mission-architect

Translate high-level mission goals into budgets, requirements, and governance across ECSS/NASA phase gates.

17|Updated Feb 16, 2026
One-click install
npx skills add https://github.com/devideamax/aerospace-team --skill mission-architect
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: mission-architect
Source: https://github.com/devideamax/aerospace-team/tree/main/skills/mission-architect
Command: npx skills add https://github.com/devideamax/aerospace-team --skill mission-architect

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Integrates all spacecraft budgets, requirements, and design reviews into a single, traceable mission architecture, enabling coherent trade studies and lifecycle governance.

Core Features & Use Cases

  • Top-level budgets: mass, power, data, delta-v, thermal, link, and cost budgets aggregated across subsystems.
  • Requirements decomposition: flow-down from mission need (L0) to system (L1) and below (L2-L4) with traceability.
  • Design governance: supports ECSS/NASA phase gates (SRR, PDR, CDR, TRR, FRR) and formal trade studies.
  • Use Case: generate a complete architecture package for a new mission concept, including phase plan and risk register.

Quick Start

Trigger the skill with a mission objective, orbit, and payload model to generate an end-to-end mission architecture.

Frequently Asked Questions about mission-architect

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I translate high-level mission goals into traceable system budgets and requirements?

Mission architecture translates high-level goals into system budgets and requirements by decomposing mission needs from L0 down to L4, ensuring full traceability across mass, power, data, delta-v, thermal, link, and cost budgets.

What is the best way to manage spacecraft design reviews across ECSS and NASA phase gates?

Managing spacecraft design reviews across ECSS and NASA phase gates requires orchestrating formal milestones like SRR, PDR, CDR, TRR, and FRR within a single mission architecture to ensure coherent lifecycle governance and readiness.

Can I use a single workflow for both mission trade studies and requirements decomposition?

Yes, a single mission architecture workflow integrates formal trade studies with requirements decomposition, flowing mission needs down from L0 to L4 while maintaining a traceable risk register and margins policy.

How do I generate a complete architecture package for a new spacecraft mission concept?

To generate a complete architecture package for a new spacecraft mission concept, input the mission objective, orbit, and payload model to automate end-to-end phase planning, budget allocation, and readiness assessment.

Does mission architecture support technology readiness level assessment and FRR readiness?

Mission architecture supports technology readiness level (TRL) assessment and FRR readiness by aggregating system budgets, verifying requirements traceability, and applying risk and trade-study tooling across phase gates.

When do I need to implement formal margins policy in spacecraft system engineering?

Formal margins policy is needed throughout spacecraft system engineering to manage mass, power, data, and cost budgets across subsystems, ensuring design feasibility and compliance during phase gate reviews.