Solarion AI™ Systems · Robotics

Intelligence, identity and control for humanoid robots.

Solarion Robotics™ gives enterprises one secure management plane for humanoid identity, AI software, approvals, fleet health, predictive maintenance and auditable machine operations.

CPIDPersistent robot identity
AI BOMVersioned software state
PredictFleet health intelligence
ROBOT OBJECTSR-H01 / HUMANOID
Verified · online
Solarion Robotics futuristic humanoid robot prototype in the enterprise control plane
HUMANOID CONTROL NODE Identity-bound robotics runtime
IDENTITYCPAL-3Hardware-bound
AI RUNTIME4 packagesDigest verified
HEALTH92 / 100Nominal
01IdentityPersistent machine identity
02SoftwareGoverned AI lifecycle
03OperationsPredictive fleet intelligence
04EvidenceCryptographic audit history
Interactive product preview

See the management plane think in real time.

Switch between operating scenarios to preview how Solarion Robotics™ resolves robot identity, authorized AI state, operating context, predictive risk and evidence before an enterprise action is accepted.

Open Robotics Portal ↗
MANAGEMENT PLANE / SIMULATEDCPAP CHECK · 18 ms
ROBOTSR-H01Fulfillment humanoid
COMPUTE PASSPORTcpid:robot:sr-h01CPAL-3 · verified
OPERATING STATEACTIVEZONE A3 · TORONTO
01IdentifyCPID resolved
02VerifySignature valid
03AuthorizePolicy allow
04ObserveTelemetry live
05EvidenceEvent chained
AI PACKAGEvision-pick-v4.8sha256:8ef4…91bc
HEALTH SCORE92Nominal · no intervention
PREDICTIVE RISK08%Low · stable vibration
LOCATION CONTEXTA3 / PICK CELLInside approved geofence
LIVE EVIDENCE
evt_01f8 · access.allow · robot:sr-h01 · evidence linked HASH CHAIN VALID

Interactive preview uses simulated operational data. Production integrations connect through the Solarion Robotics edge/API layer; safety-critical motion remains under the robot or OEM safety controller.

Robotics control plane

From robot asset to governed AI runtime.

Treat every humanoid as a managed enterprise compute endpoint with a persistent identity, approved software bill of materials, policy-bound access and continuous evidence.

01 / IDENTITY

Robot Passport

Issue a Compute Passport-derived CPID and bind the robot to hardware identifiers, accountable sponsor, assurance level and lifecycle state.

Machine identity →
02 / SOFTWARE

AI Package Registry

Track models, agents, perception stacks and runtime services by version, digest, permissions, safety profile and provenance.

Software control →
03 / OPERATIONS

Predictive Fleet Health

Turn temperature, vibration, joint errors, latency, anomalies and battery signals into explainable operational risk scores.

Fleet intelligence →
04 / EVIDENCE

Cryptographic Audit

Hash-chain important management events and sign checkpoints so investigators can detect tampering or missing sequence.

Audit evidence →
Compute Passport™ evolution

One identity model for software and machines.

Compute Passport™ evolves from AI-agent identity into a machine identity and software-governance layer for humanoids and autonomous robots.

Physical assetHumanoid robotserial · hardware root
Machine identityCompute Passport™ CPIDissuer · CPAL · sponsor
AI runtimeModels + agents + toolsversion · digest · manifest
PolicyPermissions + approvalscope · environment · expiry
EvidenceTelemetry + audit chainevents · status · proof
CPAL-3 · HIGH ASSURANCE

cpid:robot:sr-h01

Persistent machine identity binds the humanoid to its accountable owner, current AI manifest, attestation posture and management status.

IssuerSolarion AI Systems
Hardwarehw:humanoid:H01
Manifestsha256:9f7a…21d2
StatusACTIVE
GPS fleet intelligence

Know which robot is where—and which identity is reporting it.

Bind GPS position, speed, heading, fix quality and geofence state to the robot CPID. Review current fleet position and route history directly inside Robot Control.

FLEET LOCATION / LIVECPID VERIFIED
SR-H01 · INSIDESR-H02 · ACTIVESR-H03 · RESTRICTED
Deployment scenarios

Built around real robot operations.

The same management plane can govern identity, software, location and evidence across different robot types and environments.

