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Connecting the Unconnected

Using AI-powered mesh networks to bring connectivity to remote areas

42
ACTIVE NODES
156
CONNECTED DEVICES
94.2%
SYSTEM HEALTH

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SonNetAI leverages the lightning-fast intelligence of Perplexity's Sonar API to enable real-time decision making in mesh networks.

Millisecond Response Time

Sonar API delivers responses in milliseconds, enabling real-time network management.

Advanced Intelligence

Sophisticated AI capabilities power our multi-agent system for optimal decision making.

Self-Healing Networks

Sonar enables autonomous network repair and optimization without human intervention.

Multi-Agent Mesh Network System

Powered by Perplexity's Sonar API for real-time decision making

Network Status
Active Nodes
42
Connected Devices
156
Signal Strength
87.5%
Available Bandwidth
65.3%
Security Threats
0
System Health
94.2%
Agent System Controls
Event Log
[19:02:45] [System] Agent system initialized
[19:02:46] [Orchestrator] Network monitoring active
[19:02:47] [Security] Perimeter secure, no threats detected
[19:02:48] [Terrain] Environmental conditions optimal
[19:02:49] [Encryption] Secure channels established
Orchestrator Response

Based on current network conditions and the reported outage in Sector B-3, I recommend the following routing changes:

1. Redirect traffic from Node 12 to Node 15 to bypass the affected area

2. Increase signal strength on Nodes 18, 22, and 24 to compensate for coverage loss

3. Prioritize emergency services traffic through the eastern corridor

4. Deploy temporary power backup to Node 15 to ensure stability

These changes will maintain 92% network coverage while repairs are underway.

Agent Hierarchy

Orchestrator

Role: Central decision maker for routing and network management

Priority: 1 (Highest)

Coordinates all agents and makes final decisions on network operations.

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Terrain Analyst

Role: Collects and analyzes terrain and environmental data

Priority: 2

Provides real-time environmental context for optimal signal propagation.

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Encryption Specialist

Role: Manages secure data transmission protocols

Priority: 2

Ensures all data packets are securely encrypted during transmission.

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Security Guardian

Role: Detects and responds to security threats

Priority: 2

Monitors network for intrusions and implements defensive measures.

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Logical Critic

Role: Challenges decisions to ensure optimal outcomes

Priority: 3

Provides alternative perspectives and identifies potential issues.

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Self-Healing Monitor

Role: Identifies and repairs network issues

Priority: 2

Implements recovery procedures and maintains system resilience.

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Interactive Demo

Experience the power of Perplexity's Sonar API in action

Connectivity Analysis

Analyze connectivity needs for a specific location to establish a mesh network.

Equipment Recommendations

Get equipment recommendations for mesh network deployment.

Sonar API Analysis Result

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Connectivity Analysis for Lesotho, Africa

Recommended Mesh Network Topology

For the mountainous terrain of Lesotho, a hierarchical mesh network with strategically placed high-elevation nodes is optimal. This topology provides the best balance of coverage, resilience, and cost-effectiveness.

Estimated Node Requirements
  • Primary nodes: 12 (high-elevation sites with solar power)
  • Secondary nodes: 28 (mid-elevation relay points)
  • Edge nodes: 45-60 (community connection points)
  • Total coverage: Approximately 85% of populated areas
Potential Challenges
  • Seasonal weather variations: Heavy rainfall may affect signal quality
  • Power availability: Remote locations require sustainable power solutions
  • Terrain obstacles: Line-of-sight issues in deep valleys
  • Maintenance access: Difficult terrain may complicate repairs
Implementation Approach

A phased deployment starting with high-elevation primary nodes, followed by secondary and edge nodes. Community involvement in installation and maintenance will be crucial for sustainability. Recommend starting with a pilot in the Maseru district before expanding to more remote areas.

Cost-Efficiency Analysis

The proposed mesh network would cost approximately $180,000 for full deployment, or $3,000-$4,000 per village connected. This is 65% less expensive than traditional infrastructure and can be implemented in 8-12 months rather than 3-5 years.

About SonNetAI

SonNetAI is a revolutionary platform that combines the power of Perplexity's Sonar API with Google Earth Engine to analyze and plan mesh network deployments in underserved areas.

Our mission is to bridge the digital divide by providing connectivity solutions to regions with limited internet access, enabling education, healthcare, and economic opportunities.

Using advanced AI and geospatial analysis, we identify optimal network configurations, recommend appropriate equipment, and generate comprehensive deployment plans tailored to specific locations and constraints.

Key Features

Geospatial Analysis

Leverage Google Earth Engine to analyze building density and terrain for optimal node placement.

AI-Powered Recommendations

Utilize Perplexity's Sonar API for real-time decision making and intelligent network planning.

Cost-Effective Solutions

Generate budget-conscious equipment recommendations and deployment strategies.

Why Perplexity Sonar API?

Sonar API provides the intelligence backbone for our multi-agent system, enabling real-time decision making with unparalleled speed and accuracy.

Lightning Fast

Millisecond response times enable real-time network management even in challenging conditions.

Multi-Agent Ready

Perfect for coordinating specialized agents in a hierarchical decision-making system.

Adaptable Intelligence

Contextual understanding allows for intelligent responses to changing network conditions.

Learn More About Sonar API