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OMG OMG-OCSMP-MBA400 Exam Syllabus Topics:
| Section | Objectives |
| Behavior Modeling and System Dynamics | - Advanced activity and state modeling
- 1. Concurrent and synchronized behaviors
- 2. State machine design for complex systems
- Interaction modeling
- 1. Communication between system components
- 2. Sequence modeling for system scenarios
|
| Model-Based Systems Engineering (MBSE) Practices | - System architecture development
- 1. System decomposition strategies
- 2. Logical and physical architecture alignment
- Model consistency and validation
- 1. Cross-diagram consistency rules
- 2. Model verification techniques
|
| Advanced Modeling Integration | - System lifecycle considerations
- 1. Configuration and versioning concepts
- 2. Model evolution across development phases
- Allocation relationships
- 1. Requirement-to-design traceability
- 2. Behavior-to-structure allocation
|
| Parametric and Analytical Modeling | - Trade-off and performance analysis
- 1. Design evaluation using parametric models
- 2. Optimization considerations in system design
- Parametric constraints
- 1. Constraint blocks and equations
- 2. Engineering analysis integration
|
| Advanced SysML Modeling Concepts | - Advanced requirement modeling and traceability
- 1. Derivation, refinement, and verification relationships
- 2. Requirement allocation to system elements
- Advanced structure modeling
- 1. Complex block definition structures
- 2. Interface and port-based system decomposition
|
OMG-Certified Systems Modeling Professional - Model Builder - Advanced Sample Questions:
1. Choose the correct answer
The lead systems engineer on a project has identified a set of Key Performance Parameters (KPPs) that need to be evaluated both on a periodic basis during development, and during acceptance for everydesign change.
Many of these KPPs are expressed In complex, interrelated differential equations The analysis team has identified appropriate numerical techniques for solving these equations and expressed them in a popular analysis tool.
The lead system modeler and methodologist must ensure that the architecture and design captured in the SysML system model are continuously and accurately reflected In the KPP calculations.
Which strategy is likely to be most successful in accomplishing this?
A) List the parameters used to evaluate the KPPs in a spreadsheet file. Use the SysML modeling tool's inherent capability to link appropriate value properties to cells in this spreadsheet Task the analysis team with modifying their analysis routines to accept parameters as an input vector from this spreadsheet.
Ensure that the spreadsheet is updated from the system model prior to each update of the KPP calculations
B) Task the analysis learn with recasting each of the KPP equations as constraint blocks and parametric models directly in SysML and linking the resulting parameters to value properties of current system model elements Keeping all information in the same model is the only way to guarantee the consistency the lead engineer has asked for
C) Use activity and/or state models to accurately model the flow of data to numerically solve the KPP evaluation equations Ensure that the analysis team validates these behavior models Bind each relevant value property within the system model to an activity parameter or state variable such that the KPP evaluation model accurately reflects how the KPPs are derived. Next, use code generation capability inherent in the SysML tool to generate and compile the KPP evaluation routines Recompile and run these routines as needed to update KPP estimates
D) Work with the analysis team to partition the KPP evaluation model into manageable, reusable subroutines Develop constraint blocks within the SysML model to represent these subroutines, exposing their parameters. Use these new constraint blocks to build a parametric model that ties the KPP evaluation directly to system model element value properties. Leverage available bridging software to link this parametric model to the evaluation subroutines executing in the external analysis tool, and re-evaluate the KPPs on an as-needed basis
2. Choose the correct answer
Modehca solvers can produce large volumes of time-based results (such as time-based power usage), but requirements are often based on scalar values such as "maximum peak power" and 'average power usage".
Which of the following is generally the most effective way to verify such requirements?
A) ave the Modelica solver also compute these scalar values from its time-based power usage results Then import the resulting scalar values into SysML. and compare them to the requirements.
B) Modelica models can only produce time-based results and thus cannot support scalar results like these, which must either be calculated using a different tool or measured on physical prototypes Then enter the resulting scalar values into SysML, and compare them to the requirements
C) Use the SysML4Modelica profile to transform the Modelica time-based power usage results into these scalar values Then import the resulting scalar values into SysML, and compare them to the requirements.
D) Import the Modelica time-based power usage results into SysML Then use SysML parametncs to calculate these scalar values, and compare them to the requirements
3. Choose the correct answer
How is the concept of coupling used to assess model quality?
A) High coupling leads to poof model quality because it decreases reuse potential and prevents independent modification of system elements
B) High coupling leads to good model quality provided all blocks in a structural model exhibit the same average degree of coupling
C) Coupling has no bearing on model quality because no metrics exist for measuring the level of coupling of SysML models
D) Low coupling leads to poor model quality because all parts of a system must be properly coupled in order to measure the completeness of the model
4. Choose the correct answer
A project is developing a distributed information system that will be "open" in the following ways.
(a) The system-level models will be published for the world to see.
(b) Others will be encouraged to submit change requests to the system models. (Changes will be identified by stereotypes.) (c) Others will be encouraged to develop additional subsystems and plug-ins The information system is expected to be in use for at least ten years What is(are) the most important consideration(s) in selecting a SysML modeling tool for this project?
A) compatibility with AP233; the ability to enforce strict compliance with the SysML standard; and the ability to query models based on user-defined criteria
B) compatibility with XMI. the ability to enforce strict compliance with the SysML standard and the ability to query models based on user- defined criteria
C) compatibility with XMI. the ability to enforce strict compliance with UML4SysML. and the ability to query models based on user-defined criteria
D) the ability to enforce strict compliance with XMI. AP233 and SysML standards
5. Choose the correct answer
in executing a model-based systems engineering methodology, what should the first step m building the model be?
A) Define the initial model organization.
B) Define the business or enterprise use cases.
C) Define the initial set of system requirements
D) Define the domain model structure
Solutions:
Question # 1 Answer: A | Question # 2 Answer: A | Question # 3 Answer: A | Question # 4 Answer: B | Question # 5 Answer: A |