Learning Objectives
5 objectives- Understand the fundamental concepts of network routing and switching and their roles in data transmission.
- Explain the OSI and TCP/IP models and their relevance to routing and switching processes.
- Identify, compare, and analyze various routing protocols and switching technologies.
- Apply knowledge of IP addressing, subnetting, VLANs, and QoS to design and manage efficient networks.
- Develop troubleshooting skills for diagnosing and resolving common routing and switching issues.
Content Outline
PreviewUnit 2139: Network Routing and Switching
1. Introduction to Network Routing and Switching
- Fundamentals of data transmission in networks
- Definition and role of routing
- Definition and role of switching
- Key differences between routing and switching
- Components involved:
- Routers
- Switches
- Bridges
- Gateways
2. OSI Model and TCP/IP Model
- Overview of OSI Model
- Seven layers explained:
- Physical
- Data Link
- Network
- Transport
- Session
- Presentation
- Application
- Seven layers explained:
- Overview of TCP/IP Model
- Four layers explained:
- Network Interface
- Internet
- Transport
- Application
- Four layers explained:
- Relation of each layer to routing and switching functions
- Comparison and significance in network design
3. Routing Protocols
- Purpose and role of routing protocols
- Distance Vector Protocols
- Routing Information Protocol (RIP)
- Characteristics
- Metric and hop count
- Advantages and limitations
- Routing Information Protocol (RIP)
- Link State Protocols
- Open Shortest Path First (OSPF)
- Operation and algorithm
- Areas and hierarchy
- Advantages
- Open Shortest Path First (OSPF)
- Path Vector Protocols
- Border Gateway Protocol (BGP)
- Role in internet routing
- Path selection criteria
- Characteristics
- Border Gateway Protocol (BGP)
- How routing protocols determine the best path
4. Switching Technologies
- Overview of switching
- Virtual LANs (VLANs)
- Concept and benefits
- VLAN tagging (802.1Q)
- Spanning Tree Protocol (STP)
- Purpose in network loops prevention
- Basic operation
- Port Aggregation (Link Aggregation Control Protocol - LACP)
- Concept and benefits
- Use cases
- Enhancing network performance and efficiency through switching
5. IP Addressing and Subnetting
- IPv4 and IPv6 addressing schemes
- Structure of IP addresses
- Subnetting fundamentals
- Subnet masks
- Calculating subnets and hosts
- Classless Inter-Domain Routing (CIDR)
- Notation and usage
- Importance of IP addressing and subnetting in routing and switching
6. Routing Tables
- Definition and function of routing tables
- Structure of routing table entries
- How routers use routing tables for packet forwarding
- Dynamic vs static routing tables
- Role of routing protocols in populating and maintaining routing tables
7. VLANs and Inter-VLAN Routing
- Deep dive into Virtual LANs
- Network segmentation and isolation
- Benefits of VLANs
- Inter-VLAN routing
- Need for communication between VLANs
- Methods of inter-VLAN routing:
- Router on a stick
- Layer 3 switches
8. Quality of Service (QoS)
- Importance of QoS in networks
- Traffic prioritization techniques
- QoS mechanisms in routing and switching
- Classification and marking
- Queuing and scheduling
- Traffic shaping and policing
- Use cases for QoS
9. Network Security in Routing and Switching
- Overview of network security principles
- Access Control Lists (ACLs)
- Definition and implementation
- Filtering traffic
- Firewalls
- Role and placement in networks
- Virtual Private Networks (VPNs)
- Secure data transmission over public networks
- Best practices for securing routing and switching infrastructure
10. Troubleshooting Network Routing and Switching Issues
- Common issues:
- Connectivity problems
- Slow network performance
- Routing loops
- Tools for troubleshooting
- Ping
- Traceroute
- Network analyzers
- Routing protocol diagnostics
- Strategies for effective problem resolution
- Systematic approach
- Documentation and monitoring
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