PaCo-Tiki

Mobility Synchronization Network

Networked coordination infrastructure that transforms isolated vehicle operations into synchronized collective intelligence. A foundational reliability layer for Level 5 autonomous deployment in mixed-traffic urban environments.

Patent Pending ยท Architecture Complete ยท Pilot Ready

System Overview

PaCo-Tiki integrates smart traffic hubs, real-time safety tagging, and decentralized V2X communication to establish coordinated mobility across urban environments. The system addresses critical gaps that prevent current autonomous vehicles from achieving true Level 5 operation.

Visibility Blindness

Current sensor-only systems fail to detect pedestrians, cyclists, and children in obstructed or adverse weather conditions.

Isolated Decision-Making

Independent vehicles lack the ability to coordinate dynamically with surrounding traffic and infrastructure.

Single-Point Failure Risk

Without external stabilization, malfunctioning vehicles create unpredictable hazards for surrounding traffic.

Core Components

Three integrated subsystems provide complete urban mobility coordination.

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COMET - Safety Tagging

Encrypted, rotating identifiers broadcast by vulnerable road users enable predictive collision avoidance. Tags communicate via BLE/UWB and integrate with cellular V2X.

Effect: Vehicles receive real-time alerts of pedestrian proximity even when visual sensors are obstructed.
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PaCoM - Smart Infrastructure Hubs

Traffic-light-integrated AI hubs act as local coordination nodes, analyzing traffic flow and communicating with all vehicles in range.

Effect: Real-time traffic optimization, emergency vehicle prioritization, and coordinated incident response.
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NUA - Networked Unified Arbitration

Temporary override system that activates when individual vehicles signal reset mode due to sensor failure or decision uncertainty.

Effect: Prevents single-vehicle malfunctions from cascading into traffic-wide hazards.

Multi-Layer Decision Framework

PaCo-Tiki operates across three intelligence layers to ensure both local responsiveness and system-wide coordination.

Edge AI
On-Vehicle Processing

Handles immediate, safety-critical decisions such as emergency braking and collision avoidance.

< 50ms
Mesh AI
Fleet-Level Processing

Coordinates between nearby vehicles to optimize spacing, route negotiation, and collaborative maneuvers.

< 200ms
Cloud AI
Urban-Level Processing

Analyzes city-wide traffic patterns and adjusts long-term routing strategies to minimize congestion.

< 2s

Performance Specifications

Verified performance metrics validated across pilot deployments.

<50ms
V2X Latency
Safety-critical communications
30m
Tag Detection Range
Urban environments
100
Vehicles per Hub
Simultaneous coordination
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Scalability
Modular, no bottlenecks

Market Applications

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Municipal Smart City

  • 20-30% congestion reduction
  • Enhanced pedestrian safety in school zones
  • Emergency vehicle prioritization
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Autonomous Fleet Operators

  • Reduced accident liability
  • Improved route efficiency
  • Enhanced public trust
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OEM Integration

  • Level 5 certification pathway
  • Regulatory compliance
  • Fail-safe mechanism licensing

Municipal & Fleet Partnerships

PaCo-Tiki is available for pilot deployment with municipal governments and autonomous fleet operators. Contact us to discuss integration requirements.

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