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Gilad Goren

dblp:68/4010 · DBLP profile ↗
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2ranked-venue papers
0as first author
0since 2021 · last 2004
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 2

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer networks
2 papers
Network optimization and economics · 66% Internet architecture and protocols · 24% Routing and switching · 6%

Topics — the 7 heaviest of 7, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Network optimization and economics
resource allocation
0.122004
Dynamic allocation of resources to virtual path agents · IEEE/ACM Trans. Netw. 2004
Optimal Use of Virtual Paths for Connection Setup Reduction: The Single Link Problem · INFOCOM 2000
Network optimization and economics › resource allocation › bandwidth allocation
virtual path bandwidth allocation
0.012004
Dynamic allocation of resources to virtual path agents · IEEE/ACM Trans. Netw. 2004
Internet architecture and protocols
ATM networks
0.012000
Optimal Use of Virtual Paths for Connection Setup Reduction: The Single Link Problem · INFOCOM 2000
Network optimization and economics › resource allocation
bandwidth allocation
0.012000
Optimal Use of Virtual Paths for Connection Setup Reduction: The Single Link Problem · INFOCOM 2000
Internet architecture and protocols › ATM networks
virtual path
0.012000
Optimal Use of Virtual Paths for Connection Setup Reduction: The Single Link Problem · INFOCOM 2000
Routing and switching
MPLS
0.012004
Dynamic allocation of resources to virtual path agents · IEEE/ACM Trans. Netw. 2004
Transport protocols and congestion control
connection management
0.012000
Optimal Use of Virtual Paths for Connection Setup Reduction: The Single Link Problem · INFOCOM 2000

Methods — techniques the papers use, named apart from their topics

decomposition · 0.0closed-form optimization · 0.0closed-form square root allocation · 0.0approximate model · 0.0
YearPublicationVenuePosition
2004 Dynamic allocation of resources to virtual path agents
abstract
One of the major problems faced in operating large networks is the enormous amount of processing and communications overhead required for setting up and tearing down the large number of connections maintained by the network. ATM and MPLS aim at solving these problems via the Virtual Path (VP) mechanism which is used to group together the connections. When a need for setting up a connection rises, the request and its resource allocation are processed by the VP agent and not by the network, thus reducing the processing cost significantly. An important question in the design of these networks is the amount of network resources to be dynamically allocated to and held by the VP agents; too high allocation will result with bandwidth resource waste, while too low allocation will result with heavy connection set-up and tear-down processing load. In this paper we deal with this problem, and at deriving simple operational rules to determine the amount of bandwidth resources to be held by the various VP agents, while balancing between bandwidth waste and connection processing overhead. We formulate the resource allocation problem by accounting both for bandwidth utilization and for connection processing constraints. Recognizing the complexity of the problem, we use a decomposition approach in which we first analyze the single link problem and then propose to use this solution as a building block in constructing algorithms for the whole network. For the single link problem we realize that the pure problem is too complex and thus formulate an approximate model and derive the optimal allocation for it. The optimal rule is expressed as a closed-form square-root allocation. Extensive numerical examination shows that the rule proposed yields very efficient allocations. For the full network problem, we propose to capitalize on the closed form structure of the single link problem solution and use it in devising algorithms for the whole network.
Hanoch Levy, Tsippy Mendelson, Gilad Goren
IEEE/ACM Trans. Netw.3
2000 Optimal Use of Virtual Paths for Connection Setup Reduction: The Single Link Problem
abstract
One of the major problems faced by large networks is the enormous amount of processing required for setting up and tearing down the large number of connections maintained by the network. ATM aims at solving these problems via the virtual path (VP) mechanism which is used to group together the virtual connections (VC). When a need for setting up a VC arises the request and its resource allocation are processed by the VP authority and not by the network, thus reducing the processing cost significantly. An important question in the design of these networks is the amount of network resources to be allocated to and held by the VP authorities; too high an allocation will result in resource waste, while too low an allocation will result in heavy connection set-up and tear-down processing load. In this paper we deal with this problem, aiming at deriving simple operational rules to determine the amount of bandwidth resources to be held by the various VP authorities. We formulate the resource allocation problem by accounting both for bandwidth utilization and for connection processing constraints. For a single link network we realize that the pure problem is too complex and thus formulate an approximate model and derive the optimal allocation for it. The optimal rule is expressed as a closed-form square root allocation. Extensive numerical examination shows that the algorithms proposed yield very efficient allocations. The single link model is then generalized to a general network model and an algorithm based on the single link allocation is proposed; that analysis is however beyond the scope of this paper.
Hanoch Levy, Tsippy Mendelson, Gilad Goren
INFOCOM3