的设备需求指标值中,计算本装置所需接插件模块设备的配置需求指标值=客户业务需求指标的设备性能指标;其中,将已选各模块设备的接口类型和接口数量需求增加至上述的设备需求指标值中,通过对步骤P12中接插件模块的客户业务需求指标与已选各模块设备的接口类型和接口数量需求做并集操作实现。
P72,基于接插件模块设备的配置算法,根据所选接插件模块所选设备 的配置需求指标值,生成插接件模块设备的配置信息;其中,可根据各功能模块设备的接口类型和接口数量、机架宽度及电源空开/熔丝、PDU插孔、光纤、网线、2M线等接头的尺寸大小,基于不同的类型和数量组合,定义若干接插件模块配置模板;每机架可根据本机架设备情况,匹配选择合适的插件模块配置模板。
P73,基于本装置每机架设备接口类型数量等情况,生成每机架接插件模块配置及其每端口所连接模块设备情况,并确定接插件模块端口的色谱并生成端口标签。
P74,基于各功能模块设备端口及装架情况、确定本装置线缆色谱、标签及长度,其中对外线缆长度确定需获取架外部分线缆长度。
本发明实施例通过将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,能够实现根据模块性能指标对用户的专网业务需求进行转换,得到对应的模块需求指标值,从而确定需要配置的功能模块,再根据待配置功能模块所对应的设备性能指标对专网业务需求进行转换,得到对应的设备需求指标值,从而从可选设备中选择能够满足对应功能模块设备需求指标值的设备,最后对所选择的设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,由此能够快速完成满足用户特定的专网需求的专网一体化装置的设备配置,提升了专网一体化装置的配置的效率以及用户体验。
图6示出了本发明实施例提供的专网一体化装置的配置装置的结构示 意图。如图6所示,该装置40包括:模块匹配模块401、设备匹配模块402和设备配置模块403。
其中,模块匹配模块401,配置为将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
设备匹配模块402,配置为根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;
设备配置模块403,配置为对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
本发明实施例提供的专网一体化装置的配置装置的操作过程与前述方法实施例的操作过程大致相同,不再赘述。
本发明实施例提供的专网一体化装置的配置装置通过将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,能够实现根据模块性能指标对用户的专网业务需求进行转换,得到对应的模块需求指标值,从而确定需要配置的功能模块,再根据待配置功能模块所对应的设备性能指标对专网业务需求进行转换,得到对应的设备需求指标值,从而从可选设备中选择能够满足对应功能模块设备需求指标值 的设备,最后对所选择的设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,由此能够快速完成满足用户特定的专网需求的专网一体化装置的设备配置,提升了专网一体化装置的配置的效率以及用户体验。
图7示出了本发明实施例提供的专网一体化装置的配置设备的结构示意图,本发明具体实施例并不对专网一体化装置的配置设备的具体实现做限定。
如图7所示,该专网一体化装置的配置设备可以包括:处理器(processor)502、通信接口(Communications Interface)504、存储器(memory)506、以及通信总线508。
其中:处理器502、通信接口504、以及存储器506通过通信总线508完成相互间的通信。通信接口504,用于与其它设备比如客户端或其它服务器等的网元通信。处理器502,用于执行程序510,具体可以执行上述用于专网一体化装置的配置方法实施例中的相关步骤。
具体地,程序510可以包括程序代码,该程序代码包括计算机可执行指令。
处理器502可能是中央处理器CPU,或者是特定集成电路ASIC(Application Specific Integrated Circuit),或者是被配置成实施本发明实施例的一个或多个集成电路。专网一体化装置的配置设备包括的一个或多个处理器,可以是同一类型的处理器,如一个或多个CPU;也可以是不同类型的处理器,如一个或多个CPU以及一个或多个ASIC。
存储器506,用于存放程序410。存储器506可能包含高速RAM存储器,也可能还包括非易失性存储器(non-volatile memory),例如至少一个磁盘存储器。
程序510具体可以被处理器502调用使专网一体化装置的配置设备执行以下操作:
将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标 进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;
对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
本发明实施例提供的专网一体化装置的配置设备的操作过程与前述方法实施例的操作过程大致相同,不再赘述。
