Global Tech Summit
AWAN Labs
Device Life cycle management Lab
Overview
Starting Lab
Lab Blueprint Topology
Device Lifecycle Management
Login to Routing Director via Jumpbox
Network Planning
Managing Configuration in the Network Device
Deploy A Custom Configuration Template and Track configuration changes
Review Audit Logs
Tracking Trust score of devices
Track Interfaces Health, check for Flaps and stats
Review Alarms, Alerts, and Syslogs
Lab Survey
Service Provisioning Lab
Overview
Starting Lab
Lab Blueprint Topology
Provision a L3VPN Service using a pre canned JSON
Login to Routing Director via Jumpbox
Provsion Service
Observability and Assurance of your Service Instance
De-Provision of L3VPN Service Instance
Lab Survey
Enterprise Routing Active Testing and Routing Director 2.4.0 API Lab
Overview
Starting Lab
Lab Topology
Enterprise Routing Active Testing
Login to Routing Director via Jumpbox
Test1 – Enterprise Service Activation / Reachability – Test DNS, Ping
Test2 - Cloud Apps Reachability
Test 3 - Performance Monitoring TWAMP
Test 4 - Y1731 Monitor
Routing Director 2.4.0 API Lab
Lab Survey
Designing and Optimizing MPLS Tunnels with Paragon Routing Director
Overview
Time
Starting Lab
Topology
Devices
Dynamic topology
Connect to Routing Director
Network Optimization
Tunnel Profile
Optimization Profiles
Endpoint Profiles
Path intents
Lab Survey
Routing Analytics
Overview
Starting Lab
Lab Blueprint Topology
Routing Analytics
Login to Routing Director via Jumpbox
Track BGP adjacencies in the network, BGP Flaps, Autonomous system, RIB changes
Track and Visualize Network Wide Routing Updates
Track Routing Updates for a specific device
Prefix of Interest Tracking
Lab Survey
Leveraging AI-Driven Observability for Enhanced Optical Network Assurance in DCI and WAN Links
Overview
Starting Lab
Unamplified 400G ZR+ HP Lab Topology
Connect to Routing Director
Configuration template
Verification via SSH/CLI (Optional)
Ask Paragon
Lab Survey
Juniper Routing Assurance
Overview
Lab Objectives:
Starting Lab
Lab Blueprint Topology
Routing Assurance Login
UI Navigation
Router Onboarding and Built-In Tools
Router Onboarding
Router Configuration
Verification
Configure Alerts
Router Insights & Events
Service Level Expectations
Network Failure Root Cause Analysis
Disable (Shutdown) Core router interface
Check Alerts
Compliance Assessment and Audit Readiness
Lab Survey
SRv6 Core and Edge Basics
Overview
Lab Blueprint Topology
Access details for User:
Architecture Introduction
SRv6 uSID Introduction
Starting Lab
STEP-1 (PE11/PE12/P1 Router)
STEP-2 (PE11/PE12/P1 Router)
STEP-3 (PE11/PE12/P1 Router)
STEP-4 (PE11/PE12/P1 Router)
L3VPN over SRv6 uSID
STEP-5 (PE11/PE12/P1)
STEP-6 (PE11/PE12)
STEP-7 (PE11/PE12/P1)
STEP-8 (PE11/PE12/P1)
STEP-9 (PE11/PE12)
STEP-10 (PE11/PE12/P1)
STEP-11 (PE11/PE12/P1)
Glossary
Lab Survey
SRv6 and MPLS Core and Edge Link Slicing
Overview
Lab Topology and Architecture
Lab Blueprint Topology
Access details
Architecture Introduction
Link Slicing Introduction
Link Slicing with slice-aware H-QoS
Slice-aware H-QoS Configuration
Starting the Lab
STEP-1 (P1/P2 Router)
STEP-2 (P1/P2 Router)
STEP-3 (P1/P2 Router)
STEP-4 (P1/P2 router - required on vMX)
STEP-5 (P1/P2 Router - required on vMX)
STEP-6 (P1/P2 Router)
Assigning traffic to slices – MPLS
STEP-7 (PE21/PE11 router)
STEP-8 (PE21/PE11 router)
STEP-9 (P1/P2 Router)
STEP-10 (P1/P2 Router)
STEP-11 (P1/P2 Router)
Assigning traffic to slices – SRv6
STEP-12 (PE21/PE11 Router)
STEP-13 (P1/P2 Router)
STEP-14 (P1/P2 Router)
STEP-15 (P1/P2 Router)
Appendix
Glossary
Lab Survey
Leveraging Juniper Networks Streaming Telemetry - OpenJTS Start UP Hands-on lab
Overview
Starting Lab
Step 1: Login to OpenJTS VM
Step 2: Download and install OpenJTS stack
Step 3: Build OpenJTS and start the stack
Step 4: Initial MX configuration
Step 5: Initial OpenJTS configuration
Add your MX router in your inventory
Test gNMI connectivity
Profile(s) assignement
Profile(s) Documentation
Visualize data
Step 6: Stop OpenJTS and clean your VM
Next Generation BNG CUPS Solution with ACX and MX Routers
Overview
Starting Lab
Lab Blueprint Topology
Access Details
Architecture Introduction
