
V2X Architecture & Requirements Analyzer
Analyze V2X protocols, latency requirements, and interoperability specs for connected vehicle arc...
What You Can Do
You can comprehensively analyze V2X (Vehicle-to-Everything) communication architectures by evaluating DSRC vs. C-V2X trade-offs, defining latency budgets for specific use cases like collision avoidance and cooperative driving, and mapping regulatory requirements across EU, NHTSA, and China frameworks. The skill helps you identify interoperability bottlenecks between OEMs, infrastructure, and ecosystem partners while building release requirements that balance innovation with market readiness.
Features
compare technology maturity, spectrum availability, latency performance, and ecosystem support
define minimum latency requirements for collision avoidance, cooperative driving, and infrastructure communication scenarios
align EU, NHTSA, and China V2X standards with technical product specifications and compliance timelines
evaluate SAE J2735 vs. ETSI ITS-G5 implementation costs, bandwidth requirements, and cross-region compatibility
identify bottlenecks in OEM-to-infrastructure, V2V, V2I, V2P, and V2N communication paths
assess PKI authentication, pseudonymity requirements, and certificate management against deployment timelines
structure phased V2X feature releases aligned with hardware capabilities, software maturity, and market adoption curves
create PRDs linking business objectives, regulatory constraints, technical specifications, and vendor ecosystem capabilities
Example Output
Example 1: DSRC vs. C-V2X Decision Framework
Technology Comparison:
✓ DSRC: Proven interoperability, higher latency (100ms), limited spectrum evolution
✓ C-V2X: Future-proof (5G integration), lower latency (50-100ms), stronger OEM adoption in China/EU
Recommendation: C-V2X for Gen 2+ with DSRC fallback in markets requiring legacy support (NA pilots through 2025)
Example 2: Collision Avoidance Use Case — Latency Budget Breakdown
End-to-End Latency Requirement: ≤100ms
├─ Detection & processing: 20ms
├─ Message transmission: 30ms
├─ Reception & decoding: 20ms
├─ Decision logic: 20ms
└─ Actuator response: 10ms
Gap Analysis: Current C-V2X stack achieves 65ms; requires protocol optimization for 100% margin
Example 3: Interoperability Matrix
V2I Message Format Compatibility (SAE J2735 SPAT/MAP):
✓ Ford/GM/Tesla implementations: 92% compliant
⚠ Chinese OEMs (Li Auto/BYD): ETSI hybrid approach, requires translation layer
⚠ Infrastructure operators: Regional variations in BSM frequency/content
Action: Develop cross-format gateway middleware; target 2026 roadmap
What's Included
- SKILL.md instruction file with V2X protocol analysis framework:
- Protocol Evaluation Template: structured comparison matrix (DSRC vs. C-V2X vs. 5G-V2X)
- Latency Budgeting Worksheet: use-case-specific timing requirements for collision avoidance, pedestrian detection, and infrastructure handoff
- Regulatory Requirements Checklist: EU ETSI, NHTSA, China 3GPP compliance mapping to product features
- Interoperability Assessment Framework: V2V, V2I, V2P, V2N communication path analysis and gap identification
- V2X Product Roadmap Template: phased release planning with standards maturity and market adoption milestones
Who It's For
- Connected Car Product Managers — Define V2X architectures and standardization roadmaps aligned with OEM capabilities
- Automotive Systems Engineers — Evaluate protocol trade-offs and translate regulatory requirements into technical specifications
- Regulatory & Standards Affairs Teams — Map global V2X requirements (EU, NHTSA, China) to product features and compliance timelines
- V2X Platform Architects — Design interoperability frameworks and identify ecosystem bottlenecks across infrastructure and vehicle manufacturers
- Automotive Strategy & Business Development — Assess market readiness, competitive positioning, and partner alignment for V2X initiatives
Best For
- Evaluating DSRC vs. C-V2X technology trade-offs for next-generation product planning
- Defining latency and performance requirements for specific V2X use cases (collision avoidance, cooperative driving, pedestrian detection)
- Mapping global regulatory frameworks (EU ETSI, NHTSA, China 3GPP) to product architecture decisions
- Creating product requirements documents (PRDs) that balance innovation with standards maturity and market readiness
- Identifying interoperability gaps and defining cross-OEM/infrastructure communication protocols and gateway requirements
- Building V2X product roadmaps with phased feature releases aligned with ecosystem adoption and infrastructure deployment







