Bijan Jabbari
George Mason University
167 Papers
1.9K Citations
Bijan Jabbari is an academic researcher from George Mason University. The author has contributed to research in topics: Wireless network & Cellular network. The author has an hindex of 25, co-authored 159 publications. Previous affiliations of Bijan Jabbari include M/A-COM Technology Solutions & Stanford University.
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Papers
DRAGON: a framework for service provisioning in heterogeneous grid networks
TL;DR: The DRAGON project is developing technology and deploying network infrastructure which allows dynamic provisioning of network resources in order to establish deterministic paths in direct response to end-user requests.
182
Teletraffic modeling and analysis of flexible hierarchical cellular networks with speed-sensitive handoff strategy
Bijan Jabbari,W. Fuhrmann +1 more
TL;DR: An analytical model is developed to evaluate the performance of hierarchical cellular networks with subscribers of varying mobility, and quantify the gain obtained by providing overflow to alternate resources as well as the advantages in resource reassignment according to the speed classification.
157
Self-organizing packet radio ad hoc networks with overlay (SOPRANO)
TL;DR: The SOPRANO project involves a novel adaptive and scalable wireless network architecture utilizing a mixture of cellular and multihop packet radio system topologies with the potential to support a variety of applications including high-data rate Internet and multimedia traffic at a reasonable degree of implementation complexity.
132
Network issues for wireless communications
TL;DR: This article specifically focuses on wireless personal communications, i.e., wireless access, that provides either terminal or personal mobility, that has significant impact on the network performance and addresses some important issues in networking, traffic, and performance.
122
Multiscale video representation using multiresolution motion compensation and wavelet decomposition
TL;DR: A multiscale video representation using wavelet decomposition and variable-block-size multiresolution motion estimation (MRME) is presented and appears suitable for the broadcast environment where various standards may coexist simultaneously.
116