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Course Info
Advanced Internet Technology-III: Wireless Network and Mobile Systems
Copyright
- Lecture 7: Mobile Networks:TCP in Wireless Networks
- Lecture Objectives
- Agenda
- TCP Flow Control
- TCP Flow Control Example
- Flow Control Can Limit Throughput (1)
- Flow Control Can Limit Throughput (2)
- TCP Congestion Avoidance
- Recent History of TCP
- TCP Operation
- Congestion Avoidance: TCP Reno (1)
- Congestion Avoidance: TCP Reno (2)
- Duplicate ACK
- Congestion Window in TCP Reno
- Congestion Avoidance: TCP Vegas (1)
- Congestion Avoidance: TCP Vegas (2)
- Congestion Avoidance: TCP Vegas (3)
- Slow Start Mechanism
- Loss Detection: TCP Reno
- Loss Detection: TCP Vegas
- TCP Reno Behavior
- TCP Vegas Behavior
- TCP Reno Pros and Cons (1)
- TCP Reno Pros and Cons (2)
- TCP Vegas Pros and Cons
- TCP Reno versus TCP Vegas
- Agenda
- TCP Problems with Wireless
- More TCP Problems with Wireless
- Agenda
- General Solution Approaches
- Link-Layer Protocols (1)
- Link-Layer Protocols (2)
- Split-Connection Protocols (1)
- General Solution Approaches
- Split-Connection Protocols (1)
- Split-Connection Protocols (2)
- End-to-End Protocols (1)
- End-to-End Protocols (2)
- Indirect TCP: Overview
- Indirect TCP: Handoff
- Indirect TCP: Advantages
- Indirect TCP: Disadvantages
- Indirect TCP: Wireless Transport
- Snoop TCP: Overview
- Snoop TCP: Operation (1)
- Snoop TCP: Operation (2)
- Snoop TCP: Reverse Direction
- Snoop TCP: Advantages
- Snoop TCP: Disadvantages
- Summary
- Q1 from AIT
- Q2 from USC
- Q3 from USC
- Q4 from ITB
- Q5 from KU
- Q2 from USC