INDUSTRY USE CASE: SMART CITIES

INDUSTRY USE CASE: SMART CITIES

Smart Cities

AI and Advanced Algorithms for City-Scale Operations

How AHOY's research and technologies power real-world urban infrastructure, moving from dashboards to dynamic orchestration.

INDUSTRY USE CASE: AVIATION OPERATIONS

Smart Cities

AI and Advanced Algorithms for City-Scale Operations

How AHOY's research and technologies power real-world urban infrastructure, moving from dashboards to dynamic orchestration.

Why Smart City Intelligence Fails at Scale

Smart cities promise data-driven urban efficiency, but most implementations stop at dashboards and alerts. The real problems of city-scale operations—coordinating traffic, transit, logistics, emergency services, and utilities across millions of people and vehicles, remain unsolved due to fundamental technical limitations.

Disconnected Urban Systems

Traffic signals, public transit, freight logistics, emergency response, and parking operate as silos. A traffic incident reported to the DOT doesn't automatically update transit rerouting, delivery schedules, or emergency vehicle dispatch. The result is cascading inefficiencies: one blocked arterial delays buses for 20 minutes, which disrupts 50,000 passenger trips, which cascades into parking overflows and retail revenue loss.

Outdated Infrastructure Bottlenecks

Core urban systems—SCADA for signals, dispatch for transit, fleet management for utilities—run on protocols and hardware from decades ago. Real-time integration requires custom middleware that scales poorly and fails under load. A city attempting predictive traffic management is often bottlenecked by 15-minute batch updates from 1980s-era controllers.

Manual Crisis Response

Disruptions like accidents, protests, or weather events trigger manual intervention: operators call teams, manually retime signals, and guess reroutes based on radio chatter. No system can model the full network impact of alternatives: "If we hold traffic at intersection X, how does that affect transit across 50 corridors 30 minutes from now?"

Data Sovereignty Barriers

Cities collect highly sensitive data: license plates, transit rider patterns, emergency calls, utility usage. National regulations prohibit sending this to public clouds. Cities need intelligence that runs locally while benefiting from patterns across multiple jurisdictions.

How AHOY's Technologies Apply

AHOY-GTS

City-Wide Traffic Orchestration

Solution:

GTS models the entire urban network as a dynamic geo-temporal graph, continuously recomputing signals, routes, and priorities from live sensors and predictions. Major incidents trigger network-wide responses—retimed signals, transit reroutes, emergency lanes—all validated against hardware and schedule constraints.

AHOY-GTS

City-Wide Traffic Orchestration

Solution:

GTS models the entire urban network as a dynamic geo-temporal graph, continuously recomputing signals, routes, and priorities from live sensors and predictions. Major incidents trigger network-wide responses—retimed signals, transit reroutes, emergency lanes—all validated against hardware and schedule constraints.

AHOY-GTS

City-Wide Traffic Orchestration

Solution:

GTS models the entire urban network as a dynamic geo-temporal graph, continuously recomputing signals, routes, and priorities from live sensors and predictions. Major incidents trigger network-wide responses—retimed signals, transit reroutes, emergency lanes—all validated against hardware and schedule constraints.

AHOY-G-RAG

Regulatory and Event Reasoning

Solution:

G-RAG indexes municipal codes, permits, and events into a queryable knowledge graph over GTS. Agents ask: "Legal detours around C12 construction for next 4 hours?" Answers ground in live network state for cross-department coordination.

AHOY-G-RAG

Regulatory and Event Reasoning

Solution:

G-RAG indexes municipal codes, permits, and events into a queryable knowledge graph over GTS. Agents ask: "Legal detours around C12 construction for next 4 hours?" Answers ground in live network state for cross-department coordination.

AHOY-G-RAG

Regulatory and Event Reasoning

Solution:

G-RAG indexes municipal codes, permits, and events into a queryable knowledge graph over GTS. Agents ask: "Legal detours around C12 construction for next 4 hours?" Answers ground in live network state for cross-department coordination.

