Computer Networks 6

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congestion
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situation in which too many packets demand for the same link resulting in long queues and drops of packets
resource allocation
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network elements try to meet the competing demands that applications have for network resources, e. g: by limiting the bandwidth or buffer space
congestion-control
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efforts made by network nodes to prevent or respond to overload conditions
Router Centric approach
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each router takes responsibility for deciding when packets are forwarded and selecting which packets are to be dropped
Host Centric approach
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the end hosts observe the network conditions and adjust their behaviour accordingly
Reservation Based approach
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some entity asks the network for a certain amount of capacity to be allocated for a flow
Feedback Based approach
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end hosts begin sending data without first reserving any capacity and then adjust their sending rate according to the feedback they receive
Window Based approach
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express to the sender how much data it is allowed to transmit through advertising of a window to the sender
Rate Based approach
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express to the sender how much data it is allowed to transmit through rate how many bits per second the receiver or network is able to absorb
Queuing Algorithm
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allocating both bandwidth (which packets get transmitted) and buffer space (which packets get discarded)
Fair Queuing (FQ)
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separate queue for each flow currently being handled by the router
Additive Increase/Multiplicative Decrease (AIMD
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TCP source sets the CongestionWindow based on the level of congestion it perceives to exist in the network. Then it decreases the congestion window when the level of congestion goes up and vice versa
Slow Start Mechanism
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increase the congestion window rapidly from a cold start. Slow start effectively increases the congestion window exponentially, rather than linearly
Fast Retransmit Mechanism
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triggers the retransmission of a dropped packet sooner than the regular timeout mechanism
Fast Recovery Mechanism
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when fast retransmit mechanism signals congestion rather than drop the congestion window all the way back to one packet and run slow start it is possible to use the ACKs that are still in the pipe to clock the sending of packets
Active Queue Management (AQM)
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additional functionalities in the router to assist the end node to prevent congestion
DECbit mechanism
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each router monitors the load it's experiencing and explicitly notifies the end nodes when congestion is about to occur
Random Early Detection (RED)
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each router monitors its own queue length and when it detects that congestion is imminent, notify the source to adjust congestion window. However implicitly notifies the source about congestion by dropping one of its packets
Explicit Congestion Notification (ECN)
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instead of dropping a packet, mark it and continue to send it along its way to the destination
Real-time applications
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applications that are sensitive to the timeliness of data exchange
Non-real-time applications
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applications that can work without guarantees of timely delivery of data
Integrated Services mechanism
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guarantees QoS (quality of service) requirements through implementation of service classes
Guaranteed Service Classes
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used for intolerant applications; these applications require that a packet never arrive late, network should guarantee that the maximum delay that any packet will experience has some specified value
Controlled Load Service
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meet the needs of tolerant, adaptive applications; The goal is to emulate a lightly loaded network for those applications that request the service, even though the network as a whole may in fact be heavily loaded
adaptability
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application can adapt to the amount of delay that packets experience as they traverse the network
tolerance for loss of data
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data loss might occur because a packet arrived too late to be played back
Per-Hop Behaviour (PHB)
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defined behaviour of individual routers
Expedited Forwarding PHB
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packets marked for EF treatment should be forwarded by the router with minimal delay and loss
Assured Forwarding PHB
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packets marked with AF are forwarded with higher reliability

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