Prototype system design method for quantum computer engineering design management integrated information system
By designing an integrated operating environment, support platform, specialized database, and information interaction space, the design challenges of comprehensive information systems such as quantum computing testing and analysis and chip multiphysics simulation were solved. The system achieved real-time processing and decision support functions, meeting the needs of quantum computer engineering design and management.
Patent Information
- Application Number
- CN202210019919.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-10
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2042-01-10
AI Technical Summary
Existing technologies struggle to design integrated information systems for quantum computing testing and analysis, chip multiphysics simulation, and project management within an integrated operating environment. In particular, during the research and development of information systems, there is a lack of capabilities such as an integrated operating environment, data flow fusion and sharing, dynamic feedback of event flow, and precise control flow invocation.
Based on the theories of systems engineering, requirements engineering, and quantum computer science, a prototype system architecture for a comprehensive information system was designed. This architecture includes an integrated operating environment system, two major support platforms, three types of specialized databases, four types of information interaction spaces, and five decision support functional domains, enabling real-time information flow transmission, real-time data processing, and decision support functions.
It realizes real-time information input, transmission, processing and display for quantum computing testing and analysis, chip multiphysics simulation and project management, forming a comprehensive information system based on an integrated information platform, supporting the key functional requirements of quantum computer engineering design and management.
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Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of prototype system design methods of quantum computing test analysis, chip multi-physical field simulation and project management information systems, in particular to the design methods of information system architecture in integrated operation environment, integrated information platform architecture, integrated shared database architecture, integrated information interaction space architecture, integrated functional system architecture and comprehensive information system top-level design method. BACKGROUND
[0002] Developing the "quantum computer engineering design management comprehensive information system" is a highly complex system engineering. First of all, the prototype system of "quantum computer engineering design management comprehensive information system" must be designed, which must meet the functional requirements of quantum computing test analysis, chip multi-physical field simulation and project management subsystems; must realize integration in operation environment, information transmission, data interaction, function implementation, decision support, result display, etc.; must form a comprehensive information platform based on public information transmission platform, information resource coding platform and shared database; must have information capabilities such as data flow fusion sharing, event flow dynamic feedback, intervention flow real-time monitoring, control flow precise calling in integrated operation environment; must be based on distributed, networked and integrated architecture; must be the prototype system of quantum computing test analysis management, chip multi-physical field simulation and project management comprehensive information system top-level design that meets the above conditions.
[0003] Based on the system engineering theory, the demand engineering theory and the idea of quantum computer science system engineering, the present application provides a prototype system architecture design method of a class of comprehensive information systems for quantum computing test analysis, chip multi-physical simulation and project management, and specific architecture, platform structure, data structure, space structure, function structure design methods. This design method is the key and difficult problem for any comprehensive information system in the information system development process. The "quantum computer engineering design management comprehensive information system prototype system design method" plays a key supporting role in developing the "quantum computer engineering design management comprehensive information system", and has great innovation value and application prospect. SUMMARY
[0004] The present application is based on the system engineering theory, the demand engineering theory and the idea of quantum computer science system engineering. Starting from the system design, the prototype system architecture design method of the quantum computer engineering design management comprehensive information system is given, and the specific system architecture, platform structure, data structure, space structure and function structure design method is formed. The prototype system architecture design method of the comprehensive information system which can realize quantum computing test analysis, chip multi-physical field simulation and project management is formed based on the integrated operation environment system supported by the integrated information platform. Under the top-level design, the quantum computer engineering design management comprehensive information system is finally constructed. The prototype system architecture design is shown in the accompanying Figure 1 The prototype system architecture is summarized as "one operation environment system", "two support platforms", "three special databases", "four information interaction spaces" and "five decision support function domains". The design includes the following contents.
[0005] (1) "one operation environment system", namely integrated operation environment system.
[0006] The integrated operation environment system refers to the establishment of the quantum computer engineering design management comprehensive information system with distributed interaction, qualitative analysis and quantitative analysis combination, which can realize quantum computing test analysis management, chip multi-physical field simulation and project management, based on computer network system and supported by integrated operation environment system. The prototype system architecture design of the integrated operation environment system is shown in the accompanying Figure 2 The design includes the following contents:
[0007] ① System composition
[0008] (a) Monitoring console / basic environment system.
[0009] (b) Quantum computing test analysis management system.
[0010] (c) Chip multi-physical field simulation system.
[0011] (d) Project management information system.
[0012] ② System function
[0013] (a) Monitoring console / basic environment.
[0014] (b) Quantum computing test analysis.
[0015] (c) Chip multi-physical field simulation.
[0016] (d) Real-time management of research projects.
[0017] (2) "two support platform systems", namely "public information transmission platform and information resource coding platform".
[0018] The "public information transmission platform and information resource coding platform" refers to the "public information transmission platform" under the integrated operation environment system connecting the task systems of the "comprehensive information platform" for realizing real-time transmission of information flow; the "information resource coding platform" under the support of the "comprehensive information platform" for realizing real-time processing of data flow under the support of the general information processing application software, special application software, general static database, general dynamic database and the like of each functional system. Finally, the "public information transmission platform and information resource coding platform" supporting the integrated operation of the system is formed, and the "two supporting platforms" play a role of a link in the "quantum computer engineering design management comprehensive information system". The prototype system architecture design of the "two supporting platform systems" is shown in the attached Figure 3 .
[0019] (3) "Three types of special database systems", namely, quantum computing test analysis database, chip multi-physical field database, and project management database.
[0020] The quantum computing test analysis database, chip multi-physical field database, and project management database refer to the design of a unified access interface and shared database under the support of the integrated operation environment system, including the command library, strategy library, software library, search library, and system library (including the original data, static data, and dynamic data of each subsystem), each database for completing quantum computing test analysis, chip multi-physical field simulation, and in-process project management and the like of the corresponding task functional system, data collection, data management, data application, and realizing data mining and data fusion of the comprehensive information system under big data correlation analysis.
[0021] The quantum computing test analysis database, chip multi-physical field database, and project management database constitute an integrated database system structure, each functional subsystem database supports and complements each other, can be called and processed in real time, and plays an environmental support role in the "quantum computer engineering design management comprehensive information system". The prototype system architecture design of the "three types of special database systems" is shown in the attached Figure 4 . The design includes the following contents.
[0022] (I) Quantum computing test analysis database
[0023] The quantum computing test analysis database integrates quantum driving management, quantum device management, chip layout management, control data management, circuit management, waveform management, experiment management, historical data management, data statistics, data analysis, and the like in each aspect strategy database, historical data information database, and experiment case library.
[0024] System composition
[0025] The database system includes three sub-libraries, namely:
[0026] (a) Quantum computing test analysis strategy library. Quantum drive management strategy library, chip layout management strategy library, circuit management strategy, waveform management strategy library, experiment management strategy library.
[0027] (b) Quantum computing test analysis historical data information database. Quantum device database, control database, etc.
[0028] (c) Quantum computing test analysis experiment case library. Quantum drive experiment, waveform experiment, etc.
[0029] ② System function
[0030] (a) Query function of quantum computing test analysis strategy.
[0031] (b) Integration function of quantum computing test analysis strategy.
[0032] (c) Quantum computing test analysis strategy case analysis function.
[0033] (II) Chip multi-physical field database
[0034] The chip multi-physical field database integrates chip multi-physical field historical data information database, chip multi-physical field strategy information database and chip multi-physical field simulation experiment plan library, etc., and can realize cluster analysis of plans and coping strategies in system operation.
[0035] System composition
[0036] The database system includes three sub-libraries, namely:
[0037] (a) Chip multi-physical field historical data information database.
[0038] (b) Chip multi-physical field strategy information database.
[0039] (c) Chip multi-physical field plan database.
[0040] ② System function
[0041] (a) Chip multi-physical field historical data information query and integration function.
[0042] (b) Chip multi-physical field strategy query, integration and clustering function.
[0043] (c) Chip multi-physical field plan query function.
[0044] (III) Project management database
[0045] The project management database integrates the data of the projects managed by the Innovation Center, and uses the data to develop a project management system to achieve static and dynamic management of the nodes of the projects.
[0046] System configuration
[0047] The database system includes four subsystems, namely
[0048] (a) OA automated office system.
[0049] (b) in-process project management system.
[0050] (c) project management intervention system
[0051] (d) project management interaction system.
[0052] (2) System functions
[0053] (a) automated office application functions.
[0054] (b) project management online real-time monitoring function.
[0055] (c) project management online control intervention function.
[0056] (d) project management online interaction response function.
[0057] (4) "Four information interaction space systems", namely quantum computer test analysis information interaction space, chip multi-physical field simulation information interaction space, project management progress information interaction space, and in-process project risk analysis and risk decision information interaction space.
[0058] The "four information interaction spaces" of quantum computer test analysis information interaction space, chip multi-physical field simulation information interaction space, project management progress information interaction space, and in-process project risk analysis and risk decision information interaction space link the quantum computer test analysis, chip multi-physical field simulation, project management, and other subsystems together to form an integrated interaction system to achieve data resource integration, static and dynamic analysis, system function calling, optimization analysis and evaluation, real-time task management, and result distribution display among the quantum computer test analysis, chip multi-physical field simulation, project management, and other subsystems of the system. The "four information interaction spaces" (such as the attached Figure 5 , A: quantum computer test analysis information interaction space; B: chip multi-physical field simulation information interaction space; C: project management progress information interaction space; D: in-process project risk analysis and risk decision information interaction space) form corresponding comprehensive information analysis platforms and control space domains. The "four information interaction spaces" can also form an integrated interactive platform for information feedback, response, control, and use. The prototype system architecture design of the "four information interaction spaces" is as followsFigure 5 The design includes the following.
[0059] (I) Quantum computing test analysis information interaction space
[0060] System composition
[0061] It includes two subsystems, namely:
[0062] (a) Quantum computing test analysis management software system.
[0063] (b) Data optimization management software system in the computing test process.
[0064] ② System functions
[0065] (a) Quantum computing test "backtracking" analysis function.
[0066] (b) Quantum computing test process evaluation analysis function.
[0067] (c) Quantum computing test data optimization analysis function.
[0068] (II) Chip multi-physical field simulation information interaction space
[0069] System composition
[0070] It includes three subsystems, namely:
[0071] (a) Chip multi-physical field analysis database system.
[0072] (b) Chip multi-physical field simulation software system.
[0073] (c) Chip multi-physical field simulation result publishing system.
[0074] ② System functions:
[0075] (a) Chip multi-physical field analysis process information query and call function.
[0076] (b) Chip multi-physical field analysis evaluation simulation function.
[0077] (c) Chip multi-physical field simulation result publishing function.
[0078] (III) Project management progress information interaction space
[0079] System composition
[0080] It includes two subsystems, namely:
[0081] (a) Project management in research project information real-time query system
[0082] (b) Project management in research project dynamic analysis system.
[0083] System functions
[0084] (a) Real-time project information query function
[0085] (b) Real-time project analysis function
[0086] (c) Project effect display function
[0087] (IV) Project risk analysis and risk decision-making information interaction space
[0088] System composition
[0089] It includes three subsystems, namely:
[0090] (a) Project progress prediction and analysis system
[0091] (b) Project progress dynamic display platform system
[0092] (c) Project risk analysis and risk decision-making system
[0093] System functions
[0094] (a) Project progress dynamic feedback analysis function
[0095] (b) Project progress dynamic display function
[0096] (c) Project risk analysis and risk decision-making function
[0097] (5) "Five Decision Support Function Domain Systems", namely Quantum Computer Test Analysis Management Function Domain, Engineering Simulation Verification and Related Auxiliary Design Analysis Function Domain, Chip Multi-Physical Field Coupling Simulation Analysis Function Domain, Project Management Planning Function Domain, Risk Analysis and Risk Control Function Domain.
[0098] "Five Decision Support Function Domains" are based on an integrated operating environment system, supported by a public information transmission platform and an information resource coding platform, relying on three types of special databases and four types of integrated platforms for information interaction, adopting a distributed functional architecture, and forming five functional subsystems that support and complement each other, namely a "Quantum Computer Engineering Design Management Integrated Information System", to realize the system's decision support functions and management applications in quantum computer test management, engineering simulation verification and related auxiliary design analysis, chip multi-physical field coupling simulation analysis, project management planning, and risk analysis and risk control. The prototype system architecture design of "Five Decision Support Function Domains" is shown in Figure 6 . The design includes the following.
[0099] (I) Quantum Computer Test Analysis Management Function Domain
[0100] Quantum computing test analysis management, including quantum drive management, quantum device management, chip layout management, control data management, line management, waveform management, experiment management, historical data management, data statistics, data analysis, etc. Quantum computing test analysis management software. Develop software systems for data acquisition, preprocessing, statistics, analysis, optimization, and management in the process of quantum computer testing.
[0101] System composition
[0102] Including three subsystems, namely
[0103] (a) Quantum computing test analysis management software system.
[0104] (b) Quantum computing test data mining and data fusion software system.
[0105] (c) Quantum computing test analysis decision support software system.
[0106] ②System function
[0107] (a) Query and processing functions of various management information of quantum computing test analysis.
[0108] (b) Application functions of various management software of quantum computing test analysis.
[0109] (c) Data mining and data fusion functions in quantum computing test analysis.
[0110] (d) Decision support functions of quantum computing test analysis.
[0111] (II) Engineering simulation verification and related auxiliary design analysis function domain
[0112] Chip multi-physical field simulation is a software system for realizing engineering simulation verification and related auxiliary design analysis of manufacturing equipment structure performance simulation, electrical performance simulation, thermal performance simulation, electromagnetic compatibility performance simulation, etc.
[0113] System composition
[0114] Including five subsystems, namely:
[0115] (a) Manufacturing equipment structure performance simulation system.
[0116] (b) Electrical performance simulation system.
[0117] (c) Thermal performance simulation system.
[0118] (d) Electromagnetic compatibility performance simulation system.
[0119] (e) Related auxiliary design analysis software system.
[0120] ②System function
[0121] (a) manufacturing equipment structural performance simulation function.
[0122] (b) electrical performance simulation function.
[0123] (c) thermal performance simulation function.
[0124] (d) electromagnetic compatibility performance simulation function.
[0125] (e) related auxiliary design analysis function.
[0126] (III) chip multi-physical field coupling simulation analysis function domain
[0127] Chip multi-physical field coupling simulation is based on the multi-physical field in which the chip is located, and the performance of each field has different effects on microwave photons. The interaction of multiple physical fields of the chip will produce uncertainty and increase the risk of chip multi-physical field coupling process.
[0128] System composition
[0129] It includes three subsystems, namely:
[0130] (a) chip multi-physical field coupling data analysis system.
[0131] (b) chip multi-physical field coupling risk analysis system.
[0132] (c) multi-chip physical field coupling process dynamic simulation system.
[0133] ②System function
[0134] (a) chip multi-physical field coupling data analysis function.
[0135] (b) chip multi-physical field coupling risk analysis function.
[0136] (c) chip multi-physical field coupling process dynamic simulation function.
[0137] (IV) project management planning function domain
[0138] Project management planning management, that is, according to the management planning principle, selecting the corresponding planning management technology and control method, comprehensively analyzing the research project progress coordination chart, formulating practical project management measures, controlling the crisis caused by different risk factors in the research and development project management process, and improving the project management efficiency.
[0139] System composition
[0140] It includes three subsystems, namely:
[0141] (a) project information database system.
[0142] (b) Project management planning software system.
[0143] (c) Information resource coding information system.
[0144] II. System functions
[0145] (a) Project base information query function.
[0146] (b) Project management planning optimization function.
[0147] (c) Information resource coding information query function.
[0148] (V) Risk analysis and risk control function domain
[0149] Improving project management capability is to use risk management theory and method, relying on project management information system, to improve the ability of real-time management of the project under study.
[0150] System composition
[0151] It includes three subsystems, namely:
[0152] (a) Project risk event disposal scheme query system.
[0153] (b) Project risk event disposal scheme analysis and evaluation system.
[0154] (c) Project risk event disposal rollback analysis system.
[0155] II. System functions
[0156] (a) Project risk event disposal information query function
[0157] (b) Project risk event disposal analysis and evaluation function.
[0158] (c) Project risk event disposal rollback analysis function.
[0159] Under the above designed comprehensive information system prototype system architecture, an integrated operation environment system based on an integrated information platform is formed, which can realize the comprehensive information system of quantum computing test analysis, chip multi-physical field simulation and project management. Finally, the "innovation center" "quantum computer engineering design management comprehensive information system" is built. BRIEF DESCRIPTION OF DRAWINGS
[0160] In order to make the theoretical results, technical route and creativity of the present application more clear, the theoretical results, design method and technical route of the present application will be described clearly and completely in combination with the drawings of the present application.
[0161] Appendix Figure 1 It is the comprehensive information system prototype system architecture diagram provided by the present application.
