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On Grothendieck's Algebraicity Conjecture and random matrices
工业生物催化论坛-氧化还原酶催化新机制探索之路
ProDESIGN与PALM-DAs--蛋白质设计及蛋白质-小分子结合位点鉴定
基于Heck过程的研究探索
报告题目:
Admission and Rate Control for Wireless Network
 报告人:
Xinbing Wang
报告时间:
2005-12-14 14:30
报告地点:
信息大楼(FIT)1—315
主办单位:
信息学院
  简介:

Abstract:

Traditional Call Admission Control (CAC) schemes only consider call level performance and are believed to be sufficient for the circuit-switched wireless network. Since the future wireless network will become packet-switched, the packet level performance cannot be ignored. This is especially true when the TCP-type of applications are running over such packet-switched wireless networks, because TCP congestion control algorithm will exhaust all the available resource until packet loss occurs. In order to regulate the TCP applications to friendly coexist with other types of services, we propose a TCP aware CAC scheme. We analyze the system performance in both traditional and realistic cases, respectively, and report that the exponential assumptions for service holding time in our analysis can be greatly relaxed due to so called ``insensitivity" property, which significantly expands the applicable situations of our results. Extensive simulations are presented under different scenarios to show that the proposed scheme can effectively improve the system performance in terms of call blocking probability, call level throughput (call/min) and link utilization.

 

Biography:

Xinbing Wang (SM’01) received the B.S. degree from the Department of Automation, Shanghai Jiaotong University, Shanghai, China, in 1998, and the M.S. degree from the Department of Computer Science and Technology, Tsinghua University, Beijing, China, in 2001. He is currently a Ph.D. candidate major at the Department of Electrical and Computer Engineering, minor at Department of mathematics, North Carolina State University, Raleigh, NC.

His research interests include TCP Asymptotics Analysis; Wireless Capacity; Cross Layer Call Admission Control; Asymptotics Analysis of Hybrid systems; Congestion Control over Wireless Networks.

 

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