STEP-1: Configure BNG CUPS Controller (CP – Control Plane)
STEP-2: bbe-common-0 Group on CP (Control Plane)
STEP-3: DHCP dynamic-profile configuration on CP (Control Plane)
STEP-4: PPPoE dynamic-profile configuration on CP (control plane)
STEP-5: dhcp-local-server configuration on Control Plane (CP)
STEP-5: Access-Profile(Radius) configuration on CP
STEP-6: Access and Uplink interface configuration on UP1 (User Plane 1)
STEP-7 : Access and Uplink interface configuration on UP2 (User Plane 2)
STEP-8 : Subscribers validation on Control Plane (CP), UP1 and UP2
Glossary
Lab Survey
Campus & Branch Labs
Mist Multihoming Fabric Lab
Overview
Topology
Known Limitations of Demos of this physical Sandbox Lab
Starting Lab
Access to Lab
Access Devices
Mist Org Access
Adding Switches to a Site
Create a Switch-Template
Import Switch Template
Manual Switch Configuration
Assign switch_template to site
Manage the device via MIST
MULTIHOMING FABRIC with L2 Exit
Configure the fabric.
WAN-Router (MX) Layer2 VLAN attached to Core
Verification
EVPN Insights
Usecase: MIST NAC
Lab Survey
Data Center Labs
Apstra 6.0 Lab
Overview
Starting Lab
Topology
Access Details
Reviewing DC Configuration (Pre-Configured)
Review Resources
Review Rack Types
Review Templates
Deploying Blueprint
Assign System IDs to Fabric Nodes
Commit and Deploy the Blueprint
Reviewing Blueprint parameters (Pre-configured)
Review Nodes and Links
Review Blueprint Properties
Review Routing Zones
Review Virtual Networks
Review Virtual Network and Routing Zone parameters
Review Connectivity Templates
Usecases
Usecase 1: Verify Connectivity
Usecase 1a: Ping from Host1 to Host2
Usecase 1b: Ping from Host2 to Host3
Usecase 1c: Ping from Host3 to Host4
Usecase 2: Configure via Configlet
Usecase 3: Instantiate Pre-Defined IBA Probe
Usecase 4: Starting and Stopping Probes
Usecase 5: Root Cause Analysis
Usecase 6: Time Voyager
Usecase 7: Config Deviation
Try it later ?
Lab Survey
Apstra Demonstration Lab
About This Guide
Introduction
Purpose and Scope
How to Use This Guide
Access Details
Creating Effective Customer Demonstrations
The Network Operations Lifecycle: Understanding the Operations Donut
A Critical Perspective: The Reality of Network Operations
Traditional Day 0/1/2 Approach vs. Apstra’s Unified Lifecycle
Lab Environment Overview
Guide Structure
Navigating the Lab Demonstrations
Understanding Apstra Architecture & Intent-Based Networking
Business Context
Objectives
Overview
Architectural Foundations
1. The Apstra Architectural Advantage
2. Intent-Based Networking Principles
3. Reference Design Methodology
4. The Contextual Data Model
Demo Starting Point
Pre-Built Fabric Exploration
1. Accessing the Pre-Built Data Centre Fabric
2. Interface Overview & Orientation
3. Examining the Fabric Blueprint
4. Understanding the Topology Visualization
Key Takeaways
Next Steps
Design Fundamentals
Objectives
Understanding the Topology Structure
1. The Three-Stage Clos Architecture
2. Managed vs. Unmanaged Elements
3. Rack-Based Design Philosophy
Design Methodology Overview
1. The Design Tab Interface
2. Rack Design Components
3. Template-Based Fabric Creation
Key Takeaways
Day 2 Operations: Data Centre Expansion and Virtual Network Creation
Section 1: Physical Expansion - Adding Data Centre Capacity
Business Context
Demonstration Objectives
Scenario: Adding Capacity for the Big Data Analytics Service
Task: Add a New Rack to Your Data Centre
Reflection Point: Traditional Approach Challenges
Step-by-Step Demonstration
Step 1: Navigate to the SE Demo Blueprint
Step 2: Add a New Rack to the Blueprint
Step 3: Let Apstra Handle Resource Allocation
Step 4: Assign Device Profiles
Step 5: Review and Commit Your Changes
Step 6: Understanding the Power of Pre-staging
Step 7: Examine the Prepared Configuration
What You’ve Accomplished
Section 2: Logical Expansion - Creating Virtual Networks
Business Context
Demonstration Objectives
Scenario: Building Network Tiers for the Big Data Analytics Service
Task: Create Virtual Networks for the Analytics Service
Reflection Point: Traditional Complexity
Step-by-Step Demonstration
Step 1: Create the Analytics Web Tier Network (Layer 2 Only)
