987 resultados para Configuration Management (CM)


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Keeping track of software assets and managing software installations in IT environments can be a hard endeavor, especially when the size and diversity of the environment grows. How to install and uninstall software efficiently and cost effectively? Are there too few or too many software licenses purchased? If installed, is the software actually in use? Software Asset Management (SAM) is a process that involves managing and optimizing the purchase, deployment, maintenance, utilization, and disposal of software applications within an organization. This master’s thesis describes a special Software Lifecycle Management Framework to provide solutions to the multitude of challenges within SAM. The main objectives when designing the framework was to provide a set of tools to control the software assets during their entire lifecycle while trying to minimize the costs related to owning and managing them.

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Green IT is a term that covers various tasks and concepts that are related to reducing the environmental impact of IT. At enterprise level, Green IT has significant potential to generate sustainable cost savings: the total amount of devices is growing and electricity prices are rising. The lifecycle of a computer can be made more environmentally sustainable using Green IT, e.g. by using energy efficient components and by implementing device power management. The challenge using power management at enterprise level is how to measure and follow-up the impact of power management policies? During the thesis a power management feature was developed to a configuration management system. The feature can be used to automatically power down and power on PCs using a pre-defined schedule and to estimate the total power usage of devices. Measurements indicate that using the feature the device power consumption can be monitored quite precisely and the power consumption can be reduced, which generates electricity cost savings and reduces the environmental impact of IT.

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Configuration management is often seen as an enabler for the main IT Service Management (ITSM) processes such as Incident and Problem management. A decent level of quality of IT configuration data is required in order to carry out routines of these processes. This case study examines the state of configuration management in a multinational organization and aims at identification of methods for its improvement. The author has stayed five months with this company in order to collect different sources of evidence and to make observations. The main source of data for this study is interviews with some of the key employees of the assigned organization who are involved into the ITSM processes. This study concludes the maturity level of the existing configuration management process to be repeatable but intuitive, and outlines the principal requirements for its improvement. A match between the requirements identified in the organization and the requirements stated in the ISO/IEC 20000 standard indicates the possibility of adopting ITIL guidelines as a method for configuration management process improvement. The outcome of the study presents a set of recommendations for improvement that considers the process, the information model and the information system for configuration management in the case organization.

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As we enter an era of ‘big data’, asset information is becoming a deliverable of complex projects. Prior research suggests digital technologies enable rapid, flexible forms of project organizing. This research analyses practices of managing change in Airbus, CERN and Crossrail, through desk-based review, interviews, visits and a cross-case workshop. These organizations deliver complex projects, rely on digital technologies to manage large data-sets; and use configuration management, a systems engineering approach with mid-20th century origins, to establish and maintain integrity. In them, configuration management has become more, rather than less, important. Asset information is structured, with change managed through digital systems, using relatively hierarchical, asynchronous and sequential processes. The paper contributes by uncovering limits to flexibility in complex projects where integrity is important. Challenges of managing change are discussed, considering the evolving nature of configuration management; potential use of analytics on complex projects; and implications for research and practice.

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Security administrators face the challenge of designing, deploying and maintaining a variety of configuration files related to security systems, especially in large-scale networks. These files have heterogeneous syntaxes and follow differing semantic concepts. Nevertheless, they are interdependent due to security services having to cooperate and their configuration to be consistent with each other, so that global security policies are completely and correctly enforced. To tackle this problem, our approach supports a comfortable definition of an abstract high-level security policy and provides an automated derivation of the desired configuration files. It is an extension of policy-based management and policy hierarchies, combining model-based management (MBM) with system modularization. MBM employs an object-oriented model of the managed system to obtain the details needed for automated policy refinement. The modularization into abstract subsystems (ASs) segment the system-and the model-into units which more closely encapsulate related system components and provide focused abstract views. As a result, scalability is achieved and even comprehensive IT systems can be modelled in a unified manner. The associated tool MoBaSeC (Model-Based-Service-Configuration) supports interactive graphical modelling, automated model analysis and policy refinement with the derivation of configuration files. We describe the MBM and AS approaches, outline the tool functions and exemplify their applications and results obtained. Copyright (C) 2010 John Wiley & Sons, Ltd.

