Claims
- 1. An integrated evaluation and simulation system for a ground combat vehicle, comprising:
a computer system programmed to implement a computational engine having a causal network model factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle, and to create an optimally combat effective virtual representation of the ground combat vehicle; at least one virtual simulation system operatively coupled to the computational engine for simulating the ground combat vehicle; and a user interface operatively coupled to at least the computer system for selectively inputting data into the computational engine and receiving information from the computational engine and the virtual simulation system.
- 2. The system of claim 1, wherein the critical combat effectiveness functional attributes are selected from a group of attributes consisting of mobility, lethality, survivability, C4I/Crew, and any combination of the foregoing, and wherein the constrained resources are cost and weight.
- 3. The system of claim 1, wherein a virtual representation of an opposing vehicle is created for simulating force-on-force combat.
- 4. The system of claim 1, wherein the at least one virtual simulation system is selected from a group of virtual simulation systems consisting of a Ground Wars Combat Effectiveness Model, an ARTQUIK model, and a NATO Reference Mobility Model II.
- 5. The system of claim 1, wherein the computational engine has a modular software architecture down to a vehicle component level, and wherein the modular software architecture has a plurality of modules wherein each module is represented by a separate subroutine.
- 6. The system of claim 1, wherein the computational engine alternatively runs in a mode selected from the group of modes consisting of a single-run mode, a dependencies mode, and a sensitivities mode.
- 7. The system of claim 1, wherein the operations simulator interface acts as a conduit between the causal network model and a third party virtual simulation system while preserving accredited status of the simulation system.
- 8. The system of claim 1, wherein the user interface has a menu driven graphical user interface.
- 9. The system of claim 8, wherein the graphical user interface has a quickview window for depicting a three-dimensional profile of the virtual representation of the ground combat vehicle.
- 10. The system of claim 1, wherein the computational engine has a control system that is at least partially based on gradient search methodology.
- 11. A system for a ground combat vehicle, comprising:
a computer system programmed to implement a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle, and to create a virtual representation of the ground combat vehicle; and a user interface operatively coupled to said computer system to selectively input data into and receive information from said computational engine.
- 12. A computer system programmed to implement a computational engine for optimizing combat effectiveness of a ground combat vehicle by determining an optimal set of design parameters for the ground combat vehicle that satisfy a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle, comprising:
a causal network model factoring at least one interrelationship among the critical combat effectiveness functional attributes and constrained resources; and a control system at least partly based on gradient search methodology, wherein the control system pulses the causal network model until each of the design parameters converges to within a predetermined error percentile.
- 13. The system of claim 12, wherein the predetermined error is ten percent for any single computed design parameter.
- 14. The system of claim 12, wherein the computational engine alternatively runs in a mode selected from the group of modes consisting of a single-run mode, a dependencies mode, and a sensitivities mode.
- 15. An integrated evaluation and simulation system for a ground combat vehicle, comprising:
computational means for having a causal network model factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle to create a virtual representation of the ground combat vehicle; simulation means for simulating a virtual representation of the ground combat vehicle, wherein the simulation means is operatively coupled to said computational means; and interface means for selectively inputting data into the computational means and receiving information from the computational means and the simulation means.
- 16. An integrated evaluation and simulation system for a ground combat vehicle, comprising:
a computer system programmed to implement a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle, and to create an optimally combat effective virtual representation of the ground combat vehicle, wherein the computational engine has a modular software architecture down to a vehicle component level, and wherein the modular software architecture has a plurality of modules wherein each module is represented by a separate subroutine; at least one virtual simulation system operatively coupled to the computational engine for simulating the ground combat vehicle; and a user interface operatively coupled to at least the computer system for selectively inputting data into the computational engine and receiving information from the computational engine and the virtual simulation system.
- 17. The system of claim 16, wherein the modular architecture has a first level, a second level, and a third level of categorizing subroutines; whereby the first level categorizes subroutines by primary parts of the computer system and the second level by function;
wherein the categories of the first level are graphical user interface, software to the control system, software to interface with a virtual simulation system, and models to compute performance, cost, and weight; wherein graphical user interface is subcategorized into the second level categories of input graphical user interface and output graphical user interface, software to the control system is subcategorized into the second level categories of software to control analysis and algorithms to control optimization, software to interface with a virtual simulation system is subcategorized into the second level categories of software for input interfaces and software for output interfaces, and software models to compute performance, cost, and weight is subcategorized into the second level categories of software models to compute performance, software models to compute cost, and software models to compute weight; and wherein input graphical user interface is further subcategorized into the third level categories of mobility input graphical user interface, survivability input graphical user interface, C4I/crew input graphical user interface, lethality input graphical user interface, scenario input graphical user interface, model control input graphical user interface, analysis input graphical user interface, and threat input graphical user interface, output graphical user interface is further subcategorized into the third level categories of mobility output graphical user interface, lethality output graphical user interface, survivability output graphical user interface, C4I/crew output graphical user interface, output graphical user interface for various virtual simulation systems, and analysis output graphical user interface, and software to control analysis is further subcategorized into the third level categories of software to control the single run mode, software to control the sensitivities mode, and software to control the dependencies mode.
