,WGU E026 AI for IT Automation and Security Performance Assessment Passed | Full PA
Report with GNS3 Topology & JSON Export | 2026 Update with complete solutions.
Performance Assessment (PA) – Full Task Draft
AI-Generated Network Topology and GNS3 Implementation
Student Name: Ian Njuguna
Course: Western Governors University E026 – AI for IT Automation and Security
Submission Type: Performance Assessment
Date: May 2026
A. AI-Generated Network Topology
A1. AI Tool Used
For this project, an artificial intelligence-assisted diagramming platform was used to generate a
secure enterprise network topology. The selected tool was Lucidchart AI, available through
Lucidchart.
The AI tool was prompted to generate a medium-sized enterprise topology containing:
A firewall
Core router
Layer 2 switch
Internal LAN segment
DMZ segment
Web server
SIEM/security monitoring node
Client workstations
External internet connection
The purpose of using AI in this scenario was to automate the initial design process and
demonstrate how AI can accelerate infrastructure planning and cybersecurity architecture
development.
A2. AI Prompt Used
The following prompt was entered into the AI system:
, “Create a secure enterprise network topology containing an internet connection, firewall, core
router, managed switch, DMZ network, internal LAN, SIEM monitoring server, web server, and
multiple client PCs. The topology should follow cybersecurity best practices and support future
automation and monitoring capabilities.”
A3. AI-Generated Topology Description
The generated topology included:
An external internet cloud
Perimeter firewall
Core routing device
Internal switching infrastructure
DMZ network hosting a web server
Security Information and Event Management (SIEM) server
Multiple endpoint devices connected to the LAN
The AI-generated design followed a layered security architecture approach by separating public-
facing resources from internal systems.
B. GNS3 Topology Implementation
B1. GNS3 Environment Setup
The AI-generated topology was recreated within the GNS3 Official Website network simulation
environment.
The following devices were added:
Router
Ethernet switch
Firewall appliance
Virtual PCs
Ubuntu web server
SIEM monitoring node
Connections were configured to replicate the topology generated by the AI tool.
Report with GNS3 Topology & JSON Export | 2026 Update with complete solutions.
Performance Assessment (PA) – Full Task Draft
AI-Generated Network Topology and GNS3 Implementation
Student Name: Ian Njuguna
Course: Western Governors University E026 – AI for IT Automation and Security
Submission Type: Performance Assessment
Date: May 2026
A. AI-Generated Network Topology
A1. AI Tool Used
For this project, an artificial intelligence-assisted diagramming platform was used to generate a
secure enterprise network topology. The selected tool was Lucidchart AI, available through
Lucidchart.
The AI tool was prompted to generate a medium-sized enterprise topology containing:
A firewall
Core router
Layer 2 switch
Internal LAN segment
DMZ segment
Web server
SIEM/security monitoring node
Client workstations
External internet connection
The purpose of using AI in this scenario was to automate the initial design process and
demonstrate how AI can accelerate infrastructure planning and cybersecurity architecture
development.
A2. AI Prompt Used
The following prompt was entered into the AI system:
, “Create a secure enterprise network topology containing an internet connection, firewall, core
router, managed switch, DMZ network, internal LAN, SIEM monitoring server, web server, and
multiple client PCs. The topology should follow cybersecurity best practices and support future
automation and monitoring capabilities.”
A3. AI-Generated Topology Description
The generated topology included:
An external internet cloud
Perimeter firewall
Core routing device
Internal switching infrastructure
DMZ network hosting a web server
Security Information and Event Management (SIEM) server
Multiple endpoint devices connected to the LAN
The AI-generated design followed a layered security architecture approach by separating public-
facing resources from internal systems.
B. GNS3 Topology Implementation
B1. GNS3 Environment Setup
The AI-generated topology was recreated within the GNS3 Official Website network simulation
environment.
The following devices were added:
Router
Ethernet switch
Firewall appliance
Virtual PCs
Ubuntu web server
SIEM monitoring node
Connections were configured to replicate the topology generated by the AI tool.