SystemSafety.ai LLC

Engineering Safety Into Autonomous and High Integrity Control Systems.

Expert systems engineering and system safety consulting for autonomy & advanced control systems in road vehicles, drones, and machines — from requirements through verification.

ISO 26262UL 4600ISO 21448 SOTIFARP4754MIL-STD-882EIEEE P2846DO-178CGenerative AI
Consulting Services

What We Do

REQUIREMENTS · ARCHITECTURE · V&V

Systems Engineering

End-to-end systems engineering from stakeholder needs, operational concepts through system requirements, functional, logical and physical architecture, interface definitions. System decomposition into functional allocation, hardware and software segmentation and design requirements. Document based and MBSE approaches, traceability, and tool-agnostic. Adoption of AI workflows for Systems Engineering and Safety.

ISO 26262ARP4754INCOSE SE Handbook
HAZARD ANALYSIS · FMEA · FTA · STPA

System Safety Engineering

Systematic hazard identification and risk assessment using HARA, FMEA, FTA, FMEDA, and STPA. Safety concept development through to safety case construction. Adoption of AI workflows to enhance system safety engineering.

ISO 26262MIL-STD-882EARP4761
ISO 21448 · UL 4600 · IEEE P2846

AI Safety & SOTIF

Safety of the intended functionality for ML-based perception and decision systems. ODD definition, scenario coverage analysis, and performance limitation assessment.

ISO 21448UL 4600IEEE P2846
TEST STRATEGY · SIMULATION · COVERAGE

Verification & Validation

V&V strategy development, test case derivation from requirements, simulation-based verification and validation testing, and safety validation evidence compilation for certification. Adoption of AI to enhance effectiveness and improve efficiency of V&V with traceability and impact to requirements and architecture.

ISO 26262 Part 6DO-178CARP4754
Domain Expertise

Industries We Serve

AV · L2–L5

Autonomous Road Vehicles

CONOPS / operational concepts, ISO 26262 Item definition, HARA, FTA/SFMEA/DFMEA/AFMEA, functional safety, SOTIF analysis, ODD boundary definition, and ADAS/ADS safety-critical concepts and technical safety architecture for passenger vehicles, commercial trucks, and off-highway equipment. Structured methods to establish analysis and evidence with metrics decomposition to establish design rigor. ASPICE or equivalent compliance.

ISO 26262ISO 21448UL 4600IEEE P2846
UAS · BVLOS

Autonomous Drones & UAVs

Safety engineering for unmanned aircraft systems under ARP4754, ARP 4761 and DO-178C. Requirements, Architecture, V&V, FHA, PSSA, SSA, DAL assignment, FTA/FMEA's, and safety concepts/architecture and airworthiness evidence for civil and defense programs certification.

ARP4754DO-178CMIL-STD-882EARP4761
AMR · INDUSTRIAL

Autonomous Machinery & Robotics

IEC 61508 and ISO 13849 safety lifecycle for autonomous mobile robots, industrial automation, and safety-critical machinery operating in unstructured environments.

IEC 61508ISO 13849ISO 10218MIL-STD-882E
Standards & Frameworks

Standards Coverage

Applied across all engagements — not cited, implemented.

StandardTitleDomainIntegrity Level
ISO 26262:2018Road Vehicle Functional Safety
Automotive AV
ASIL A–D
ISO 21448Safety of the Intended Functionality (SOTIF)
Automotive AVRobotics
N/A
UL 4600Standard for Safety for the Evaluation of Autonomous Products
Automotive AVRobotics
N/A
ARP4754Development of Civil Aircraft and Systems
Drones & UAVs
DAL A–E
MIL-STD-882ESystem Safety
DefenseDrones & UAVs
N/A
IEEE P2846Assumptions for Safety of Autonomous Vehicles
Automotive AV
N/A
IEC 61508Functional Safety of E/E/PE Safety-Related Systems
MachineryRobotics
SIL 1–4
DO-178CSoftware Considerations in Airborne Systems
Drones & UAVs
DAL A–E

Ready to engineer safety into your autonomous system?

Whether you're navigating ISO 26262 certification, building a safety case for an AI-driven system, or defining your V&V strategy — we engage at the technical level your program demands.

Engagements begin with a technical scoping call.

Start a Conversation
ISO 26262UL 4600ISO 21448 SOTIFARP4754