Wolfgang Hoschek

dblp:65/2502 · DBLP profile ↗
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5ranked-venue papers
1as first author
0since 2021 · last 2004
—ORCID · none

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

Systems, architecture and hardware · 4 · 1 first-authorArtificial intelligence and machine learning · 1Databases, data management, data science and information retrieval · 1

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 architecture, parallel and distributed computing, and storage systems
3 papers
Distributed systems · 87% Cloud and datacenter computing · 13%
Software engineering, system software, and programming languages
1 paper
Services computing and microservices · 100%

Topics — the 8 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Distributed systems › grid computing
data grid
0.122002
Giggle: a framework for constructing scalable replica location services · SC 2002
Models for Replica Synchronisation and Consistency in a Data Grid · HPDC 2001
Distributed systems
replication
0.022002
Models for Replica Synchronisation and Consistency in a Data Grid · HPDC 2001
Giggle: a framework for constructing scalable replica location services · SC 2002
Services computing and microservices
service discovery
0.012002
The Web Service Discovery Architecture · SC 2002
Cloud and datacenter computing
cluster resource management and scheduling
0.012002
Giggle: a framework for constructing scalable replica location services · SC 2002
Distributed systems
distributed coordination and fault tolerance
0.012002
Giggle: a framework for constructing scalable replica location services · SC 2002
Distributed systems › replication
replica location service
0.012002
Giggle: a framework for constructing scalable replica location services · SC 2002
Distributed systems › replication › replica consistency
replica synchronization
0.012001
Models for Replica Synchronisation and Consistency in a Data Grid · HPDC 2001
Distributed systems › replication
data replication
0.012002
Giggle: a framework for constructing scalable replica location services · SC 2002

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

parameterized architectural framework · 0.0
YearPublicationVenuePosition
2004 Replica Management in the European DataGrid Project
David G. Cameron, James Casey, Leanne Guy, Peter Z. Kunszt, Sophie Lemaitre, Gavin McCance, Heinz Stockinger, Kurt Stockinger, Giuseppe Andronico, William H. Bell, Itzhak Ben-Akiva, Diana Bosio, Radovan Chytracek, Andrea Domenici, Flavia Donno, Wolfgang Hoschek, Erwin Laure, Levi Lucio, A. Paul Millar, Livio Salconi, Ben Segal, Mika Silander
J. Grid Comput.16
2002 Giggle: a framework for constructing scalable replica location services
abstract
In wide area computing systems, it is often desirable to create remote read-only copies (replicas) of files. Replication can be used to reduce access latency, improve data locality, and/or increase robustness, scalability and performance for distributed applications. We define a replica location service (RLS) as a system that maintains and provides access to information about the physical locations of copies. An RLS typically functions as one component of a data grid architecture. This paper makes the following contributions. First, we characterize RLS requirements. Next, we describe a parameterized architectural framework, which we name Giggle (for GIGa-scale Global Location Engine), within which a wide range of RLSs can be defined. We define several concrete instantiations of this framework with different performance characteristics. Finally, we present initial performance results for an RLS prototype, demonstrating that RLS systems can be constructed that meet performance goals.
Ann L. Chervenak, Ewa Deelman, Ian T. Foster, Leanne Guy, Wolfgang Hoschek, Adriana Iamnitchi, Carl Kesselman, Peter Z. Kunszt, Matei Ripeanu, Robert Schwartzkopf, Heinz Stockinger, Kurt Stockinger, Brian Tierney
SC5
2002 The Web Service Discovery Architecture
abstract
In this paper, we propose the Web Service Discovery Architecture (WSDA). At runtime, Grid applications can use this architecture to discover and adapt to remote services. WSDA promotes an interoperable web service discovery layer by defining appropriate services, interfaces, operations and protocol bindings, based on industry standards. It is unified because it subsumes an array of disparate concepts, interfaces and protocols under a single semi-transparent umbrella. It is modular because it defines a small set of orthogonal multi-purpose communication primitives (building blocks) for discovery. These primitives cover service identification, service description retrieval, data publication as well as minimal and powerful query support. The architecture is open and flexible because each primitive can be used, implemented, customized and extended in many ways. It is powerful because the individual primitives can be combined and plugged together by specific clients and services to yield a wide range of behaviors and emerging synergies.
Wolfgang Hoschek
SC1
2001 Models for Replica Synchronisation and Consistency in a Data Grid
abstract
Data Grids are currently proposed solutions to large scale data management problems including efficient file transfer and replication. Large amounts of data and the world-wide distribution of data stores contribute to the complexity of the data management challenge. Recent architecture proposals and prototypes deal with replication of read-only files but do not address the replica synchronisation problem. We propose a new Grid service, called Grid Consistency Service (GCS), that sits on top of existing Data Grid services and allows for replica update synchronisation and consistency maintenance. We give models for different levels of consistency provided to the Grid user and discuss how they can be included into a replica consistency service for a Data Grid. 1
Dirk Düllmann, Wolfgang Hoschek, Javier Jaén Martínez, Ben Segal, Heinz Stockinger, Kurt Stockinger, Asad Samar
HPDC2
2000 Improving the Performance of High-Energy Physics Analysis through Bitmap Indices
Kurt Stockinger, Dirk Düllmann, Wolfgang Hoschek, Erich Schikuta
DEXA3