01 / LOGISTICS

Autonomous warehouse

Humanoid fulfillment, route evidence, zone controls and software governance.

View scenario →
02 / INDUSTRIAL

Smart manufacturing

Inspection models, robot fleets, maintenance risk and plant-level control.

View scenario →
03 / FACILITIES

Security & inspection

Patrol zones, machine identity, location context and auditable evidence.

View scenario →
04 / SERVICE

Customer-facing robots

Govern conversational AI, perception software and operating boundaries.

View scenario →
Enterprise robotics services

From robotics strategy to governed fleet operations.

Solarion Robotics™ combines robotics architecture, systems integration, cybersecurity, AI lifecycle governance and managed operations into one enterprise delivery model. Engagements are designed around measurable operational outcomes, not hardware novelty.

01 / ADVISORYDISCOVER → DESIGN

Robotics Strategy & Readiness

Identify where humanoids and autonomous robots can create measurable value, then translate the opportunity into a secure, financeable deployment architecture.

  • Workflow and automation opportunity mapping
  • Robot/OEM evaluation and technical due diligence
  • ROI, payback and deployment sequencing
  • Network, edge, safety and enterprise integration blueprint
Typical outcomeExecutive deployment roadmap + pilot business case
02 / ENGINEERINGBUILD → INTEGRATE

Humanoid & Robot Integration

Connect robot platforms to enterprise systems while preserving the boundary between management-plane controls and safety-critical motion systems.

  • ROS 2 / middleware and edge integration
  • ERP, WMS, MES, BMS and API connectivity
  • AI model, perception and agent deployment workflows
  • Telemetry, observability and operator console integration
Typical outcomeProduction-ready pilot with acceptance evidence
03 / OPERATIONSMONITOR → OPTIMIZE

Managed Robotics Operations

Operate the governance and software layer around the fleet through continuous health monitoring, lifecycle control and auditable operational reporting.

  • Fleet health and predictive-maintenance monitoring
  • AI software inventory, versioning and rollout control
  • Credential rotation, incident coordination and evidence review
  • Monthly service, risk and optimization reporting
Typical outcomeRecurring fleet governance + operational intelligence
AI

AI Vision & Perception

Design governed computer-vision, multimodal perception and inference pipelines with model manifests, deployment approvals and performance evidence.

Perception architecture · model lifecycle · edge inference · evidence
ID

Robot Identity & Compute Passport™

Issue persistent robot identities, bind accountable ownership, define software and operating claims, and make identity state available to policy and audit systems.

CPID · assurance level · sponsor · status · provenance
SX

Robotics Cybersecurity

Threat-model the robot as a mobile privileged endpoint and harden credentials, network boundaries, software supply chain, logging and incident response.

Zero Trust · ROS security · segmentation · key lifecycle · response
PX

Predictive Fleet Intelligence

Combine telemetry, maintenance history and operating context into explainable health scores, anomaly signals and maintenance-priority forecasts.

Telemetry engineering · anomaly detection · risk scoring · forecasting
ENGAGEMENT 012–4 week readiness sprintOpportunity → architecture → business case
ENGAGEMENT 026–12 week controlled pilotIntegrate → validate → acceptance evidence
ENGAGEMENT 03Managed operationsMonitor → govern → optimize continuously
Explore services ↗
Security architecture

Assume every robot is a high-privilege mobile endpoint.

The management plane stays separated from motion control and uses explicit identities, least privilege, signed evidence and revocable robot credentials.

IDENTITYPer-robot credentials with one-way server storage, rotation and revocation.
ACCESSCapability-based roles for operators, auditors and administrators.
INTEGRITYAI package SHA-256 digests and desired-vs-reported deployment state.
EVIDENCEHash-linked audit events with ECDSA signing when supported.
EDGEProduction path to HSM/KMS, SROS2 / DDS Security enclaves and OEM integrations.
Deployment path

Move from controlled pilot to a governed robot fleet.

Start with identity, software state and evidence in the working MVP. Extend the same control model to production robots through hardened edge credentials, OEM adapters and enterprise policy integrations.

01 / IDENTITYEvery robot is attributable.
02 / SOFTWAREEvery deployed package is known.
03 / EVIDENCEEvery control decision is reviewable.