CN106971014A - A kind of architecture design System and method for for Weapon System Virtual Prototyping model system - Google Patents

A kind of architecture design System and method for for Weapon System Virtual Prototyping model system Download PDF

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CN106971014A
CN106971014A CN201610023411.1A CN201610023411A CN106971014A CN 106971014 A CN106971014 A CN 106971014A CN 201610023411 A CN201610023411 A CN 201610023411A CN 106971014 A CN106971014 A CN 106971014A
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施国强
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Beijing Simulation Center
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Abstract

The present invention discloses a kind of architecture design System and method for for Weapon System Virtual Prototyping model system, and this method includes:S1, Weapon System Virtual Prototyping is decomposed into system, subsystem, equipment, component, part and each level virtual prototype of part, and digital collection description is carried out for the corresponding products in kind of virtual prototype;S2, to each level virtual prototype, carry out view decomposition;S3, to device level, component level, component-level and part level virtual prototype, carry out professional decomposition;S4, decomposed respectively to general view transmission definition, model and parameter based on view, using the general view under each virtual prototype as interface, index and demand that downstream virtual prototype general view transmission is decomposed, upstream virtual prototype general view Feedback Design and the result, framework Weapon System Virtual Prototyping collaboration system.Design of the present invention to totality of the armament systems based on virtual prototype, subsystem parallel collaborative design and verification experimental verification flow proposes Unified frame.

Description

A kind of architecture design System and method for for Weapon System Virtual Prototyping model system
Technical field
The present invention relates to the design of armament systems (Aeronautics and Astronautics, ship etc.) manufacturing enterprise digital coordination with System inspection technical field during experimental verification.It is used for weapon system more particularly, to one kind The architecture design System and method for for virtual prototype system of uniting.
Background technology
In recent years, by core of system modelling and emulation technology virtual prototype (Virtual Prototype, VP) technology is developed rapidly, and the Virtual Prototype Technique using all kinds of CAx and DFx technologies as representative is Many achievements in research are obtained in the every field and different phase of product development, especially Complex Product Development With successful application.Although virtual prototype (Virtual Prototype, VP) concept was early in 80 years last century In generation, proposes that its intension is evolving, the describing framework in all kinds of documents and elaboration emphasis and disunity, Model system framework especially using armament systems as the virtual prototype of the complex product of representative does not have also so far Relatively uniform design method.Due to lacking model system framework, different professional and different tissue with Role is for different engineering development targets, in different environment with the conditions of, for same weapon system There are different understandings in the product of the different levels of system virtual prototype.Weapon System Virtual Prototyping model is constituted It is that military project conglomerate implements with framework the most basic in the engineering design and simulation work based on virtual prototype Content.
Accordingly, it is desirable to provide a kind of architecture design system and side for Weapon System Virtual Prototyping model system Method, the common problem for each armament systems field proposes the composition and top layer of Weapon System Virtual Prototyping Interface proposes unified related request.
The content of the invention
It is an object of the present invention to provide a kind of framework for Weapon System Virtual Prototyping model system Design system and method, to totality of the armament systems based on virtual prototype, subsystem parallel collaborative design with The design of verification experimental verification flow proposes Unified frame, in this, as carry out virtual prototype related basic research, The basis of the work such as the implementation of development mode pilot and standard criterion formulation..
To reach above-mentioned purpose, the present invention uses following technical proposals:
A kind of architecture design method for Weapon System Virtual Prototyping model system, described this method includes:
S1, the Weapon System Virtual Prototyping is decomposed into system, subsystem, equipment, component, part With each level virtual prototype of part, and for the corresponding products in kind of each level virtual prototype press engineer applied Situation carries out digital collection description;
S2, to each level virtual prototype in the step S1, carry out view decomposition;
S3, the device level in the step S1, component level, component-level and part level virtual prototype, The step S2 views carry out professional decomposition on the basis of decomposing;
S4, based in the step S2 view decompose respectively to general view transmission integration definition, many Process model and critical performance parameters are spent, using the general view under each virtual prototype as interface, downstream Virtual prototype general view transmits the index and demand decomposed, and upstream virtual prototype general view feedback is set Meter and the result, framework Weapon System Virtual Prototyping collaboration system.