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Software Configuration Management (SCM) techniques have been considered the entry point to rigorous software engineering, where multiple organizations cooperate in a decentralized mode to save resources, ensure the quality of the diversity of software products, and manage corporate information to get a better return of investment. The incessant trend of Global Software Development (GSD) and the complexity of implementing a correct SCM solution grow not only because of the changing circumstances, but also because of the interactions and the forces related to GSD activities. This paper addresses the role SCM plays in the development of commercial products and systems, and introduces a SCM reference model to describe the relationships between the different technical, organizational, and product concerns any software development company should support in the global market.

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This research is concerned with the experimental software engineering area, specifically experiment replication. Replication has traditionally been viewed as a complex task in software engineering. This is possibly due to the present immaturity of the experimental paradigm applied to software development. Researchers usually use replication packages to replicate an experiment. However, replication packages are not the solution to all the information management problems that crop up when successive replications of an experiment accumulate. This research borrows ideas from the software configuration management and software product line paradigms to support the replication process. We believe that configuration management can help to manage and administer information from one replication to another: hypotheses, designs, data analysis, etc. The software product line paradigm can help to organize and manage any changes introduced into the experiment by each replication. We expect the union of the two paradigms in replication to improve the planning, design and execution of further replications and their alignment with existing replications. Additionally, this research work will contribute a web support environment for archiving information related to different experiment replications. Additionally, it will provide flexible enough information management support for running replications with different numbers and types of changes. Finally, it will afford massive storage of data from different replications. Experimenters working collaboratively on the same experiment must all have access to the different experiments.

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There is no empirical evidence whatsoever to support most of the beliefs on which software construction is based. We do not yet know the adequacy, limits, qualities, costs and risks of the technologies used to develop software. Experimentation helps to check and convert beliefs and opinions into facts. This research is concerned with the replication area. Replication is a key component for gathering empirical evidence on software development that can be used in industry to build better software more efficiently. Replication has not been an easy thing to do in software engineering (SE) because the experimental paradigm applied to software development is still immature. Nowadays, a replication is executed mostly using a traditional replication package. But traditional replication packages do not appear, for some reason, to have been as effective as expected for transferring information among researchers in SE experimentation. The trouble spot appears to be the replication setup, caused by version management problems with materials, instruments, documents, etc. This has proved to be an obstacle to obtaining enough details about the experiment to be able to reproduce it as exactly as possible. We address the problem of information exchange among experimenters by developing a schema to characterize replications. We will adapt configuration management and product line ideas to support the experimentation process. This will enable researchers to make systematic decisions based on explicit knowledge rather than assumptions about replications. This research will output a replication support web environment. This environment will not only archive but also manage experimental materials flexibly enough to allow both similar and differentiated replications with massive experimental data storage. The platform should be accessible to several research groups working together on the same families of experiments.

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Työn tavoitteena oli selvittää yrityksen tuotekehitysorganisaation tuoteylläpitotoiminnan nykytila ja kartoittaa sen mahdolliset ongelmakohdat sekä kehityskohteet. Lisäksi tavoitteena oli vertailla yrityksen toimintamalleja toisen yrityksen vastaavaan organisaatioon kartoitettujen ongelmakohtien pohjalta, ja laatia kehitysehdotus ongelmien ratkaisemiseksi. Tutkimusmenetelminä käytettiin nykytilaselvityksessä semistrukturoituja asiantuntijahaastatteluja ja vertailututkimusta (engl. benchmarking). Kehitysehdotuksen laatimisen tueksi työhön sisältyi myös kirjallisuuskatsaus, jossa käsiteltiin esimerkiksi tuotteen elinkaarenhallintaa, konfiguraationhallintaa ja prosessijohtamista. Nykytilaselvityksen tuloksena oli kuvaus yrityksen tuoteylläpidontoiminnasta sekä havaituista ongelmakohdista. Vertailututkimuksen tuloksena saatiin kuvaus kohdeyrityksen kartoitettuihin ongelmakohtiin liittyvistä toimintamalleista, sekä joitain ratkaisuvaihtoehtoja. Nykytilaselvityksen ja vertailututkimuksen tulosten sekä kirjallisuuskatsauksen perusteella laadittu kehitysehdotus perustuu konfiguraationhallintasuunnitelman pohjaan, johon on sisällytetty kaikki ratkaisuehdotukset. Kehitysehdotuksessa esitetyt ratkaisuehdotukset vastaavat lähtökohtaisesti kartoitettuihin ongelmakohtiin, mutta ne vaativat vielä jatkokehittelyä. Työn tulokset toimivat pohjana yksityiskohtaisemmalle suunnittelulle ja jatkokehittelylle.

