Analysis of Quality of Service in Wimax networks



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Analysis of quality of service QoS in WiMAX networks

1.3 Problem Statement 
This thesis focuses on the analysis QoS in the WiMAX networks. The details of the 
implementation of QoS in the WiMAX network architecture will be presented. It 
includes the definition of various service flows defined by the IEEE 802.16 standard.
The details of the network’s MAC layer QoS implementation are presented. To 
analyze the QoS parameters simulation based on the popular network simulator ns-2 
is used. Various parameters that determine QoS of real life usage scenarios and 
traffic flows of applications is analyzed. The goal is to compare different types of 
service flows with respect to the QoS parameters, such as, throughput, average jitter
average delay and packet loss.
1.4 Contribution 
A WiMAX module written for ns-2 is used to simulate real life situations and 
analyze the effect of various network conditions and load on QoS parameters. The 
parameters that will be considered are throughput, average jitter, percentage packet 
loss and average delay. Use cases simulated VOIP traffic and multimedia streaming 
traffic. The VOIP traffic is set up using five different VOIP codecs which have 
different packet size and data rates. The effect of number of nodes in the network 
requesting VOIP traffic is analyzed. The experiment is repeated for all the five VOIP 
codecs. The VOIP traffic is set up using the three supported service flows that are 


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supported namely, best effort (BE), real-time polling service (rtPS) and unsolicited 
grant service (UGS). The effect of the service flow on the quality of service 
parameters such as throughput, average jitter and packet loss is studied. 
Next, the use case of streaming video is case is studied. The effect of number 
of nodes on the multimedia traffic is analyzed for different service flows. Similar to 
the case of VOIP traffic, the analysis is done based on the four QoS parameters 
namely, throughput, average jitter, average delay and packet loss. The results of the 
experiments are analyzed and conclusions are presented. 

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