It is preferred that, the corresponding products in kind of each level virtual prototype described in the step S1 is by a production Product virtual prototype is corresponded to therewith;
The product virtual model machine includes a product systems virtual prototype and the virtual sample of the sub- level of several products Machine.
It is preferred that, each layer virtual prototype is decomposed according to function, performance and construction aspect in the step S2 For
Function view, it is corresponding with the task that each level products in kind faces in life cycle, towards It is each generic task and the activity of each level products in kind life cycle;
View is constructed, it is corresponding with the product physical composition with each level products in kind or software logic composition , towards be the design of each level products in kind and define;
Performance views, the subject related to each level products in kind, specialty are corresponding, towards be each The analysis of level products in kind, emulation and verification experimental verification.
It is preferred that, it is described
Function view further comprises confrontation between systems subprocess, operation or Campaign Process, assembling process, maintenance Process, support process;
Construction view further comprises mechanical system structure composition and interface, electrically, electronics, circuit, logical Letter, charge composition and interface, software composition and interface;
Performance views further comprise mechanics, electromagnetism, optics, information, control, mechanical electronic hydraulic integrated, System engineering, statistics.
It is preferred that, virtual prototype is decomposed into according to machinery, electronics and the aspect of software three in the step S3
Structure virtual prototype, is mechanical major model set, is product mainly from the angle of physics realization Machine Design, analysis, modification coordinate, assembling formed by model set;
Electronic virtual model machine, is Electronics model set, and electronics, electric, circuit mainly from product is special Property angle set out, carry out functional level, signal level model definition, build and analyze, reflection electronic circuit, Equipment, system composition, link information;
Software virtual prototype, is Software Specialty model set, mainly from soft project angle, uses form Change mode and standard language description, build, checking software product demand analysis, Preliminary design, in detail Model in terms of design, test.
A kind of architecture design system for Weapon System Virtual Prototyping model system, described system includes:
Weapon System Virtual Prototyping hierarchical decomposition module, be for the Weapon System Virtual Prototyping to be decomposed into System, subsystem, equipment, component, part and each level virtual prototype of part, and it is virtual for each level The corresponding products in kind of model machine carries out digital collection description by engineering application state;
Weapon System Virtual Prototyping view decomposes mould soon, for each level virtual prototype, carrying out view Decompose;
Weapon System Virtual Prototyping specialty decomposing module, for the device level, component level, component-level and Part level virtual prototype, carries out professional decomposition on the basis of view decomposition;
Weapon System Virtual Prototyping Solution Architecture module, for being decomposed based on view respectively to general view Transmission integration definition, many granularity process models and critical performance parameters, with total under each virtual prototype Stereogram is interface, index and demand that downstream virtual prototype general view transmission is decomposed, upstream empty Intend model machine general view Feedback Design and the result, framework Weapon System Virtual Prototyping collaboration system.
It is preferred that, each level virtual prototype pair described in the Weapon System Virtual Prototyping hierarchical decomposition module The products in kind answered is corresponded to therewith by a product virtual model machine;
The product virtual model machine includes a product systems virtual prototype and the virtual sample of the sub- level of several products Machine.
It is preferred that, according to function, performance and construction side during the Weapon System Virtual Prototyping view decomposition mould is fast Each layer virtual prototype is decomposed into by face
Function view, it is corresponding with the task that each level products in kind faces in life cycle, towards It is each generic task and the activity of each level products in kind life cycle;
View is constructed, it is corresponding with the product physical composition with each level products in kind or software logic composition , towards be the design of each level products in kind and define;
Performance views, the subject related to each level products in kind, specialty are corresponding, towards be each The analysis of level products in kind, emulation and verification experimental verification.
It is preferred that, it is described
Function view further comprises confrontation between systems subprocess, operation or Campaign Process, assembling process, maintenance Process, support process;
Construction view further comprises mechanical system structure composition and interface, electrically, electronics, circuit, logical Letter, charge composition and interface, software composition and interface;
Performance views further comprise mechanics, electromagnetism, optics, information, control, mechanical electronic hydraulic integrated, System engineering, statistics.
