All Stories

  1. State of Systems Engineering Graduate Education as of 2023
  2. Accuracy of Citation Patterns in the Field of Systems Engineering: Benefits of MBSE
  3. A systematic literature review on the mathematical underpinning of model‐based systems engineering
  4. Emergent knowledge patterns in verification artifacts
  5. An ontology‐based digital test and evaluation master plan (dTEMP) compliant with DoD policy
  6. Formal Inconsistencies of Expertise Aggregation Techniques Commonly Employed in Engineering Teams
  7. A Systems-Theoretical Formalization of Closed Systems
  8. Transition From Scenario-Based to Outcome-Based Engineering in SE4AI
  9. A comparative experiment between textual requirements and model‐based requirements on proxies for contractual safety
  10. A UCB-Based Tree Search Approach to Joint Verification-Correction Strategy for Large-Scale Systems
  11. MBSE adoption experiences in organizations: Lessons learned
  12. Interpreting integrability
  13. Optimal verification strategy for general development plans using a belief‐based approach
  14. Introduction to the Systems Engineering’s Top Space Challenges Virtual Collection
  15. The Effects of Organizational Structure on MBSE Adoption in Industry: Insights from Practitioners
  16. A Mathematical Approach to Design Verification Strategies That Incorporate Corrective Activities as Dedicated Decisions
  17. Understanding Redundancy Requirements in the Design of Non-Serviceable Systems
  18. A Parallel Tempering Approach for Efficient Exploration of the Verification Tradespace in Engineered Systems
  19. Towards Developing Metrics to Evaluate Digital Engineering
  20. Expert Opinion Fusion Framework Using Subjective Logic for Fault Diagnosis
  21. An experimentation framework for validating architectural properties as proxies for the ilities
  22. Optimal verification strategies in multi‐firm projects
  23. Design of an IoT System for the Palletized Distribution Supply Chain with Model-Based Systems Engineering Tools
  24. Modeling correction activities in the context of verification strategies
  25. Conjoining Wymore’s Systems Theoretic Framework and the DEVS Modeling Formalism: Toward Scientific Foundations for MBSE
  26. Definition of New Space—Expert Survey Results and Key Technology Trends
  27. A systems‐theoretic articulation of stakeholder needs and system requirements
  28. A Methodology to Assess the Re-purposing of Manned Aircraft Airworthiness Standards for Unmanned Aircraft
  29. Shifting Paradigms in Verification and Validation of AI-Enabled Systems: A Systems-Theoretic Perspective
  30. Value and benefits of model‐based systems engineering (MBSE): Evidence from the literature
  31. An evaluation of the optimality of frequent verification for vertically integrated systems
  32. Coordination of verification activities with incentives: a two-firm model
  33. From Model-Based Requirements to a Virtual Systems Engineering Advisor that Identifies Gaps in Requirements: An Application to Space Systems
  34. Towards an Interface Description Template for Reusing AI-enabled Systems
  35. Efficient Population of the Verification Tradespace Using Bayesian Inference
  36. The role of aesthetic reasoning in knowledge management: the case of elegant systems architecture design
  37. Integrating Reliability in Systems Engineering Management
  38. Constructing True Model-Based Requirements in SysML
  39. Elemental patterns of verification strategies
  40. Systems thinking and mathematical problem solving
  41. Elegance as Complexity Reduction in Systems Design
  42. A mathematical model of verification strategies
  43. Conceptualization of a T-Shaped engineering competency model in collaborative organizational settings: Problem and status in the Spanish aircraft industry
  44. Foundations of conflicting requirements
  45. Reducing Excess Requirements: Effectiveness with Practitioners
  46. Heuristics to Identify Conflicting Requirements
  47. Systems engineering emerges in composing music
  48. Adaptive Requirements Prioritization (ARP)
  49. Abandonment in systems of systems
  50. Tension Matrix: Identifying Conflicting Requirements
  51. Evolution of Solution Spaces
  52. Reducing Problem Complexity: From Theory to Practice
  53. Problem Complexity
  54. A bigger solution space for more affordable solutions
  55. Anticipating Development and Integration Problems
  56. Reducing Problem Complexity with Fractionated Space Systems
  57. Orthogonal Categorization of Requirements Inspired by Max-Neef's Work
  58. Uncertainty Propagation in Requirements
  59. 5.5.2 Efficient and Effective Systems Integration and Verification Planning Using a Model-Centric Environment
  60. Elegant space systems: How do we get there?
  61. Elegant systems
  62. Systemigram for identifying stakeholders
  63. Taxonomy of Uncertainties and Their Dependencies
  64. In-flight measurement of radiation effects on electrical components
  65. Decision-Making, Information Seeking, and Compromise: A Simulation Game Activity in Global Industrial Management
  66. Industrial Engineering Beyond Numbers: Optimizing under Ethics
  67. Lessons Learned from a First Attempt to Teach Systems Engineering as a Studio Art Class
  68. Monetizing Life May Be the Ethical Thing to Do
  69. Reality Gaps in Industrial Engineering Senior Design or Capstone Projects
  70. Ambiguity as a key experience acceleration mechanism in a sophomore systems engineering course
  71. Quantifying the Ability of the Digital Engineering Factory to Address the Digital Engineering Competency Framework