AHOY-AVML

Urban Perception Layer

Solution:

Federated AV/ML processes edge video to detect incidents, count vehicles, and monitor violations—without sending raw feeds off-premise. Observations update GTS ("corridor X blocked") and enrich G-RAG context for fully local perception-to-action loops.

AHOY-AVML

Urban Perception Layer

Solution:

Federated AV/ML processes edge video to detect incidents, count vehicles, and monitor violations—without sending raw feeds off-premise. Observations update GTS ("corridor X blocked") and enrich G-RAG context for fully local perception-to-action loops.

AHOY-AVML

Urban Perception Layer

Solution:

Federated AV/ML processes edge video to detect incidents, count vehicles, and monitor violations—without sending raw feeds off-premise. Observations update GTS ("corridor X blocked") and enrich G-RAG context for fully local perception-to-action loops.

OPTIMIZATION CORE

Multi-Modal Capacity Allocation

Solution:

Constraint-aware solver optimizes cars, transit, bikes, freight, emergencies—minimizing delay while respecting equity, emissions, infrastructure limits. Uses live GTS state to predict tradeoffs (e.g., "Bus priority adds 15% car delay—acceptable?").

OPTIMIZATION CORE

Multi-Modal Capacity Allocation

Solution:

Constraint-aware solver optimizes cars, transit, bikes, freight, emergencies—minimizing delay while respecting equity, emissions, infrastructure limits. Uses live GTS state to predict tradeoffs (e.g., "Bus priority adds 15% car delay—acceptable?").

OPTIMIZATION CORE

Multi-Modal Capacity Allocation

Solution:

Constraint-aware solver optimizes cars, transit, bikes, freight, emergencies—minimizing delay while respecting equity, emissions, infrastructure limits. Uses live GTS state to predict tradeoffs (e.g., "Bus priority adds 15% car delay—acceptable?").

AHOY-MLOps

Sovereign City AI

Solution:

MLOps deploys vision, prediction, and optimization models into municipal data centers with cryptographic data verification. Models retrain continuously on city-specific data (traffic patterns, event responses) without external dependencies.

AHOY-MLOps

Sovereign City AI

Solution:

MLOps deploys vision, prediction, and optimization models into municipal data centers with cryptographic data verification. Models retrain continuously on city-specific data (traffic patterns, event responses) without external dependencies.

AHOY-MLOps

Sovereign City AI

Solution:

MLOps deploys vision, prediction, and optimization models into municipal data centers with cryptographic data verification. Models retrain continuously on city-specific data (traffic patterns, event responses) without external dependencies.

FEDERATED LEARNING

Cross-City Intelligence

Solution:

Models aggregate patterns across cities via federated learning. Only weights exchange; raw data (camera feeds, transit logs) stays local. A city's flood response benefits from another city's protest patterns without data sharing.

FEDERATED LEARNING

Cross-City Intelligence

Solution:

Models aggregate patterns across cities via federated learning. Only weights exchange; raw data (camera feeds, transit logs) stays local. A city's flood response benefits from another city's protest patterns without data sharing.

FEDERATED LEARNING

Cross-City Intelligence

Solution:

Models aggregate patterns across cities via federated learning. Only weights exchange; raw data (camera feeds, transit logs) stays local. A city's flood response benefits from another city's protest patterns without data sharing.

Why Conventional Platforms Fall Short

Comparing structural approaches to industry challenges.

Comparing structural approaches to industry challenges.

Dimension

Conventional Approach

AHOY Architecture

Decision Velocity

Minutes (Human-in-loop)

Milliseconds (Agent-first)

Decision Velocity

Minutes (Human-in-loop)

Milliseconds (Agent-first)

Decision Velocity

Minutes (Human-in-loop)

Milliseconds (Agent-first)