It is preferred that, according to machinery, electronics and software three in the professional decomposing module of the Weapon System Virtual Prototyping Virtual prototype is decomposed into by aspect
Structure virtual prototype, is mechanical major model set, is product mainly from the angle of physics realization Machine Design, analysis, modification coordinate, assembling formed by model set;
Electronic virtual model machine, is Electronics model set, and electronics, electric, circuit mainly from product is special Property angle set out, carry out functional level, signal level model definition, build and analyze, reflection electronic circuit, Equipment, system composition, link information;
Software virtual prototype, is Software Specialty model set, mainly from soft project angle, uses form Change mode and standard language description, build, checking software product demand analysis, Preliminary design, in detail Model in terms of thin design, test.
Beneficial effects of the present invention are as follows:
The invention provides a kind of architecture design system for Weapon System Virtual Prototyping model system and side Method, technical advantage and application direction of the invention show the following aspects compared with prior art:
1) design of virtual prototype architectural framework directly lifts virtual prototype in type figureization application Engineering degree, systematicness and operability;
2) virtual prototype architectural framework directly supports virtual prototype correlation model to be looked forward in Weapon System Development Sharing, promoting and follow-up digitlization development standard formulation work in the range of industry;
3) data structure and reference model described in virtual prototype architectural framework, directly draw weapon Demand analysis, system constructing and the application implementation work of system engineering digital applications platform and tool software.
Brief description of the drawings
The embodiment to the present invention is described in further detail below in conjunction with the accompanying drawings.
Fig. 1 shows a kind of weapon system for Weapon System Virtual Prototyping model system in the embodiment of the present invention Virtual prototype composition of uniting is schemed;
Fig. 2 shows that a kind of armament systems of Weapon System Virtual Prototyping model system in the embodiment of the present invention are empty Intend the view composition figure of model machine;
Fig. 3 shows a kind of being regarded based on overall for Weapon System Virtual Prototyping model system in the embodiment of the present invention The cooperative figure of the Weapon System Virtual Prototyping of figure.
Embodiment
In order to illustrate more clearly of the present invention, the present invention is done into one with reference to preferred embodiments and drawings The explanation of step.Similar part is indicated with identical reference in accompanying drawing.Those skilled in the art It should be appreciated that following specifically described content is illustrative and be not restrictive, it should not be limited with this Protection scope of the present invention.
As shown in figure 1, the invention discloses a kind of framework for Weapon System Virtual Prototyping model system Design method, the core of this method is according to engineer applied feelings by any level products in kind under armament systems Condition can be described its corresponding virtual prototype as a model set, and according to different views, Tissue, analysis are gone by way of contrasting model machine and its existing development mode and models coupling is illustrated, Realize the virtual prototype System Design under unified system framework.
The following features of Weapon System Virtual Prototyping are characterized by model system framework, armament systems are virtual Model machine is the mathematical model set corresponding with armament systems products in kind, generally comprise system, subsystem, The levels such as equipment.Its definition, simulation, verification experimental verification and assessment in terms of construction, function and performance are real Produce product, are the Main Basiss of Activities in products in kind Life cycle.
This method includes:
S1, the Weapon System Virtual Prototyping is decomposed into system, subsystem, equipment, component, part With the virtual prototype of part each level;
S2, to each level virtual prototype in the step S1, from function, three views of performance and construction Mode carries out view decomposition;
S3, the device level in the step S1, component level, component-level and part level virtual prototype, Step S2 views carry out professional decomposition on the basis of decomposing from machinery, three product specialties of electronics and software;
S4, general view are controlled to the virtual prototype maturity of conceptual level, and cooperate with, integrate, Weigh and optimize the design and analysis result between each view so that each class model is consistent in model set The harmony of property, reusability and model interface, framework Weapon System Virtual Prototyping collaboration system.
In step S1, according to《Product level, product interchangeability, model machine and relevant term》, from simple To complicated longitudinal arrangement, product level include part, part, component, unit piece, unit, device, Subsystem, system.The present invention by Weapon System Virtual Prototyping be divided into system, subsystem, equipment, component, The level such as part and part.
