986 resultados para web server assembly
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En aquest projecte es visualitza la trajectòria d'un vehicle (aeri o terrestre) en una pàgina web. Per això es disposa d'una PDA (Personal Digital Assistant), en la qual es té informació actualitzada de la posició i de la velocitat d’aquest vehicle. Aquestes dades són obtingudes d'un sistema que combina la navegació inercial i el GPS (Global Position System), els quals estimen de manera precisa la trajectòria del vehicle. A fi d'oferir una visualització en temps real, versàtil, accessible i amigable a l'usuari de la trajectòria del vehicle, s'ha desenvolupat un sistema de visualització on-line que proporciona un millor rendiment en comparació amb la qual es venia fent en la PDA. Per a dur-lo a terme s'implementa una interfície d'usuari en la PDA que ens permet transmetre aquesta informació via WIFI a la pàgina web, d'igual forma al servidor web es crea una interfície que interpreta i gestiona aquestes dades per a posteriorment ser graficats a Google Maps.
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El trabajo realizado se divide en dos bloques bien diferenciados, ambos relacionados con el análisis de microarrays. El primer bloque consiste en agrupar las condiciones muestrales de todos los genes en grupos o clústers. Estas agrupaciones se obtienen al aplicar directamente sobre la microarray los siguientes algoritmos de agrupación: SOM,PAM,SOTA,HC y al aplicar sobre la microarray escalada con PC y MDS los siguientes algoritmos: SOM,PAM,SOTA,HC y K-MEANS. El segundo bloque consiste en realizar una búsqueda de genes basada en los intervalos de confianza de cada clúster de la agrupación activa. Las condiciones de búsqueda ajustadas por el usuario se validan para cada clúster respecto el valor basal 0 y respecto el resto de clústers, para estas validaciones se usan los intervalos de confianza. Estos dos bloques se integran en una aplicación web ya existente, el applet PCOPGene, alojada en el servidor: http://revolutionresearch.uab.es.
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Most life science processes involve, at the atomic scale, recognition between two molecules. The prediction of such interactions at the molecular level, by so-called docking software, is a non-trivial task. Docking programs have a wide range of applications ranging from protein engineering to drug design. This article presents SwissDock, a web server dedicated to the docking of small molecules on target proteins. It is based on the EADock DSS engine, combined with setup scripts for curating common problems and for preparing both the target protein and the ligand input files. An efficient Ajax/HTML interface was designed and implemented so that scientists can easily submit dockings and retrieve the predicted complexes. For automated docking tasks, a programmatic SOAP interface has been set up and template programs can be downloaded in Perl, Python and PHP. The web site also provides an access to a database of manually curated complexes, based on the Ligand Protein Database. A wiki and a forum are available to the community to promote interactions between users. The SwissDock web site is available online at http://www.swissdock.ch. We believe it constitutes a step toward generalizing the use of docking tools beyond the traditional molecular modeling community.
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Disseny i implementació d'un nou servidor web multifil i multiplataforma en C++.
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L'objectiu particular és elaborar el nucli principal d'un servidor web, que tingui com a característiques: multithread, multiprocés, desenvolupament en Java, funcionament en entorns Windows, GNU Linux i heterogenis.
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Diplomityössä on tutkittu sulautetun järjestelmän liittämistä Ethernet-verkkoon sekä TCP/IP-protokollapinoon kuuluvien tavallisimpien protokollien toimintaa. Työn tuloksien perusteella on suunniteltu harjoitustyö, jota voidaan käyttää sähkötekniikan osaston opetuksessa. Työssä hankittiin Atmelin sulautettu Web-serverikortti (EWS) ja STK500-kortti serverin ohjelmointiin. Serverin mukana tuli Internet-yhteyden mahdollistava TCP/IP-pinon lähdekoodi. Työssä selvitettiin TCP/IP:hen kuuluvien protokollien toimintaa teoriassa ja käytännön toteutusta EWS:n avulla. Lähdekoodiin lisättiin ominaisuudet, joiden avulla laite hakee kellonaikatiedot aikapalvelimelta time-protokollaa käyttäen ja lähettää sähköpostia määriteltyyn osoitteeseen sähköpostipalvelimen kautta. Laitetta käytettiin sekä palvelimena että asiakkaana. Työssä perehdyttiin sulautettujen järjestelmien yleisiin ominaisuuksiin ja erilaisiin verkonhallinnan apuohjelmiin. Työssä tutkittiin palvelin- ja asiakaskoneen välillä Ethernetissä kulkevaa verkkoliikennettä. Työssä minimoitiin protokollatiedostojen viemä tila prosessorin muistista ja tutkittiin Internet-yhteyden kuluttamien kellojaksojen määrää. Työssä selvitettiin tietoturva-kysymysten merkitystä ja toteutusta sulautetuissa järjestelmissä.
