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qos_project [2017/12/15 11:47] – [8. [PO3] Analyzing QoS] carineqos_project [2017/12/18 15:03] – [8. [PO3] Analyzing QoS] carine
Line 294: Line 294:
  
 ===== -. [PO3] Analyzing QoS  ===== ===== -. [PO3] Analyzing QoS  =====
- In this section, we have to consider different congestion scenarios: The link between the two routers will have a bandwidth of 16 Mb/s, 8 Mb/s and 5 Mb/s.+ In this section, we have to consider different congestion scenarios: The link between the two routers will have a bandwidth of 16 Mb/s, 8 Mb/s and 5 Mb/s.For each case, we will be considering both the implementation and the absence of QoS.
  
 __**1. 16Mb/s**__ __**1. 16Mb/s**__
 +- __Without QoS:__
  
 +- __With QoS:__
 First, we have to create a common class 1:1 for all types of traffic, as before. First, we have to create a common class 1:1 for all types of traffic, as before.
 Then, the following commands are executed in order to create two classes: 1:20 for video udp traffic with a bandwidth of ((87*16000)/100) and 1:30 for iperf tcp and udp traffic with a bandwidth of ((13*16000)/100). Then, the following commands are executed in order to create two classes: 1:20 for video udp traffic with a bandwidth of ((87*16000)/100) and 1:30 for iperf tcp and udp traffic with a bandwidth of ((13*16000)/100).
qos_project.txt · Last modified: 2021/08/28 09:58 by samer