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  2. Packet loss - Wikipedia

    en.wikipedia.org/wiki/Packet_loss

    Packet loss occurs when one or more packets of data travelling across a computer network fail to reach their destination. Packet loss is either caused by errors in data transmission, typically across wireless networks, [1] [2] or network congestion. [3]: 36 Packet loss is measured as a percentage of packets lost with respect to packets sent.

  3. Bufferbloat - Wikipedia

    en.wikipedia.org/wiki/Bufferbloat

    Bufferbloat can also cause packet delay variation (also known as jitter), as well as reduce the overall network throughput. When a router or switch is configured to use excessively large buffers, even very high-speed networks can become practically unusable for many interactive applications like voice over IP (VoIP), audio streaming , online ...

  4. TCP tuning - Wikipedia

    en.wikipedia.org/wiki/TCP_tuning

    When packet loss occurs in the network, an additional limit is imposed on the connection. [2] In the case of light to moderate packet loss when the TCP rate is limited by the congestion avoidance algorithm , the limit can be calculated according to the formula (Mathis, et al.):

  5. Network congestion - Wikipedia

    en.wikipedia.org/wiki/Network_congestion

    Network congestion in data networking and queueing theory is the reduced quality of service that occurs when a network node or link is carrying more data than it can handle. . Typical effects include queueing delay, packet loss or the blocking of new connectio

  6. Packet loss concealment - Wikipedia

    en.wikipedia.org/wiki/Packet_loss_concealment

    Packet loss concealment (PLC) is a technique to mask the effects of packet loss in voice over IP (VoIP) communications. When the voice signal is sent as VoIP packets on an IP network, the packets may (and likely will) travel different routes. A packet therefore might arrive very late, might be corrupted, or simply might not arrive at all.

  7. Maximum transmission unit - Wikipedia

    en.wikipedia.org/wiki/Maximum_transmission_unit

    However, this gain is not without a downside. Large packets occupy a link for more time than a smaller packet, causing greater delays to subsequent packets, and increasing network delay and delay variation. For example, a 1500-byte packet, the largest allowed by Ethernet at the network layer, ties up a 14.4k modem for about one second.

  8. Interpacket gap - Wikipedia

    en.wikipedia.org/wiki/Interpacket_gap

    The time is measured from the end of the frame check sequence of one frame to the start of the preamble for the next. [ 2 ] : 5 During data reception, some interpacket gaps may be smaller due to variable network delays, clock tolerances (all speeds), and the presence of repeaters (10 Mbit/s only).

  9. IP fragmentation - Wikipedia

    en.wikipedia.org/wiki/IP_fragmentation

    One goal of the algorithm is to ensure all packets of the same flow are sent out the same path to minimize unnecessary packet reordering. IP fragmentation can cause excessive retransmissions when fragments encounter packet loss and reliable protocols such as TCP must retransmit all of the fragments in order to recover from the loss of a single ...