[0162] Figure 1 is a topological structure diagram of an integrated operation environment system provided by the present application. Figure 2
[0163] Figure 2 is an organization structure diagram of a two-support-platform system provided by the present application. Figure 3
[0164] Figure 3 is a topological structure diagram of a three-type special database system provided by the present application. Figure 4
[0165] Figure 4 is a topological structure diagram of a four-type information interaction space system provided by the present application. Figure 5
[0166] Figure 5 is a distributed structure diagram of a five-type decision support function domain system provided by the present application. Figure 6 DETAILED DESCRIPTION
[0167] Firstly, the integrated information system prototype system architecture diagram provided by the present application is introduced. Referring to Figure 1, based on the system engineering theory, the requirement engineering theory and the thought method of the quantum computer science system engineering, starting from the top layer design of the architecture, the integrated information system prototype system design method based on the integrated information system and the shared database integrated operation environment is given, which has the integrated information system feedback, the control integrated operation environment, the integrated information system real-time monitoring integrated operation environment, can realize the quantum computing test analysis, the chip multi-physical field simulation and the project management and other task functions, and the real-time information input, the information transmission, the information processing and the information display. On the basis of the quantum computer engineering design management integrated information system prototype system design method given, the design method of the architecture, the platform structure, the data structure, the space structure and the function structure of the quantum computer engineering design management integrated information system is given, so that the system is more scientific in the top layer design, and a new design method for researching the quantum computer information system is provided. Figure 1 Figure 1 Figure 6 is a topological structure diagram of an integrated operation environment system provided by the present application. According to the top layer design, the shared database server is constructed in the center machine room, the five-type decision support function domain system, the display system (monitoring display, control display, state display) and the user terminal system are connected through the distributed networked integrated information platform to constitute the integrated operation environment system, and the real-time information input, the information transmission, the information processing and the information display of the quantum computing test analysis, the chip multi-physical field simulation and the project management are realized.
[0168] Figure 7 is a topological structure diagram of a two-support-platform system provided by the present application. According to the top layer design, the two-support-platform system is constructed, the five-type decision support function domain system, the display system (monitoring display, control display, state display) and the user terminal system are connected through the distributed networked integrated information platform to constitute the two-support-platform system, and the real-time information input, the information transmission, the information processing and the information display of the quantum computing test analysis, the chip multi-physical field simulation and the project management are realized. Figure 2 Figure 8 is a topological structure diagram of a three-type special database system provided by the present application. According to the top layer design, the three-type special database system is constructed, the five-type decision support function domain system, the display system (monitoring display, control display, state display) and the user terminal system are connected through the distributed networked integrated information platform to constitute the three-type special database system, and the real-time information input, the information transmission, the information processing and the information display of the quantum computing test analysis, the chip multi-physical field simulation and the project management are realized.
[0169] Figure 3 is a two big support platform system organization chart. The two big support platform system of the public information transmission platform and the information resource coding platform is given according to the application. The system takes the comprehensive information platform as the basis, constructs the public information transmission platform under the integrated operation environment system of connecting the interconnection and intercommunication of each task system of the comprehensive information platform, realizes the real-time transmission of information flow, takes the comprehensive information platform as the support, constructs the integrated information resource coding platform of unified data specification, realizes the real-time processing of data flow under the support of the general information processing application software, the special application software and the general static database, the general dynamic database and other functions of the system. Finally, the integrated public information transmission platform and information resource coding platform supporting the operation of the system are formed.
[0170] attached Figure 4 is a three types of special database system topology chart. The quantum computer test analysis database, the chip multi-physical field database and the project management database given according to the application are supported under the integrated operation environment system, a unified access interface is designed, a shared database is designed, including a command library, a strategy library, a software library, a retrieval library and a system library (including the original data, static data and dynamic data of each subsystem), each database completes the data collection, data management and data application of quantum computer test analysis, chip multi-physical field simulation and research project management of the corresponding task function system, and realizes the data mining and data fusion of the comprehensive information system under the big data correlation analysis.
[0171] attached Figure 5 is a four types of information interaction space system topology chart. The four types of information interaction space given according to the application connects the quantum computer test analysis, the chip multi-physical field simulation, the project management and other subsystems together to form an integrated information interaction system, so as to realize the data resource integration, static and dynamic analysis, system function calling, optimization analysis and evaluation, real-time task management and result distribution display among the quantum computer test analysis, the chip multi-physical field simulation and the project management of the system, form the comprehensive information analysis platform and the control space domain, and form the integrated information interaction space system of information feedback, response, control and use.
[0172] attached Figure 6Is the "five decision support function domain system" distributed structure diagram. According to the distributed function architecture given by the application, five function subsystems of quantum computing test analysis management function domain, engineering simulation verification and related auxiliary design analysis function domain, chip multi-physical field coupling simulation analysis function domain, project management planning function domain, risk analysis and risk control function domain are constituted, which are based on integrated operation environment system, supported by public information transmission platform and information resource coding platform, rely on three types of special databases and four types of information interactive integrated platforms, constitute the "quantum computer engineering design management comprehensive information system" of five function systems supporting and complementing each other, to realize the decision support functions and management applications of quantum computing test management, engineering simulation verification and related auxiliary design analysis, chip multi-physical field coupling simulation analysis, project management planning and risk analysis and risk control.