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The purpose of this thesis is to present and describe which criteria, according to the systemfamily Configuration Management, should be met when developing a CM-tool to handlemigration data.ACT is a tool developed by Microsoft to gather information about, analyze, test and mitigateapplications in a network when migrating the IT-infrastructure of an organization to a newoperating system. The organization that is being studied wants to present the data about theanalyzed applications in such a way, that a customer can choose what to mitigate and migrate.The goal is therefore to develop a prototype (CM-tool) that will present this data.The study has shown that ACT lacks certain requirements stated by the organization when itcomes to presentation. But when it comes to the rest of the functions, ACT performs as expected.The investigation resulted in specifications and technical solution for the new CM-tool. CMcriteriafor migration data was put forth and parts of the prototype were also developed.

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Category management (CM) is an important tool to strengthen the relationship between manufacturers and retailers. This process has been associated with large corporate retailers; however, some recent researches show that CM is open to companies of any type or size. This possibility is important in emerging markets, where neighborhood supermarkets are still representative and are often considered an alternative for manufacturers to achieve higher margins compared to big chains. In this context, the aim of this research was to analyze the results of a CM initiative in small neighborhood supermarkets from a manufacturer perspective. Data for the study comes from a food manufacturer in Brazil that implemented a CM process with 180 small retailers. A quantitative analysis was conducted in order to analyze the effect of the program on the food manufacturer' s sales and market share. Our analysis suggests an overall positive effect of the program on both, sales and market share.

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Ohjelmistotuotteen hallinta (SCM)on tärkeä osa ohjelmistoprojekteja. Se koostuu ohjelmistotuotteen hallinnan suunnittelusta, muutoksen hallinnasta, version hallinnasta, kääntämisestä, paketoinnista, kokoonpanon tilanteen seurannasta ja sen tarkistuksesta. Ohjelmistotuotteen hallintatietokanta (SCM DB) on tarkoitettu SCM:n liittyvändatan tallettamiseen yhteen paikkaan, jossa data on kaikkien löydettävissä. SCMDB on relaatiotietokanta ja WWW-käyttöliittymä sille. Tietokantaan talletetaan SCM - infrastruktuuri, SCM -resurssit, SCM -työskentelypaikat, integrointisuunnitteludata, paketoinnin raportit ja ohjeistukset, muutoksenhallintadata ja työkalujen hallintadata. Tietokannalla on monta käyttäjää. SCM managerit tallettavat tietokantaa yleiset tiedot, Integrointimanagerit tallettavat kantaan integrointisuunnitelmaa varten julkaisua koskevat tiedot. Paketointivastuulliset tallettavat kantaan paketointiraportit. Ohj elmistosuunnittelijat tekevät muutosvaatimuksia tietokantaan, jotka muutoksenhallintaelin käsittelee. He näkevät kannan kautta myös virheraportit. Työkalujen koordinointi tapahtuu myös kantaan talletettujen tietojen avulla. Lukemiseen tietokantaa voivat käyttää kaikki testauksesta suunnittelijoihin aikataulujen osalta. Tietokannasta voidaan lukea myös paketointityökalujen tallettamia tietoja ohjelmalohkoista eri pakettiversioissa. Paketointityökalut tai paketointivastuulliset saavat kannasta myös suoraan lähdetiedon paketointityökaluille.