Step 2: Create the Analytics Database Tier Network (Layer 3)
Step 3: Assign Resources to Virtual Networks
Step 4: Assign Resources to the Routing Zone
Step 5: Review and Commit Your Changes
What You’ve Accomplished
Competitive Positioning
Section 3: Architectural Changes - VRF Migration
Business Context
Demonstration Objectives
Scenario: Migrating Virtual Networks Between Routing Zones
Task: Migrate Virtual Networks Between VRFs
Reflection Point: Traditional Migration Complexity
Step-by-Step Demonstration
Step 1: Examine Current VRF Structure
Step 2: Select Virtual Networks for Migration
Step 3: Initiate the Migration
Step 4: Understand What’s Happening Behind the Scenes
Step 5: Verify the Migration
What You’ve Accomplished
Competitive Positioning
Business Value Summary
Next Steps
Day 2 Operations & Assurance
Overview
Objectives
Lab environment note
Context within the overall guide
Business context
Demonstration steps
Step 1: Access the live traffic environment
Step 2: Navigate to the main dashboard
Step 3: Examine fabric health indicators
Step 4: Explore Analytics
Step 5: Review fabric capacity indicators
Key benefits demonstrated
Advanced considerations
Conclusion and key takeaways
Lab conclusion
Lab Survey
Apstra Marvis Better together lab guide.
Overview
Starting Lab
Topology
Access Details
Reviewing DC Configuration (Pre-Configured)
Review Resources
Device Profiles (Pre-configured)
Logical Devices (Pre-configured)
Interface Maps (Pre-configured)
Review Rack Types
Review Templates
Deploying Blueprint
Onboard Devices
Assign System IDs to Fabric Nodes
Import the Junos OS Apstra Flow Configlet
Import the Configlet
Configure SNMP for Interface Name Enrichment
Commit and Deploy the Blueprint
Reviewing Blueprint (Pre-configured)
Routing Zones (Pre-configured)
Virtual Networks (Pre-configured)
Connectivity Templates (Pre-configured)
Simulate/Generate traffic in Fabric
Apstra Flow Configuration
Review Apstra Premium License
Flow VM configuration
Restart the Flow Services
Setting up and connecting Apstra Edge with Apstra Cloud Services
Creating Org and Adopting Edge on Jcloud (Juniper Apstra Cloud Services)
Usecases
Usecase 1: Incorrect Cabling
Usecase 2: Config Dev error
Usecase 3: Impact Analysis
Usecase 4: Service Aware
Remediate the anomalies
Try it later ?
Lab Survey
Security Labs
Security Director Cloud Lab
Getting Started
Lab Objectives
Lab Registration
Connectivity
Topology
SRX Lab Configuration and Connectivity
Lab 0 – Onboarding and Preparations
SD Cloud Environment
What is SD Cloud?
Access your SD Cloud Demo Account
SRX Onboarding
Connect SRX to SD Cloud
Deploy SRX Policy
Enable SRX Logging
SRX Initial Configuration
Check the SRX Time
Configure SSL Forward-Proxy
FW logs and Dashboard
Update Application Identification Database
Lab 1 – Unified Security Policies
What are Unified Policies?
Redirect message
L7 Applications Rules
Choosing Application Signatures
Blocking Applications
Reordering L4/L7 Rules
Rule-Matching
Configure a URL Category with Unified Policies
Configure and Test Web-Filtering
URL Category Match Criteria
Test URL Match Criteria
Creating Reports
Lab 2 – User Identity
User Identity with Juniper Identity Management (JIMS)
Configure Active Directory in JIMS
Configure Event Log Source
Connect SRX to JIMS
Test User Identity
Identity-based FW Policy
Lab 3 – Site to Site VPN
IPsec Preparations
Create VPN Tunnel
Create VPN Polices
Lab Survey
AWAN Labs
Device Life cycle management Lab
Service Provisioning Lab
Enterprise Routing Active Testing and Routing Director 2.4.0 API Lab
Designing and Optimizing MPLS Tunnels with Paragon Routing Director
Routing Analytics
Leveraging AI-Driven Observability for Enhanced Optical Network Assurance in DCI and WAN Links
Juniper Routing Assurance
SRv6 Core and Edge Basics
SRv6 and MPLS Core and Edge Link Slicing
Leveraging Juniper Networks Streaming Telemetry - OpenJTS Start UP Hands-on lab
Next Generation BNG CUPS Solution with ACX and MX Routers
Campus & Branch Labs
Mist Multihoming Fabric Lab
Data Center Labs
Apstra 6.0 Lab
Apstra Demonstration Lab
Apstra Marvis Better together lab guide.
Security Labs
Security Director Cloud Lab
Index