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  2. Bandwidth management - Wikipedia

    en.wikipedia.org/wiki/Bandwidth_management

    Bandwidth management mechanisms may be used to further engineer performance and includes: Traffic shaping [3] (rate limiting): [4]. Token bucket; Leaky bucket; TCP rate control - artificially adjusting TCP window size as well as controlling the rate of ACKs being returned to the sender [5] [6]

  3. TCP tuning - Wikipedia

    en.wikipedia.org/wiki/TCP_tuning

    To give a practical example, two nodes communicating over a geostationary satellite link with a round-trip delay time (or round-trip time, RTT) of 0.5 seconds and a bandwidth of 10 Gbit/s can have up to 0.5×10 Gbits, i.e., 5 Gbit of unacknowledged data in flight. Despite having much lower latencies than satellite links, even terrestrial fiber ...

  4. Network traffic control - Wikipedia

    en.wikipedia.org/wiki/Network_traffic_control

    In computer networking, network traffic control is the process of managing, controlling or reducing the network traffic, particularly Internet bandwidth, e.g. by the network scheduler. [1] It is used by network administrators, to reduce congestion, latency and packet loss. This is part of bandwidth management.

  5. Traffic shaping - Wikipedia

    en.wikipedia.org/wiki/Traffic_shaping

    Traffic shaping is a bandwidth management technique used on computer networks which delays some or all datagrams to bring them into compliance with a desired traffic profile. [ 1 ] [ 2 ] Traffic shaping is used to optimize or guarantee performance, improve latency , or increase usable bandwidth for some kinds of packets by delaying other kinds.

  6. Ethernet flow control - Wikipedia

    en.wikipedia.org/wiki/Ethernet_flow_control

    Ethernet flow control is a mechanism for temporarily stopping the transmission of data on Ethernet family computer networks. The goal of this mechanism is to avoid packet loss in the presence of network congestion. The first flow control mechanism, the pause frame, was defined by the IEEE 802.3x standard.

  7. TCP congestion control - Wikipedia

    en.wikipedia.org/wiki/TCP_congestion_control

    It is a receiver-side algorithm that employs a loss-based approach using a novel mechanism, called agility factor (AF). to increase the bandwidth utilization over high-speed and short-distance networks (low bandwidth-delay product networks) such as local area networks or fiber-optic network, especially when the applied buffer size is small. [26]

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  9. Bandwidth throttling - Wikipedia

    en.wikipedia.org/wiki/Bandwidth_throttling

    NOTE: Bandwidth throttling should not be confused with rate limiting which operates on client requests at application server level and/or at network management level (i.e. by inspecting protocol data packets). Rate limiting can also help in keeping peaks of data speed under control. These bandwidth limitations can be implemented: