Title :
Distributed load-sensitive routing for computationally-constrained flows
Author :
Huang, An-Cheng ; Steenkiste, Peter
Author_Institution :
Carnegie Mellon Univ., Pittsburgh, PA, USA
Abstract :
A network that provides not only connectivity but also computational resources to application flows will enable a new array of network services. For example, applications that require content adaptation can be deployed more easily in a network that provides integrated communication and computational resources. In this paper, we study the problem of finding a path for a flow that has both computational and bandwidth constraints. We present a distributed load-resistive routing algorithm that generates precomputed routing information and optimizes the routing decisions for both applications and computational and communication resource providers. We show through simulations that our distributed approach performs comparably to a centralized algorithm and is more resilient to longer routing update intervals.
Keywords :
quality of service; resource allocation; telecommunication network routing; bandwidth constraints; centralized algorithm; computational constraints; computational resource providers; computational resources; computationally-constrained flows; distributed load-sensitive routing; integrated communication; network services; precomputed routing information; routing decision; Bandwidth; Codecs; Computational modeling; Computer applications; Computer networks; Distributed computing; Handheld computers; Routing; Streaming media; Web pages;
Conference_Titel :
Communications, 2003. ICC '03. IEEE International Conference on
Print_ISBN :
0-7803-7802-4
DOI :
10.1109/ICC.2003.1203892