本发明实施例提供的专网一体化装置的配置设备通过将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,能够实现根据模块性能指标对用户的专网业务需求进行转换,得到对应的模块需求指标值,从而确定需要配置的功能模块,再根据待配置功能模块所对应的设备性能指标对专网业务需求进行转换,得到对应的设备需求指标值,从而从可选设备中选择能够满足对应功能模块设备需求指标值的设备,最后对所选择的设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,由此能够快速完成满足用户特定的专网需求的专网一体化装置的设备配置,提升了专网一体化装置的配置的效率以及用户体验。
本发明实施例提供了一种存储介质,所述存储介质存储有至少一可执 行指令,该可执行指令在专网一体化装置的配置设备上运行时,使得所述专网一体化装置的配置设备执行上述任意方法实施例中的专网一体化装置的配置方法。
可执行指令具体可以用于使得专网一体化装置的配置设备执行以下操作:
将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;
对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
本发明实施例提供的存储介质所存储的可执行指令的操作过程与前述方法实施例的操作过程大致相同,不再赘述。
本发明实施例提供一种专网一体化装置的配置装置,用于执行上述专网一体化装置的配置方法。
本发明实施例提供了一种计算机程序,所述计算机程序可被处理器调用使专网一体化装置的配置设备执行上述任意方法实施例中的专网一体化装置的配置方法。
本发明实施例提供了一种计算机程序产品,计算机程序产品包括存储在存储介质上的计算机程序,计算机程序包括程序指令,当程序指令在计算机上运行时,使得所述计算机执行上述任意方法实施例中的专网一体化装置的配置方法。
在此提供的算法或显示不与任何特定计算机、虚拟系统或者其它设备 固有相关。各种通用系统也可以与基于在此的示教一起使用。根据上面的描述,构造这类系统所要求的结构是显而易见的。此外,本发明实施例也不针对任何特定编程语言。应当明白,可以利用各种编程语言实现在此描述的本发明的内容,并且上面对特定语言所做的描述是为了披露本发明的最佳实施方式。
在此处所提供的说明书中,说明了大量具体细节。然而,能够理解,本发明的实施例可以在没有这些具体细节的情况下实践。在一些实例中,并未详细示出公知的方法、结构和技术,以便不模糊对本说明书的理解。
类似地,应当理解,为了精简本发明并帮助理解各个发明方面中的一个或多个,在上面对本发明的示例性实施例的描述中,本发明实施例的各个特征有时被一起分组到单个实施例、图、或者对其的描述中。然而,并不应将该公开的方法解释成反映如下意图:即所要求保护的本发明要求比在每个权利要求中所明确记载的特征更多的特征。
本领域技术人员可以理解,可以对实施例中的设备中的模块进行自适应性地改变并且把它们设置在与该实施例不同的一个或多个设备中。可以把实施例中的模块或单元或组件组合成一个模块或单元或组件,以及可以把它们分成多个子模块或子单元或子组件。除了这样的特征和/或过程或者单元中的至少一些是相互排斥之外,可以采用任何组合对本说明书(包括伴随的权利要求、摘要和附图)中公开的所有特征以及如此公开的任何方法或者设备的所有过程或单元进行组合。除非另外明确陈述,本说明书(包括伴随的权利要求、摘要和附图)中公开的每个特征可以由提供相同、等同或相似目的的替代特征来代替。
应该注意的是上述实施例对本发明进行说明而不是对本发明进行限制,并且本领域技术人员在不脱离所附权利要求的范围的情况下可设计出替换实施例。在权利要求中,不应将位于括号之间的任何参考符号构造成对权利要求的限制。单词“包含”不排除存在未列在权利要求中的元件或步骤。位 于元件之前的单词“一”或“一个”不排除存在多个这样的元件。本发明可以借助于包括有若干不同元件的硬件以及借助于适当编程的计算机来实现。在列举了若干装置的单元权利要求中,这些装置中的若干个可以是通过同一个硬件项来具体体现。单词第一、第二、以及第三等的使用不表示任何顺序。可将这些单词解释为名称。上述实施例中的步骤,除有特殊说明外,不应理解为对执行顺序的限定。
以上所述,仅为本申请的较佳实施例而已,并非用于限定本申请的保护范围。
工业实用性
本申请实施例提供了一种专网一体化装置的配置方法、装置、设备以及存储介质,专网一体化装置的配置方法包括:将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,能够实现根据模块性能指标对用户的专网业务需求进行转换,得到对应的模块需求指标值,从而确定需要配置的功能模块,根据待配置功能模块所对应的设备性能指标对专网业务需求进行转换,得到对应的设备需求指标值,从而从可选设备中选择能够满足对应功能模块设备需求指标值的设备,最后对所选择的设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,由此能够快速完成满足用户特定的专网需求的专网一体化装置的设备配置,提升了专网一体化装置的配置的效率以及用户体验。