For the virtual prototype of any level under armament systems, any level is the base around products in kind This composition, is described according to engineering application state using its corresponding virtual prototype as a model set. Figure is constituted according to the Weapon System Virtual Prototyping of Weapon System Virtual Prototyping model system framework, is realized unified Virtual prototype System Design under architectural framework.
As shown in figure 1, using virtual prototype as a model set, for the products in kind of different levels, Corresponded to therewith by one and only one product virtual model machine, a production is included inside product virtual model machine Strain system virtual prototype and the sub- level virtual prototype of several products, product systems virtual prototype and the sub- level of product Virtual prototype is all made up of several mathematical models.In a word, product virtual model machine is a mathematical model collection Close, can specifically divide into the virtual of the levels such as system, subsystem, equipment, component, part and part Model machine.
In step S2, because the virtual prototype of each level is a mathematical model set, then need further Model set is decomposed in the way of view is decomposed.As shown in Figures 2 and 3, around weapon system The functional characteristic and physical characteristic of system, recognize and carry according to function, performance, construction and overall four views High model set description, the integrality and relevance that build and apply.
(1) function view
The task that function view is with each level products in kind faces in life cycle is corresponding, is face It is also that virtual prototype builds and applied supported main target to each generic task of life cycle and activity One of, it is main to include two aspects:On the one hand it is that product needs the fight function and task of satisfaction, including body System's confrontation subprocess and (operation) process of fighting;On the other hand be Product Assembly, maintenance, using, The task for the function or completion realized is needed in training and support process, including assembling process, was repaired Journey and support process.Two aspects all show as the implementation process of specific tasks, and patrolling in implementation process Volume/sequential, operating mode/condition and border/environment/interference etc..
(2) view is constructed
View is constructed, is patrolled with product physics (the machinery, electronics) composition or software of each level products in kind Volume composition it is corresponding, towards be design and definition.It describes product in machinery, electronics and software In terms of definition and design result, reflect product form structure, the physical attribute of each level product Or the physical or logical interface relation between the definition of logical attribute, and each composition.Mainly include:Machine Tool system architecture is constituted and interface (geometry, non-geometric;Material, technique);Electrically (electronics, circuit, Communication, charge) constitute and interface (material, technique);Software is constituted and interface.
(3) performance views
Performance views, the subject/specialty related to each level products in kind is corresponding, towards be analysis, Emulation and verification experimental verification.It towards each level product analysis, emulation and verification experimental verification working contents, It is according to the physics subjects such as power, heat, light, electricity, facing Information Science, control subject, system engineering subject etc. Subject is to the performance of each level product with entering in terms of efficiency, the reliability maintainability and supportability of product Row analysis and checking, are substantially the set of theoretical, engineering equation/inequality and parameters/properties.It is main Including:Mechanics (kinematics, statics, dynamics;Flight mechanics/trajectory, hydrodynamics/air water be dynamic, Intensity, load etc.);Electromagnetism, optics;Information, control (mechanical electronic hydraulic integrated), system engineering, system Meter.
(4) general view
General view, the simplification of Virtual model machine itself, the description on border and envelope and virtual with other Collaboration between model machine, is that the state of the art and maturity of virtual prototype are recognized and controlled, essence On be multi- disciplinary integrated/mathematical optimization models, comprehensive simulating/experimental design model for being merged with actual loading test and The definition of virtual prototype and Controlling model.The major function of general view includes:Simplification, border, envelope; State of the art/maturity identification and control;Multi- disciplinary integrated/optimization design;The synthesis merged with actual loading test Emulation/experimental design;The definition and control of Integrated Model.
In addition, function view is to performance views transmission tasks requirement/operating mode, boundary condition/environment/interference etc. Information, performance views are to information such as function view transfer performance, efficiency, maintenanceability, reliabilities;Structure Make the information such as composition, definition and interface that view transmits physical/logical to performance views, performance views are to structure Make the information such as view transmission space, layout, compatibility, matching, harmony;Function view is to construction The information such as view transmission dynamic behaviour/sequential, border, environment, construction view transmits static to function view The information such as the definition of structure and interface.