BioSuper: A web tool for the superimposition of biomolecules and assemblies with rotational symmetry
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Background Most of the proteins in the Protein Data Bank (PDB) are oligomeric complexes consisting of two or more subunits that associate by rotational or helical symmetries. Despite the myriad of superimposition tools in the literature, we could not find any able to account for rotational symmetry and display the graphical results in the web browser. Results BioSuper is a free web server that superimposes and calculates the root mean square deviation (RMSD) of protein complexes displaying rotational symmetry. To the best of our knowledge, BioSuper is the first tool of its kind that provides immediate interactive visualization of the graphical results in the browser, biomolecule generator capabilities, different levels of atom selection, sequence-dependent and structure-based superimposition types, and is the only web tool that takes into account the equivalence of atoms in side chains displaying symmetry ambiguity. BioSuper uses ICM program functionality as a core for the superimpositions and displays the results as text, HTML tables and 3D interactive molecular objects that can be visualized in the browser or in Android and iOS platforms with a free plugin. Conclusions BioSuper is a fast and functional tool that allows for pairwise superimposition of proteins and assemblies displaying rotational symmetry. The web server was created after our own frustration when attempting to superimpose flexible oligomers. We strongly believe that its user-friendly and functional design will be of great interest for structural and computational biologists who need to superimpose oligomeric proteins (or any protein). BioSuper web server is freely available to all users at http://ablab.ucsd.edu/BioSuper webcite.
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Web-palvelussa sivuston suorituskyky muodostaa suuren osan käyttökokemuksen mielekkyydestä. Sivuston ollessa kuormitetumpi kuin normaalisti, saattaa se toimia tavallista hitaammin. Tasaamalla yhden web-palvelimen kuormaa muille palvelimille, joko laitteisto tai ohjelmistopohjaisella kuormantasauksella, voidaan saavuttaa merkittäviä suorituskykyparannuksia koko palvelulle. Teoriaosassa selvitettiin kuormantasaukseen soveltuvien algoritmien toimintaa sekä tietokantapohjaista replikaatiota, joka välittää saamansa tiedon lähes välittömästi toiselle palvelimelle. Apachen kuormantasausmoduuliin sekä sen sisältämiin algoritmeihin luotiin myös katsaus teoriaosassa. Varsinaisessa työssä luotiin Apachen kuormantasauspalvelimen ja kahden suorituspalvelimen avulla toimiva palvelinjärjestelmä. Kuormantasaimeen asennettiin käyttöön tahmeat sessiot, joiden toimintaa selvitettiin Drupal-ohjelman avulla. Apachessa on ollut ongelmia tahmeiden sessioiden kanssa, mutta työssä huomattiin kaiken toimivan mainiosti. Kuormantasaus ja tietokantojen replikaatio toimi, kuten odotettiin.
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A mapping between chains in the Protein Databank and Enzyme Classification numbers is invaluable for research into structure-function relationships. Mapping at the chain level is a non-trivial problem and we present an automatically updated Web-server, which provides this link in a queryable form and as a downloadable XML or flat file.
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IntFOLD is an independent web server that integrates our leading methods for structure and function prediction. The server provides a simple unified interface that aims to make complex protein modelling data more accessible to life scientists. The server web interface is designed to be intuitive and integrates a complex set of quantitative data, so that 3D modelling results can be viewed on a single page and interpreted by non-expert modellers at a glance. The only required input to the server is an amino acid sequence for the target protein. Here we describe major performance and user interface updates to the server, which comprises an integrated pipeline of methods for: tertiary structure prediction, global and local 3D model quality assessment, disorder prediction, structural domain prediction, function prediction and modelling of protein-ligand interactions. The server has been independently validated during numerous CASP (Critical Assessment of Techniques for Protein Structure Prediction) experiments, as well as being continuously evaluated by the CAMEO (Continuous Automated Model Evaluation) project. The IntFOLD server is available at: http://www.reading.ac.uk/bioinf/IntFOLD/
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Web content hosting, in which a Web server stores and provides Web access to documents for different customers, is becoming increasingly common. For example, a web server can host webpages for several different companies and individuals. Traditionally, Web Service Providers (WSPs) provide all customers with the same level of performance (best-effort service). Most service differentiation has been in the pricing structure (individual vs. business rates) or the connectivity type (dial-up access vs. leased line, etc.). This report presents DiffServer, a program that implements two simple, server-side, application-level mechanisms (server-centric and client-centric) to provide different levels of web service. The results of the experiments show that there is not much overhead due to the addition of this additional layer of abstraction between the client and the Apache web server under light load conditions. Also, the average waiting time for high priority requests decreases significantly after they are assigned priorities as compared to a FIFO approach.