Claims (10)

  1. 一种专网一体化装置的配置方法,所述方法包括:
    将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
    根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;
    对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
  2. 根据权利要求1所述的方法,其中,所述将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块,包括:
    根据所述模块性能指标对所述专网业务需求进行转换,得到所述专网业务需求在所述模块性能指标下分别对应的模块需求指标值;
    根据所述模块需求指标值从所述可选功能模块中确定所述待配置功能模块。
  3. 根据权利要求1所述的方法,其中,所述根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备,包括:
    根据所述设备性能指标对所述专网业务需求进行转换,得到所述专网业务需求在各个所述设备性能指标下分别对应的设备需求指标值;
    根据所述设备需求指标值以及所述可选设备在所述设备性能指标下分别对应的设备性能指标值从所述可选设备中确定所述待配置设备。
  4. 根据权利要求3所述的方法,其中,所述根据所述设备需求指标值以及所述可选设备在所述设备性能指标下分别对应的设备性能指标值从所述可选设备中确定所述待配置设备,包括:
    针对各个所述可选设备,根据所述设备性能指标值以及所述设备需求指标值确定所述可选设备的指标满足情况;
    根据所述指标满足情况以及所述设备需求指标值对应的指标权重确定所述可选设备的选择权重;
    根据所述选择权重从所述可选设备中确定所述待配置设备。
  5. 根据权利要求4所述的方法,其中,所述根据所述指标满足情况以及所述设备需求指标值对应的指标权重确定所述可选设备的选择权重,包括:
    在确定所述设备性能指标值满足所述设备需求指标值的情况下,根据所述可选设备所满足的所有所述设备需求指标值对应的指标权重确定所述可选设备的选择权重。
  6. 根据权利要求4所述的方法,其中,所述根据所述指标满足情况以及所述设备需求指标值对应的指标权重确定所述可选设备的选择权重,包括:
    在所述可选设备对应的所述设备性能指标值不满足所述设备需求指标值的情况下,确定所述设备性能指标对应的指标叠加属性;所述指标叠加属性用于表征所述设备需求指标值是否能通过多台可选设备的同时使用来满足;
    根据所述设备性能指标及其指标叠加属性和指标权重确定所述选择权重。
  7. 根据权利要求1所述的方法,其中,所述对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置,包括:
    根据所述设备性能指标值、所述专网业务需求对应的所述设备需求指 标值和所述待配置设备的配置算法,生成待配置设备的配置信息;
    根据用户的部署需求信息将所述待配置设备分布部署到对应的目标机架上,得到所述配置完成的专网一体化装置;其中,所述部署需求信息根据专网业务需求、部署设备硬件特性和机房环境资源情况确定。
  8. 一种专网一体化装置的配置装置,所述装置包括:
    模块匹配模块,配置为将用户的专网业务需求与多个可选功能模块分别对应的模块性能指标进行匹配,得到所述用户对应的待配置功能模块;所述待配置功能模块为所述可选功能模块中的至少一个;所述模块性能指标用于表征所述可选功能模块所能提供的专网业务能力;
    设备匹配模块,配置为根据所述专网业务需求以及所述待配置功能模块对应的设备性能指标从多个可选设备中确定所述待配置功能模块对应的待配置设备;所述设备性能指标用于表征所述可选设备所能提供的专网业务能力;
    设备配置模块,配置为对所述待配置设备进行设备配置以及装架部署,得到配置完成的专网一体化装置。
  9. 一种专网一体化装置的配置设备,包括:处理器、存储器、通信接口和通信总线,所述处理器、所述存储器和所述通信接口通过所述通信总线完成相互间的通信;
    所述存储器用于存放至少一可执行指令,所述可执行指令使所述处理器执行如权利要求1-7任意一项所述的专网一体化装置的配置方法的操作。
  10. 一种存储介质,所述存储介质中存储有至少一可执行指令,所述可执行指令在专网一体化装置的配置设备上运行时,使得专网一体化装置的配置设备执行如权利要求1-7任意一项所述的专网一体化装置的配置方法的操作。
PCT/CN2023/077114 2022-09-26 2023-02-20 专网一体化装置的配置方法、装置、设备以及存储介质 WO2024066172A1 (zh)

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US20180299872A1 (en) * 2017-04-12 2018-10-18 Applied Materials, Inc. Method for fulfilling demands in a plan
CN113453238A (zh) * 2021-06-03 2021-09-28 中国联合网络通信集团有限公司 5g专网的配置方法及装置
CN113784364A (zh) * 2021-11-11 2021-12-10 广东省电信规划设计院有限公司 基于业务需求的机房规划方法、装置及存储介质

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US20180299872A1 (en) * 2017-04-12 2018-10-18 Applied Materials, Inc. Method for fulfilling demands in a plan
CN113453238A (zh) * 2021-06-03 2021-09-28 中国联合网络通信集团有限公司 5g专网的配置方法及装置
CN113784364A (zh) * 2021-11-11 2021-12-10 广东省电信规划设计院有限公司 基于业务需求的机房规划方法、装置及存储介质

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