A qualitative study of 60 novice engineers reports that a system-driven cloud architecture tool with proactive guidance and structured states makes initial design easier, reduces prompt-writing burden, and supports learning through iterative comparison.
System-driven Cloud Architecture Design Support with Structured State Management and Guided Decision Assistance
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abstract
Cloud architecture design is a complex process requiring both technical expertise and architectural knowledge to develop solutions from frequently ambiguous requirements. We present CloudArchitectBuddy, a system-driven cloud architecture design support application with two key mechanisms: (1) structured state management that enhances design understanding through explicit representation of requirements and architectural decisions, and (2) guided decision assistance that facilitates design progress through proactive verification and requirement refinement. Our study with 16 industry practitioners showed that while our approach achieved comparable design quality to a chat interface, participants rated our system higher for usability and appreciated its ability to help understand architectural relationships and identify missing requirements. However, participants also expressed a need for user-initiated interactions where they could freely provide design instructions and engage in detailed discussions with LLMs. These results suggest that integrating a chat interface into our structured and guided workflow approach would create a more practical solution, balancing systematic design support with conversational flexibility for comprehensive cloud architecture development.
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cs.HC 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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System-driven Interactive Design Support for Cloud Architecture: A Qualitative User Experience Study with Novice Engineers
A qualitative study of 60 novice engineers reports that a system-driven cloud architecture tool with proactive guidance and structured states makes initial design easier, reduces prompt-writing burden, and supports learning through iterative comparison.