Data Architecture

Centralized Cloud / Legacy

Federated & Edge-Native

Data Architecture

Centralized Cloud / Legacy

Federated & Edge-Native

Data Architecture

Centralized Cloud / Legacy

Federated & Edge-Native

Disruption Handling

Heuristic / Playbook

Dynamic Graph Optimization

Disruption Handling

Heuristic / Playbook

Dynamic Graph Optimization

Disruption Handling

Heuristic / Playbook

Dynamic Graph Optimization

Privacy

Data Export Required

Zero-Trust / Data Stays Local

Privacy

Data Export Required

Zero-Trust / Data Stays Local

Privacy

Data Export Required

Zero-Trust / Data Stays Local

Deployed Systems

OPERATIONAL

Gulf Capital City

Adaptive Signal Network

City-wide adaptive signal control across 300+ intersections using GTS and AV/ML. Signals retime in real time based on live flows, incidents, and transit priority, cutting peak congestion and emissions while improving travel times.

Gulf Capital City

Adaptive Signal Network

City-wide adaptive signal control across 300+ intersections using GTS and AV/ML. Signals retime in real time based on live flows, incidents, and transit priority, cutting peak congestion and emissions while improving travel times.

Incident-to-Resolution Platform

MENA Smart Corridor

AV/ML detects crashes and debris at the edge, GTS propagates impact across the network, and Orchestration pushes coordinated responses to signals, transit, and emergency fleets. Average incident clearance and recovery times drop significantly.

Incident-to-Resolution Platform

MENA Smart Corridor

AV/ML detects crashes and debris at the edge, GTS propagates impact across the network, and Orchestration pushes coordinated responses to signals, transit, and emergency fleets. Average incident clearance and recovery times drop significantly.

Transit Reliability Fabric

European Metro Region

Agentic AI running over GTS and G‑RAG dynamically reroutes buses and trams around disruptions, maintains headways, and enforces equity rules for underserved corridors. On-time performance measurably improves while keeping total system delay in check.

Transit Reliability Fabric

European Metro Region

Agentic AI running over GTS and G‑RAG dynamically reroutes buses and trams around disruptions, maintains headways, and enforces equity rules for underserved corridors. On-time performance measurably improves while keeping total system delay in check.

Freight & Curb Management Hub

Logistics-Heavy Port City

GTS and the Optimization Core orchestrate truck arrivals, curb usage, and loading zones around ports and industrial areas. Dynamic slotting reduces idle queues, minimizes neighborhood impact, and keeps freight corridors flowing.

Freight & Curb Management Hub

Logistics-Heavy Port City

GTS and the Optimization Core orchestrate truck arrivals, curb usage, and loading zones around ports and industrial areas. Dynamic slotting reduces idle queues, minimizes neighborhood impact, and keeps freight corridors flowing.

Gulf Capital City

Adaptive Signal Network

City-wide adaptive signal control across 300+ intersections using GTS and AV/ML. Signals retime in real time based on live flows, incidents, and transit priority, cutting peak congestion and emissions while improving travel times.

Transit Reliability Fabric

European Metro Region

Agentic AI running over GTS and G‑RAG dynamically reroutes buses and trams around disruptions, maintains headways, and enforces equity rules for underserved corridors. On-time performance measurably improves while keeping total system delay in check.

Incident-to-Resolution Platform

MENA Smart Corridor

AV/ML detects crashes and debris at the edge, GTS propagates impact across the network, and Orchestration pushes coordinated responses to signals, transit, and emergency fleets. Average incident clearance and recovery times drop significantly.

Freight & Curb Management Hub

Logistics-Heavy Port City

GTS and the Optimization Core orchestrate truck arrivals, curb usage, and loading zones around ports and industrial areas. Dynamic slotting reduces idle queues, minimizes neighborhood impact, and keeps freight corridors flowing.

What Else Becomes Possible

Once the foundational system is in place, higher-order intelligence emerges across the entire operational landscape.

AI and Advanced Algorithms for Complex Problems.

Research-driven systems powering orchestration, logistics, and critical infrastructure.

AI and Advanced Algorithms for Complex Problems.

Research-driven systems powering orchestration, logistics, and critical infrastructure.

AI and Advanced Algorithms for Complex Problems.

Research-driven systems powering orchestration, logistics, and critical infrastructure.