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Queue length analysis of end-to-end ...
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Oklahoma State University.
Queue length analysis of end-to-end differentiated service networks with self-similar traffic.
紀錄類型:
書目-電子資源 : 單行本
正題名/作者:
Queue length analysis of end-to-end differentiated service networks with self-similar traffic./
作者:
Wang, Yue.
面頁冊數:
84 p.
附註:
Source: Masters Abstracts International, Volume: 44-01, page: 0415.
Contained By:
Masters Abstracts International44-01.
標題:
Computer Science. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1427851
ISBN:
9780542216466
Queue length analysis of end-to-end differentiated service networks with self-similar traffic.
Wang, Yue.
Queue length analysis of end-to-end differentiated service networks with self-similar traffic.
- 84 p.
Source: Masters Abstracts International, Volume: 44-01, page: 0415.
Thesis (M.S.)--Oklahoma State University, 2005.
Scope and method of study. This thesis focuses on the analysis of queue length boundaries in end-to-end self-similar networks with differentiated service. First, the Hurst parameter was calculated by three methods. Secondly, queue length boundaries were estimated at a single hop with differentiated service under self-similar traffic. Finally, the derivations are extended to end-to-end differentiated service networks with self-similar traffic.
ISBN: 9780542216466Subjects--Topical Terms:
1000005419
Computer Science.
Queue length analysis of end-to-end differentiated service networks with self-similar traffic.
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Queue length analysis of end-to-end differentiated service networks with self-similar traffic.
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Source: Masters Abstracts International, Volume: 44-01, page: 0415.
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Adviser: G. E. Hedrick.
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Thesis (M.S.)--Oklahoma State University, 2005.
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Scope and method of study. This thesis focuses on the analysis of queue length boundaries in end-to-end self-similar networks with differentiated service. First, the Hurst parameter was calculated by three methods. Secondly, queue length boundaries were estimated at a single hop with differentiated service under self-similar traffic. Finally, the derivations are extended to end-to-end differentiated service networks with self-similar traffic.
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Findings and conclusions. Quality-of-Service (QoS) is a key issue in networks. Improving the performance with guaranteed QoS is one of the major problems. It is well known that traditional analytical methods of queuing systems are based on Poisson and Poisson-based stochastic processes. Unfortunately, these methods, like Jackson theorem, are not applicable in high speed broadband networks. In this thesis, a novel analytical model is proposed based on the arrival rate and the service rate for multiple hops queuing systems. Then the mathematical derivations are extended to end-to-end differentiated service networks with self-similar traffic. The upper and lower bound of the queue length at each hop is derived. The results illustrate the performance gain in queue length at each hop. Finally, a novel adaptive admission controller algorithm is proposed based on the arrival rate and the service rate for multiple hop queuing systems with self-similar network traffic. The adaptive admission controller algorithm can provide a guaranteed QoS performance for the higher priority classes, as long as the highest class QoS requests do not exceed the comprehensive network resources.
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