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TCP congestion control

Transmission Control Protocol (TCP) uses one of several congestion control algorithms that include various aspects of an additive increase/multiplicative decrease (AIMD) scheme, along with other schemes including slow start and a congestion window (CWND), to achieve congestion avoidance.

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Overview

Additive increase/multiplicative decrease

Congestion window

Slow start

Fast retransmit

Algorithms

Classification by network awareness

Sources

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Map overview Semantic statistics

TCP congestion control

Nodes114
Edges113
Triples40
Avg. degree1.98
Density0.017544
Components1

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TCP congestion control

Top relations

related to External links · 19
TCP congestion control → Approaches, April, Congestion Avoidance Algorithms, Congestion Control, Congestion ControlAllman, Fast Retransmit/Fast Recovery, Internet Engineering Task Force, Mark, May, Packet NetworksPapers, Paxson, Retrieved, RFC, RFC2581, Richard, Stevens, TCP Congestion Handling, The TCP/IP Guide, Vern
related to TCP Westwood+ · 10
TCP congestion control → ACKs, Compared, In, New Reno, Reno, TCP, TCP Reno, TCP Westwood, The, Westwood

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Important terminology

tcp congestion window control network packet linux uses cubic algorithm data bandwidth algorithms reno used increase slow start fast new

Entity relationships Subject–Predicate–Object triples

SubjectPredicateObjectConfidenceSrc
increased queuing delaysinstance ofsome severe inherent issues0.80text
unfairnessinstance ofsome severe inherent issues0.80text
and massive packet lossinstance ofsome severe inherent issues0.80text
cellular networksinstance ofshow that BBRv1 doesn't perform well in dynamic environments0.80text
CUBICinstance ofVersion 2 attempts to deal with the issue of unfairness when operating alongside loss-based congestion management0.80text
virtual realityinstance ofC2TCP aims to satisfy ultra-low latency and high-bandwidth requirements of applications0.80text
video conferencinginstance ofC2TCP aims to satisfy ultra-low latency and high-bandwidth requirements of applications0.80text
online gaminginstance ofC2TCP aims to satisfy ultra-low latency and high-bandwidth requirements of applications0.80text
vehicular communication systemsinstance ofC2TCP aims to satisfy ultra-low latency and high-bandwidth requirements of applications0.80text
etc. in a highly dynamic environment such as current LTEinstance ofC2TCP aims to satisfy ultra-low latency and high-bandwidth requirements of applications0.80text
future 5G cellular networksinstance ofC2TCP aims to satisfy ultra-low latency and high-bandwidth requirements of applications0.80text
TCP congestion controlrelated to External linksApproaches0.60section

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