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Background: Decreasing costs of DNA sequencing have made prokaryotic draft genome sequences increasingly common. A contig scaffold is an ordering of contigs in the correct orientation. A scaffold can help genome comparisons and guide gap closure efforts. One popular technique for obtaining contig scaffolds is to map contigs onto a reference genome. However, rearrangements that may exist between the query and reference genomes may result in incorrect scaffolds, if these rearrangements are not taken into account. Large-scale inversions are common rearrangement events in prokaryotic genomes. Even in draft genomes it is possible to detect the presence of inversions given sufficient sequencing coverage and a sufficiently close reference genome. Results: We present a linear-time algorithm that can generate a set of contig scaffolds for a draft genome sequence represented in contigs given a reference genome. The algorithm is aimed at prokaryotic genomes and relies on the presence of matching sequence patterns between the query and reference genomes that can be interpreted as the result of large-scale inversions; we call these patterns inversion signatures. Our algorithm is capable of correctly generating a scaffold if at least one member of every inversion signature pair is present in contigs and no inversion signatures have been overwritten in evolution. The algorithm is also capable of generating scaffolds in the presence of any kind of inversion, even though in this general case there is no guarantee that all scaffolds in the scaffold set will be correct. We compare the performance of SIS, the program that implements the algorithm, to seven other scaffold-generating programs. The results of our tests show that SIS has overall better performance. Conclusions: SIS is a new easy-to-use tool to generate contig scaffolds, available both as stand-alone and as a web server. The good performance of SIS in our tests adds evidence that large-scale inversions are widespread in prokaryotic genomes.
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[ES] El objetivo de este Trabajo Final de Grado (TFG) es la creación de un prototipo de aplicación web para la gestión de recursos geoespaciales. Esta propuesta surgió a partir de la necesidad de disponer de una herramienta que no tuviera que ser instalada en un dispositivo, sino servida por un servidor web, permitiendo su acceso desde cualquier parte y dispositivo. El resultado fue el Gestor Web de Recursos Geoespaciales con Tecnología OpenLayers, una aplicación que combina diversas herramientas (OpenLayers, GeoServer, PostgreSQL, jQuery…) – todas ellas basadas en Software Libre – para cumplir funcionalidades como la creación de primitivas vectoriales sobre un mapa, gestión y visualización de la información asociada, edición de estilos, modificación de coordenadas, etc. siendo todas éstas funcionalidades características de un Sistema de Información Geográfica (SIG) y ofreciendo una interfaz de uso cómoda y eficaz, que abstraiga al usuario de detalles internos y complejos. El material desarrollado dispone del potencial necesario para convertirse en una solución a las necesidades de gestión de información geoespacial de la ULPGC, especialmente en el campus de Tafira, sobre el que se ha ejemplificado su uso. Además, a diferencia de las herramientas ofertadas por empresas como Google o Microsoft, esta aplicación está por completo bajo una licencia GNU GPL v3, lo que permite que se pueda indagar dentro de su código, mejorarlo y añadir funcionalidades a cualquier persona interesada.
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The past decade has seen the energy consumption in servers and Internet Data Centers (IDCs) skyrocket. A recent survey estimated that the worldwide spending on servers and cooling have risen to above $30 billion and is likely to exceed spending on the new server hardware . The rapid rise in energy consumption has posted a serious threat to both energy resources and the environment, which makes green computing not only worthwhile but also necessary. This dissertation intends to tackle the challenges of both reducing the energy consumption of server systems and by reducing the cost for Online Service Providers (OSPs). Two distinct subsystems account for most of IDC’s power: the server system, which accounts for 56% of the total power consumption of an IDC, and the cooling and humidifcation systems, which accounts for about 30% of the total power consumption. The server system dominates the energy consumption of an IDC, and its power draw can vary drastically with data center utilization. In this dissertation, we propose three models to achieve energy effciency in web server clusters: an energy proportional model, an optimal server allocation and frequency adjustment strategy, and a constrained Markov model. The proposed models have combined Dynamic Voltage/Frequency Scaling (DV/FS) and Vary-On, Vary-off (VOVF) mechanisms that work together for more energy savings. Meanwhile, corresponding strategies are proposed to deal with the transition overheads. We further extend server energy management to the IDC’s costs management, helping the OSPs to conserve, manage their own electricity cost, and lower the carbon emissions. We have developed an optimal energy-aware load dispatching strategy that periodically maps more requests to the locations with lower electricity prices. A carbon emission limit is placed, and the volatility of the carbon offset market is also considered. Two energy effcient strategies are applied to the server system and the cooling system respectively. With the rapid development of cloud services, we also carry out research to reduce the server energy in cloud computing environments. In this work, we propose a new live virtual machine (VM) placement scheme that can effectively map VMs to Physical Machines (PMs) with substantial energy savings in a heterogeneous server cluster. A VM/PM mapping probability matrix is constructed, in which each VM request is assigned with a probability running on PMs. The VM/PM mapping probability matrix takes into account resource limitations, VM operation overheads, server reliability as well as energy effciency. The evolution of Internet Data Centers and the increasing demands of web services raise great challenges to improve the energy effciency of IDCs. We also express several potential areas for future research in each chapter.