In step S3, Weapon System Virtual Prototyping specialty decompose emphasis be directed to device level, component level, Concrete model under the product of the level such as component-level and part, construction, function and performance views generally embodies In the specialty such as machinery, electronics and software, these specialties have relatively independent upstream and downstream technical requirements, Development task (conceptual design of such as engineering goods, Technology design, productivity design) and digitlization are ground The basic research content of molding formula.According to virtual prototype application demand, for device level, component-level or group The level products such as part level, on the model composition of virtual prototype, the product system being required for except products at different levels System virtual prototype, it is right from machinery, electronics and three product specialties of software for the sub- level virtual prototype of product General construction, work(obtained by being decomposed in step S2 in the way of view is decomposed to model set Model set under energy and performance views carries out professional decomposition and reconfigured, and forms mechanical, electronics and soft The related models coupling of the specialty such as part.
Structure virtual prototype:The main angle from product physics realization of mechanical major model set, is product Machine Design, analysis, modification coordinate, assembling formed by model set, the knot of product can be reflected Configuration formula, physical dimension, weight, centroid position, rotary inertia, key gap size, structure phase To information such as position relationship, the working conditions being in, the Space configuration of physical product is supported to coordinate and engineering Analysis.Also, at this stage, the Product Definition of mechanical major model major integration product (constructs view Content) and Structural Engineering analysis with design optimization (i.e. the contents of performance views), by take turns more iteration with The continuous lifting of maturity, meets the product systems virtual prototype for quality, space, load, intensity Etc. function and the design requirement of aspect of performance, and technological design downstream, Fixture Design, product dimension The structural information that link transmits product such as repair, use.
Electronic virtual model machine:Main electronics, the electric, circuit characteristic from product of Electronics model set Angle is set out, and is carried out functional level, the definition of signal level model, is built and analyze, reflection electronic circuit, Equipment, system composition, connection etc. information, meet the product systems virtual prototype for precision, frequency, The design requirement of the electric functions such as spatial coverage and aspect of performance, and downstream transmit electronic product Manufacture information.
Software virtual prototype:Software Specialty model set is main from soft project angle, with formalization Mode and standard language description, build, checking software product demand analysis, Preliminary design, in detail Model in terms of design, test, realizes the software development model based on model, improves the reuse of software Property, support Requirement Decomposition, functional verification, design analysis and the code building of software product, typical bag Include winged control, survey the model number softwares such as hair control, charge.
In step S4, definition, structure, emulation are passed through based on the model in each view in step S2 And checking, the result for requiring or receiving other views feedback can be exported to other views.General view Virtual prototype maturity to the conceptual level is controlled, and is cooperateed with, integrates, weighs and optimized each and regard Design and analysis result between figure, it is ensured that uniformity of each class model in the model set of virtual prototype, The harmony of reusability and model interface.
Further, due to each layer product of armament systems include system, subsystem, equipment, component, part, Be between the virtual prototypes such as part technical indicator decompose downwards step by step and product it is upward step by step integrated with testing The process of card, is the overall Iterative Design between each specialty, each composition and verification process inside it.That is, Virtual prototype association between each product form shows as the upstream and downstream conspiracy relation between general view, As shown in figure 3, the process of collaboration is to construct view, function view, performance views respectively to general view Transmission integration definition, many granularity process models and critical performance parameters, further, with each virtual sample General view under machine is interface, index and demand that downstream virtual prototype general view transmission is decomposed, Upstream virtual prototype general view Feedback Design and the result.
The invention also discloses a kind of architecture design system for Weapon System Virtual Prototyping model system, The system includes Weapon System Virtual Prototyping hierarchical decomposition module, for the Weapon System Virtual Prototyping to be divided Solve as system, subsystem, equipment, component, part and each level virtual prototype of part, and for each layer The corresponding products in kind of level virtual prototype carries out digital collection description by engineering application state;Armament systems are empty Intend model machine view and decompose mould soon, for each level virtual prototype, carrying out view decomposition;Armament systems Virtual prototype specialty decomposing module, for the device level, component level, component-level and the virtual sample of part level Machine, carries out professional decomposition on the basis of view decomposition;Weapon System Virtual Prototyping Solution Architecture module, For being decomposed respectively to general view transmission integration definition, many granularity process models and key based on view Performance parameter, using the general view under each virtual prototype as interface, downstream virtual prototype general view The index and demand decomposed are transmitted, upstream virtual prototype general view Feedback Design and the result, frame Structure Weapon System Virtual Prototyping collaboration system.