- 18. An integrated evaluation and simulation system for a ground combat vehicle, comprising:
a computer system programmed to implement a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle, and to create an optimally combat effective virtual representation of the ground combat vehicle, and wherein the computational engine has a control system that is at least partially based on gradient search methodology; at least one virtual simulation system operatively coupled to the computational engine for simulating the ground combat vehicle; and a user interface operatively coupled to at least the computer system for selectively inputting data into the computational engine and receiving information from the computational engine and the virtual simulation system.
- 19. An integrated evaluation and simulation system for a ground combat vehicle, comprising:
a computer system programmed to implement a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle, and to create an optimally combat effective virtual representation of the ground combat vehicle, and wherein a degree of optimization of a virtual representation of the ground combat vehicle is selectively controllable; at least one virtual simulation system operatively coupled to the computational engine for simulating the ground combat vehicle; and a user interface operatively coupled to at least the computer system for selectively inputting data into the computational engine and receiving information from the computational engine and the virtual simulation system.
- 20. A method of integrated evaluation and simulation for allocating resources across a system architecture of a ground combat vehicle to optimize combat effectiveness of the ground combat vehicle, comprising:
a) providing a computer system having a user interface and a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle; b) providing at least one virtual simulation system; c) selectively inputting data into the computational engine to create a virtual representation of an optimally combat effective ground combat vehicle in relation to at least one of the plurality of critical combat effectiveness attributes; d) selectively running the virtual representation of the optimally combat effective ground combat vehicle in the at least one virtual simulation system; and e) utilizing information obtained from steps (c) and (d) to further enhance the virtual representation of the ground combat vehicle.
- 21. In a computer system, a computer-readable storage media storing at least one computer program that operates as an integrated evaluator and simulator for allocating resources across a system architecture of a ground combat vehicle to optimize combat effectiveness of the ground combat vehicle, the program comprising the steps of:
a) storing in the computer system a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle; b) obtaining data necessary for the program to create a virtual representation; c) running the computational engine to create the virtual representation of the ground combat vehicle; d) selectively sending the virtual representation to a virtual simulation system for simulating an operation of the ground combat vehicle; e) receiving information about the simulation of the operation of the ground combat vehicle; and f) utilizing information about said simulation to enhance said virtual representation.
- 22. A method of integrated evaluation and simulation for allocating resources across a system architecture of a ground combat vehicle to optimize combat effectiveness of the ground combat vehicle, comprising:
a) providing a computer system having a user interface and a computational engine factoring at least one interrelationship among a plurality of critical combat effectiveness functional attributes and constrained resources for the ground combat vehicle; b) selectively inputting data into the computational engine sufficient to create a representation of at least one ground combat vehicle having a main gun; c) establishing a layout for each vehicle; d) calculating ammunition requirements for each vehicle; e) calculating gun requirements for each vehicle; f) calculating gun mount requirements for each vehicle; g) calculating powertrain requirements for each vehicle; h) calculating main gun rate of fire for each vehicle; i) calculating hull and turret requirements for each vehicle; j) calculating magazine requirements for each vehicle; k) calculating vehicle suspension requirements for each vehicle; l) calculating mobility performance for each vehicle; m) calculating lethality performance and vulnerability for each vehicle; n) creating a virtual representation of the at least one ground combat vehicle; o) providing at least one virtual simulation system; p) selectively running the at least one virtual representation in the at least one virtual simulation system; and q) utilizing information obtained from steps (b) through (p) to further enhance the virtual representation of the at least one ground combat vehicle.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of a co-pending nonprovisional application, Integrated Evaluation and Simulation System for Military Weapon Systems, Ser. No. 09/824,512, filed Apr. 2, 2001, and incorporated herein by reference.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09824512 |
Apr 2001 |
US |
Child |
10115590 |
Apr 2002 |
US |