Claims
1. A method for designing a prototype system of a comprehensive information system for engineering management of quantum computers, characterized in that, The system engineering and demand engineering theory are taken as the method guidance of the top-level design of developing the comprehensive information system. In the design of the prototype system of the comprehensive information system, the design method of the management of the prototype system of the comprehensive information system based on the system of the quantum computer engineering is given. Around the construction of the integrated operation environment, based on the system and the top-level design, the information ability of the data flow fusion and sharing, the event flow dynamic feedback, the intervention flow real-time monitoring, the control flow precise calling is improved to meet the functional requirements of the quantum computing test analysis, the chip multi-physical field simulation and the project management. The design method of "one operation environment system", "two support platforms", "three types of special databases", "four information interaction spaces" and "five decision support function domains" and the design content of each subsystem are given. (1) "one operation environment system", namely the integrated operation environment system; The integrated operation environment system refers to the establishment of the "quantum computer engineering design management comprehensive information system" with distributed interaction, qualitative analysis and quantitative analysis combination to realize the quantum computing test analysis management, chip multi-physical field simulation and project management tasks based on the quantum / electronic computer network system under the support of the integrated operation environment system. (2) "two support platform systems", namely "public information transmission platform and information resource coding platform"; The public information transmission platform and information resource coding platform refer to the construction of the "public information transmission platform" connected with the interconnection and intercommunication of each task system of the "comprehensive information platform" under the integrated operation environment system to realize the real-time transmission of information flow. The "information resource coding platform" with unified data specification and integration is constructed under the support of the "comprehensive information platform" to realize the real-time processing of data flow under the support of the general information processing application software, special application software and general static database, general dynamic database of each functional system. Finally, the integrated "public information transmission platform and information resource coding platform" supporting the operation of the system is formed. (3) "three types of special database systems", namely quantum computing test analysis database, chip multi-physical field database and project management database; The quantum computing test analysis database, chip multi-physical field database and project management database refer to the design of the unified access interface and the shared database including the command library, strategy library, software library, retrieval library and system library. The system library includes the original data, static data and dynamic data of each subsystem. Each database completes the quantum computing test analysis of the corresponding task function system, chip multi-physical field simulation and data collection, data management and data application in the research project management and realizes the data mining and data fusion of the comprehensive information system under the big data correlation analysis. (4) "four information interaction space systems", namely quantum computing test analysis information interaction space, chip multi-physical field simulation information interaction space, project management progress information interaction space and research project risk analysis and risk decision information interaction space; The quantum computing test analysis information interaction space, the chip multi-physical field simulation information interaction space, the project management progress information interaction space, and the research project risk analysis and risk decision information interaction space constitute an integrated interactive system by connecting the quantum computer test analysis, chip multi-physical field simulation, and project management subsystems together. The five decision support functional domain systems are the quantum computing test analysis management functional domain, the engineering simulation verification and related auxiliary design analysis functional domain, the chip multi-physical field coupling simulation analysis functional domain, the project management planning functional domain, and the risk analysis and risk control functional domain. The five decision support functional domains are based on the integrated operation environment system, supported by the public information transmission platform and the information resource coding platform, rely on three types of special databases and four types of integrated information interactive platforms, and adopt a distributed functional architecture to form the quantum computer engineering design management comprehensive information system with the five functional subsystems supporting and complementing each other. The system realizes the quantum computing test management, engineering simulation verification and related auxiliary design analysis, chip multi-physical field coupling simulation analysis, project management planning, and risk analysis and risk control decision support functions and management applications.
2. The method of claim 1, wherein, The method is applied to the design of the quantum computer engineering design management prototype system, the integrated operation environment system, the integrated information platform system, the integrated shared database system, the integrated information interaction system, and the integrated functional system prototype system. It is also applied to the design and architecture design of the quantum computing test analysis system, the chip multi-physical field simulation system, and the project management system prototype system.
3. The method of claim 2, wherein, The method is applied to the software engineering products of the quantum computing test analysis auxiliary decision support system, the chip multi-physical field simulation auxiliary decision support system, and the project management system decision support system.
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