The corresponding products in kind of each level virtual prototype described in Weapon System Virtual Prototyping hierarchical decomposition module Corresponded to therewith by a product virtual model machine;The product virtual model machine includes a virtual sample of product systems Machine and the sub- level virtual prototype of several products.
It is according to function, performance and construction aspect that each layer is virtual during Weapon System Virtual Prototyping view decomposition mould is fast Model machine is decomposed into:
(1) function view, face corresponding with the task that each level products in kind faces in life cycle To be each level products in kind life cycle each generic task and activity;Function view further comprises system Resist subprocess, operation or Campaign Process, assembling process, maintenance process, support process;
(2) view is constructed, with the product physical composition with each level products in kind or software logic composition phase It is corresponding, towards be the design of each level products in kind and define;Construction view further comprises mechanical system Structure composition of uniting and interface, electric, electronics, circuit, communication, charge composition and interface, software composition And interface;
(3) performance views, the subject related to each level products in kind, specialty are corresponding, towards It is each level products in kind analysis, emulation and verification experimental verification.Performance views further comprise mechanics, electromagnetism , optics, information, control, mechanical electronic hydraulic integrated, system engineering, statistics.
According to machinery, electronics and the aspect of software three by virtual sample in Weapon System Virtual Prototyping specialty decomposing module Machine is decomposed into:
(1) structure virtual prototype, is mechanical major model set, mainly from the angle of physics realization, is The Machine Design of product, analysis, modification are coordinated, model set formed by assembling;
(2) electronic virtual model machine, is Electronics model set, electronics main from product, electrically, Circuit characteristic angle is set out, and is carried out functional level, the definition of signal level model, is built and analyze, reflection electricity Sub-line road, equipment, system composition, link information;
(3) software virtual prototype, is Software Specialty model set, mainly from soft project angle, Described, built with the mode and standard language of formalization, checking software product is set in demand analysis, tentatively Model in terms of meter, detailed design, test.
In summary, technical scheme of the present invention is by realizing to armament systems based on virtual prototype The design of overall, subsystem parallel collaborative design and verification experimental verification flow proposes Unified frame, and is made with this To carry out the work such as virtual prototype related basic research, development mode pilot are implemented and standard criterion is formulated Basis.
Obviously, the above embodiment of the present invention is only intended to clearly illustrate example of the present invention, and It is not the restriction to embodiments of the present invention, for those of ordinary skill in the field, It can also be made other changes in different forms on the basis of described above, here can not be to all Embodiment be exhaustive, it is every to belong to the obvious change that technical scheme is extended out Change or change the row still in protection scope of the present invention.

Claims (10)

1. a kind of architecture design method for Weapon System Virtual Prototyping model system, it is characterised in that Described this method includes:
S1, the Weapon System Virtual Prototyping is decomposed into system, subsystem, equipment, component, part With each level virtual prototype of part, and for the corresponding products in kind of each level virtual prototype press engineer applied Situation carries out digital collection description;
S2, to each level virtual prototype in the step S1, carry out view decomposition;
S3, the device level in the step S1, component level, component-level and part level virtual prototype, The step S2 views carry out professional decomposition on the basis of decomposing;
S4, based in the step S2 view decompose respectively to general view transmission integration definition, many Process model and critical performance parameters are spent, using the general view under each virtual prototype as interface, downstream Virtual prototype general view transmits the index and demand decomposed, and upstream virtual prototype general view feedback is set Meter and the result, framework Weapon System Virtual Prototyping collaboration system.
2. architecture design method according to claim 1, it is characterised in that institute in the step S1 The corresponding products in kind of each level virtual prototype is stated to correspond to therewith by a product virtual model machine;
The product virtual model machine includes a product systems virtual prototype and the virtual sample of the sub- level of several products Machine.
3. architecture design method according to claim 1, it is characterised in that pressed in the step S2 Each layer virtual prototype is decomposed into terms of according to function, performance and construction
Function view, it is corresponding with the task that each level products in kind faces in life cycle, towards It is each generic task and the activity of each level products in kind life cycle;
View is constructed, it is corresponding with the product physical composition with each level products in kind or software logic composition , towards be the design of each level products in kind and define;
Performance views, the subject related to each level products in kind, specialty are corresponding, towards be each The analysis of level products in kind, emulation and verification experimental verification.
4. architecture design method according to claim 3, it is characterised in that described
Function view further comprises confrontation between systems subprocess, operation or Campaign Process, assembling process, maintenance Process, support process;
Construction view further comprises mechanical system structure composition and interface, electrically, electronics, circuit, logical Letter, charge composition and interface, software composition and interface;
Performance views further comprise mechanics, electromagnetism, optics, information, control, mechanical electronic hydraulic integrated, System engineering, statistics.
5. architecture design method according to claim 1, it is characterised in that pressed in the step S3 Virtual prototype is decomposed into according to machinery, electronics and the aspect of software three
Structure virtual prototype, is mechanical major model set, is product mainly from the angle of physics realization Machine Design, analysis, modification coordinate, assembling formed by model set;
Electronic virtual model machine, is Electronics model set, and electronics, electric, circuit mainly from product is special Property angle set out, carry out functional level, signal level model definition, build and analyze, reflection electronic circuit, Equipment, system composition, link information;
Software virtual prototype, is Software Specialty model set, mainly from soft project angle, uses form Change mode and standard language description, build, checking software product demand analysis, Preliminary design, in detail Model in terms of thin design, test.
6. a kind of architecture design system for Weapon System Virtual Prototyping model system, it is characterised in that The described system includes:
Weapon System Virtual Prototyping hierarchical decomposition module, be for the Weapon System Virtual Prototyping to be decomposed into System, subsystem, equipment, component, part and each level virtual prototype of part, and it is virtual for each level The corresponding products in kind of model machine carries out digital collection description by engineering application state;
Weapon System Virtual Prototyping view decomposes mould soon, for each level virtual prototype, carrying out view Decompose;
Weapon System Virtual Prototyping specialty decomposing module, for the device level, component level, component-level and Part level virtual prototype, carries out professional decomposition on the basis of view decomposition;
Weapon System Virtual Prototyping Solution Architecture module, for being decomposed based on view respectively to general view Transmission integration definition, many granularity process models and critical performance parameters, with total under each virtual prototype Stereogram is interface, index and demand that downstream virtual prototype general view transmission is decomposed, upstream empty Intend model machine general view Feedback Design and the result, framework Weapon System Virtual Prototyping collaboration system.
7. architecture design system according to claim 6, it is characterised in that the armament systems are empty Intend the corresponding products in kind of each level virtual prototype described in model machine hierarchical decomposition module by a product void Intend model machine to correspond to therewith;
The product virtual model machine includes a product systems virtual prototype and the virtual sample of the sub- level of several products Machine.
8. architecture design system according to claim 6, it is characterised in that the armament systems are empty Intend being decomposed into each layer virtual prototype according to function, performance and construction aspect during model machine view decomposition mould is fast
Function view, it is corresponding with the task that each level products in kind faces in life cycle, towards It is each generic task and the activity of each level products in kind life cycle;
View is constructed, it is corresponding with the product physical composition with each level products in kind or software logic composition , towards be the design of each level products in kind and define;
Performance views, the subject related to each level products in kind, specialty are corresponding, towards be each The analysis of level products in kind, emulation and verification experimental verification.
9. architecture design system according to claim 8, it is characterised in that described
Function view further comprises confrontation between systems subprocess, operation or Campaign Process, assembling process, maintenance Process, support process;
Construction view further comprises mechanical system structure composition and interface, electrically, electronics, circuit, logical Letter, charge composition and interface, software composition and interface;
Performance views further comprise mechanics, electromagnetism, optics, information, control, mechanical electronic hydraulic integrated, System engineering, statistics.
10. architecture design system according to claim 6, it is characterised in that the armament systems are empty Virtual prototype is decomposed into according to machinery, electronics and the aspect of software three in the professional decomposing module of plan model machine
Structure virtual prototype, is mechanical major model set, is product mainly from the angle of physics realization Machine Design, analysis, modification coordinate, assembling formed by model set;
Electronic virtual model machine, is Electronics model set, and electronics, electric, circuit mainly from product is special Property angle set out, carry out functional level, signal level model definition, build and analyze, reflection electronic circuit, Equipment, system composition, link information;
Software virtual prototype, is Software Specialty model set, mainly from soft project angle, uses form Change mode and standard language description, build, checking software product demand analysis, Preliminary design, in detail Model in terms of thin design, test.
CN201610023411.1A 2016-01-14 2016-01-14 A kind of architecture design System and method for for Weapon System Virtual Prototyping model system Pending CN106971014A (en)

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107679720A (en) * 2017-09-20 2018-02-09 北京安怀信科技股份有限公司 A kind of virtual prototype construction method based on pyramid pattern
CN108733898A (en) * 2018-04-28 2018-11-02 上海烜翊科技有限公司 Attack Defence Antagonism Simulation System method and analogue system based on architectural framework data
CN108733897A (en) * 2018-04-28 2018-11-02 上海烜翊科技有限公司 Attack-defense Confrontation Simulation System based on architectural framework model and emulation mode
CN109145122A (en) * 2018-08-02 2019-01-04 北京仿真中心 A kind of product know-how map construction and querying method and system
CN109784686A (en) * 2018-12-27 2019-05-21 北京航天智造科技发展有限公司 Product Overall Lifecycle Management System and method
CN112099784A (en) * 2020-08-18 2020-12-18 西安合科软件有限公司 Model creation method and device
CN112485554A (en) * 2020-10-21 2021-03-12 北京电子工程总体研究所 Electrical performance test platform for complex product
CN112507037A (en) * 2020-12-08 2021-03-16 上海数设科技有限公司 Digital main line definition method and system based on product prototype and computer model
CN112560264A (en) * 2020-12-15 2021-03-26 北京动力机械研究所 Aerospace dynamic design simulation system architecture and method based on two-library four-layer architecture

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140032660A (en) * 2012-09-07 2014-03-17 국방과학연구소 Fabrication method of cone type composite lattice structures

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140032660A (en) * 2012-09-07 2014-03-17 국방과학연구소 Fabrication method of cone type composite lattice structures

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
施国强等: "武器系统虚拟样机参考模型研究", 《系统仿真技术及其应用》 *
陶栾等: "基于虚拟样机的多学科优化技术研究与应用", 《系统仿真学报》 *

Cited By (13)

* Cited by examiner, † Cited by third party
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CN107679720A (en) * 2017-09-20 2018-02-09 北京安怀信科技股份有限公司 A kind of virtual prototype construction method based on pyramid pattern
CN108733897B (en) * 2018-04-28 2021-04-30 上海烜翊科技有限公司 Attack-defense countermeasure simulation system and simulation method based on architecture model
CN108733898A (en) * 2018-04-28 2018-11-02 上海烜翊科技有限公司 Attack Defence Antagonism Simulation System method and analogue system based on architectural framework data
CN108733897A (en) * 2018-04-28 2018-11-02 上海烜翊科技有限公司 Attack-defense Confrontation Simulation System based on architectural framework model and emulation mode
CN109145122A (en) * 2018-08-02 2019-01-04 北京仿真中心 A kind of product know-how map construction and querying method and system
CN109784686A (en) * 2018-12-27 2019-05-21 北京航天智造科技发展有限公司 Product Overall Lifecycle Management System and method
CN109784686B (en) * 2018-12-27 2023-11-24 北京航天智造科技发展有限公司 Product full life cycle management system and method
CN112099784A (en) * 2020-08-18 2020-12-18 西安合科软件有限公司 Model creation method and device
CN112485554A (en) * 2020-10-21 2021-03-12 北京电子工程总体研究所 Electrical performance test platform for complex product
CN112507037A (en) * 2020-12-08 2021-03-16 上海数设科技有限公司 Digital main line definition method and system based on product prototype and computer model
CN112507037B (en) * 2020-12-08 2022-12-09 上海数设科技有限公司 Digital main line definition method and system based on product prototype and computer model
CN112560264A (en) * 2020-12-15 2021-03-26 北京动力机械研究所 Aerospace dynamic design simulation system architecture and method based on two-library four-layer architecture
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